WO2022130669A1 - Invention apportant des avancées dans la vie quotidienne - Google Patents

Invention apportant des avancées dans la vie quotidienne Download PDF

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Publication number
WO2022130669A1
WO2022130669A1 PCT/JP2021/026054 JP2021026054W WO2022130669A1 WO 2022130669 A1 WO2022130669 A1 WO 2022130669A1 JP 2021026054 W JP2021026054 W JP 2021026054W WO 2022130669 A1 WO2022130669 A1 WO 2022130669A1
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Prior art keywords
water
tank
liquid
energy
gas
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PCT/JP2021/026054
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English (en)
Japanese (ja)
Inventor
竜也 新谷
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竜也 新谷
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Priority to JP2022569696A priority Critical patent/JPWO2022130669A1/ja
Publication of WO2022130669A1 publication Critical patent/WO2022130669A1/fr

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B17/00Other machines or engines
    • F03B17/02Other machines or engines using hydrostatic thrust
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B9/00Endless-chain machines or engines
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/20Hydro energy

Definitions

  • the present invention relates to an energy conversion device that converts and generates secondary energy based on primary energy.
  • an energy conversion device for example, a gasoline engine is known.
  • the present invention solves the above-mentioned problems, and an object of the present invention is to provide an energy conversion device capable of efficiently generating and converting secondary energy from primary energy.
  • the energy conversion device has a liquid tank in which a liquid is stored, a plurality of gas receiving portions vertically provided in the liquid tank, which can rotate or move up and down, and as a primary energy source.
  • the liquid tank uses an input unit that inputs a substance to the lower part of the liquid tank and a rotational or upward movement kinetic energy generated in the gas receiving unit due to a buoyancy generated by the gas receiving unit receiving a gas corresponding to the substance.
  • the liquid tank is provided with an output means for outputting as secondary energy to the outside of the liquid tank and a recovery device for recovering the substance from the liquid tank and returning it to the input unit.
  • the liquid tank includes a first liquid tank and a second liquid tank.
  • the energy conversion device includes, a pipe for guiding the gas accumulated in the upper part of the first liquid tank to the second liquid tank, a buffer tank connected to the pipe, and an inlet and an outlet of the buffer tank.
  • the energy conversion device can output secondary energy with maximum energy efficiency if the pressure is adjusted to a high pressure so that the gas in the buffer tank does not liquefy and solidify, for example.
  • the block diagram of the energy conversion apparatus which concerns on one Embodiment of this invention (A) is a perspective view of a flat plate state of the gas receiving portion constituting the device, and (b) is a perspective view of a state in which the gas receiving portion is closed.
  • the block diagram of the energy conversion apparatus which concerns on another embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the compressed gas generator which concerns on one Embodiment which comprises the energy conversion apparatus of this invention is shown, (a) shows the operation in a compression stroke, (b) shows the operation in a suction stroke.
  • the block diagram of another compressed gas generator used in the energy conversion apparatus of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention.
  • the block diagram of the energy conversion apparatus which concerns on still another Embodiment of this invention The figure which shows the apparatus and the like.
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  • the energy conversion device 1 includes a liquid tank 11, a gas receiving unit 12, a nozzle 13, a gas cylinder 14, an output means 3, and a recovery device 4.
  • the energy conversion device 1 is a device that ejects a compressed gas as a primary energy source into the liquid tank 11 in which the liquid 10 is stored, and converts the mobile energy due to the generated buoyancy into secondary energy that can be output from the liquid tank 11. Is.
  • the liquid tank 11 is a sealable tank and is usually used in a sealed state.
  • the liquid 10 is stored in the liquid tank 11.
  • the size of the liquid tank 11 is, for example, 2 to 3 m, but the size is not limited to this.
  • a power mechanism 31 that generates a rotational motion by using the buoyancy of the liquid 10 is installed inside the liquid tank 11, a power mechanism 31 that generates a rotational motion by using the buoyancy of the liquid 10 is installed inside the liquid tank 11, a power mechanism 31 that generates a rotational motion by using the buoyancy of the liquid 10 is installed inside the liquid tank 11, a power mechanism 31 that generates a rotational motion by using the buoyancy of the liquid 10 is installed inside the liquid tank 11, a power mechanism 31 that generates a rotational motion by using the buoyancy of the liquid 10 is installed inside the liquid tank 11, a power mechanism 31 that generates a rotational motion by using
  • the upper gear 31b is buried in the liquid 10 in FIG. 1, the upper portion thereof may be above the liquid surface, and for example, the upper half of the gear 31b may be above the liquid surface. ..
  • the amount to be released may be appropriately determined depending on the balance between the effectiveness of the buoyancy due to the gas in the gas receiving portion 12 and the resistance to the rotation of the gear 31b, for example, the resistance exerted by the liquid 10 on the gas receiving portion 12.
  • a plurality of gas receiving portions 12 are provided in the liquid tank 11 in the vertical direction by being dispersedly arranged in a ring shape on the belt 31a.
  • the gas receiving portion 12 can move up and down in conjunction with the movement of the belt 31a, rotates and moves at the up and down positions, and performs an orbital movement between the top and bottom as a whole.
  • the belt 31a and the gear 31b rotate clockwise, that is, clockwise.
  • the nozzle 13 ejects compressed gas from below the gas receiving portion 12 located at the lower part in the liquid tank 11.
  • the compressed gas is captured by the gas receiving portion 12 and gives buoyancy to the gas receiving portion 12.
  • the gas receiving portion 12 receives the buoyancy from the liquid 10, but when it moves upward, it receives the compressed gas ejected from the nozzle 13, and therefore receives a larger buoyancy than when it moves downward. ..
  • the number of nozzles 13 is not limited to one, and may be a plurality of nozzles 13.
  • gas may be discharged from a wide area into the gas receiving portion 12 by distributing a plurality of openings of the nozzle 13 over the entire surface of the downward opening of the gas receiving portion 12, such as an upward shower nozzle.
  • the gas receiving portion 12 is configured to have movable wings 12a that can be opened and closed, and is opened when buoyancy is generated by receiving the compressed gas ejected from the nozzle 13. It is in a closed state when it is in a state and does not generate buoyancy from the gas without receiving compressed gas. With this structure, the orbital motion of the gas receiving portion 12 and the belt 31a is performed more efficiently.
  • the gas cylinder 14 stores the compressed gas as a primary energy source and sends the compressed gas to the nozzle 13.
  • the gas cylinder 14 ejects compressed gas from the nozzle 13 via a valve 14a whose opening and closing is controlled.
  • the valve 14a is controlled to open only when the gas receiving portion 12 comes to a predetermined position.
  • the gas cylinder 14 is connected to a compressed gas generator 5 that generates a compressed gas.
  • the compressed gas generator 5 uses, for example, a general compressor that pumps gas by rotational motion of an impeller or rotor or reciprocating motion of a piston to convert mechanical energy into energy possessed by a fluid gas. good.
  • the compressed gas generator 5 is operated by power from the power source 50.
  • the power source 50 natural energy such as wind power, geothermal power, hydraulic power, tidal force, wave power and the like are suitably used for suppressing the generation of greenhouse gases.
  • the compressed gas generated by the compressed gas generator 5 is a gas whose pressure has been increased so that the gas can be supplied from the nozzle 13 to the gas receiving portion 12 against the water pressure of the liquid 10 in the liquid tank 11.
  • the gas supplied to the gas receiving unit 12 is supplied to apply the buoyancy of the liquid 10 to the gas receiving unit 12.
  • the output means 3 is a means for outputting the kinetic energy of upward movement due to buoyancy generated in the gas receiving portion 12 to the outside of the liquid tank 11 as secondary energy.
  • the output means 3 uses a power mechanism 31 that converts kinetic energy due to buoyancy into rotational energy of the rotary shaft 31c of the gear 31b, and electrical energy that uses the rotational energy of the rotary shaft 31c as secondary energy. It is provided with a power generation device 32 that converts the energy into.
  • the recovery device 4 is a device that returns the gas from the liquid tank 11 to the gas cylinder 14.
  • the space above the liquid tank 11 is a gas chamber 15 in which gas stays.
  • the recovery device 4 sends the gas staying in the gas chamber 15 to the gas cylinder 14 via the compressed gas generator 5.
  • the gas in the gas chamber 15 is a gas created from the nozzle 13 and a vapor of the liquid 10.
  • the recovery device 4 includes a three-way valve 41, a sub-bomb 40, and a valve 42 along the pipeline from the gas chamber 15 to the compressed gas generator 5.
  • the three-way valve 41 and the valve 42 are valves for adjusting the flow rate and closing the valve, which are controlled to open and close. It is desirable that these are compound function valves having the function of a check valve.
  • the three-way valve 41 has the function of a valve that allows gas to escape in order to reduce the pressure in the gas chamber 15.
  • the sub-bomb 40 functions as a buffer that assists the capacity of the gas chamber 15.
  • the recovery device 4 is composed of only a pipe connecting the gas chamber 15 and the compressed gas generator 5. May be good.
  • the operating gas that is, the compressed gas of the present apparatus is described as being air, but is not limited to air.
  • the liquid 10 will be described assuming that it is water. Water is injected into the liquid tank 11 in which the power mechanism 31 is installed, the piping such as the gas cylinder 14 is connected to the nozzle 13, the piping of the recovery device 4 is connected to the gas chamber 15, and the compressed gas generator 5 is operated. Let it prepare the compressed gas. The compressed gas is sent to the nozzle 13 while adjusting the gas pressure of the gas chamber 15 with the three-way valve 41 and further adjusting the valve 14a.
  • the gas constituting the compressed gas coming out of the upward opening of the nozzle 13 is captured by the gas receiving portion 12 opened at the lowermost part of the belt 31a moving upward and replaced with the water in the upper space of the gas receiving portion 12. Then, since the buoyancy based on the gas is applied to the gas receiving portion 12, there is a difference in the force acting on the left and right belts 31a based on the buoyancy of the liquid 10, and the belt 31a gradually starts to rotate clockwise. When the gas is received by the gas receiving portion 12 moving one after another on the nozzle 13, the orbital movement of the belt 31a becomes a steady state.
  • Gas is discharged to information from the gas receiving portion 12 that rotates with the belt 31a in contact with the upper gear 31b in the steady state of the orbital movement of the belt 31a.
  • the gas receiving portion 12 that has released the gas moves downward with the movable blade 12a that can be opened and closed closed.
  • the movable blade 12a that can be opened and closed opens to receive the gas from the nozzle 13.
  • the orbiting belt 31a converts the kinetic energy from the gas receiving portion 12 that rises due to buoyancy into the rotational kinetic energy of the gear 31b.
  • the rotation of the gear 31b rotates the rotating shaft 31c, and the rotational energy becomes electric energy generated by the power generation device 32 and is taken out to the outside.
  • this energy can be used to directly move gears and turn the screws of the ship.
  • the pressure P1 is the pressure of the compressed gas sent from the gas cylinder 14.
  • the pressure PW is a water pressure determined by the depth of the liquid 10.
  • the pressure P2 is the pressure of the gas in the gas chamber 15.
  • the compressed gas generator 5 compresses the gas in order to obtain the required pressure P1 to a high pressure of at least water pressure PW or higher.
  • the recovery device 4 controls the opening and closing of the three-way valve 41 to adjust the gas pressure P2 in the gas chamber 15 so that the above equation is satisfied.
  • the compressed gas circulates in the device while receiving pressure fluctuations as a working gas.
  • the energy conversion device 1 forms a closed circulation circuit of operating gas in a steady state.
  • various parts such as valves, pressure sensors, tanks, etc. may be appropriately incorporated into the energy conversion device 1.
  • a compressed gas as a primary energy source is ejected into the liquid tank 11 in which the liquid 10 is stored, and the kinetic energy due to the generated buoyancy is converted into secondary energy from the liquid tank 11.
  • the gas can be recovered in the gas cylinder 14 and reused. Therefore, energy can be efficiently generated and converted.
  • a special gas such as air
  • the special gas can be recovered and reused.
  • the pressure P2 of the gas in the gas chamber 15, that is, the pressure energy of the gas can be reused.
  • the energy conversion device 1 of this embodiment is provided with a transmission mechanism 30 that mechanically extracts the rotational energy of the gear 31b to the outside instead of the power generation device 32 of the embodiment of FIG.
  • the liquid tank 11 is installed underground, but it is not limited to being installed underground, and may be installed semi-underground or above ground. The same applies to the energy conversion device 1 of FIG.
  • the transmission mechanism 30 is a coupler 3a such as a gear that engages with a gear 31b on the lower side of the power mechanism 31 and receives its rotational energy, and a shaft 3b, a coupler 3c, and a shaft 3d that are sequentially coupled to the coupler 3a. It is provided with a coupler 3e and a shaft 3f.
  • the sideways shaft 3b is led out to the outside of the liquid tank 11 through a communication opening 11w provided on the side wall of the liquid tank 11 located on the side of the lower gear 31b. Further, on the lateral outer side of the liquid tank 11, a water sealing tank 11A is provided so as to surround the coupler 3c and the vertical shaft 3d.
  • the water-sealed tank 11A has a communication opening 11w that communicates with the inside of the liquid tank 11 and an upper opening 11k that opens upward.
  • the liquid 10 is contained in the water-sealed tank 11A, and the liquid level thereof is opened to atmospheric pressure by the upper opening 11k.
  • the vertical relationship between the liquid level of the liquid 10 in the liquid tank 11 and the liquid level of the liquid 10 in the water-sealed tank 11A is different from each other when the gas pressure P2 in the gas chamber 15 is not atmospheric pressure. ..
  • the transmission mechanism 30 of the output means 3 in the energy conversion device 1 uses a water-sealed structure, mechanical energy can be taken out to the outside of the energy conversion device 1 without using a strict sealing structure.
  • the water-sealed structure can be similarly applied to the upper gear 31b.
  • the transmission mechanism 30 uses the energy converted and generated in the liquid tank 11 as mechanical energy via the couplers 3a, 3c, 3e and the shafts 3b, 3d, and 3f to the outside of the energy conversion device 1. It is taken out and transmitted to an external operating device 33.
  • the operating device 33 is a pumping machine, and is configured to include a plurality of buckets 33d on a chain 33c hung on the upper and lower sprockets 33a and 33b.
  • the rotational energy taken out to the outside of the energy conversion device 1 is transmitted as rotational energy to the upper sprocket 33a via the shaft 3f.
  • the energy based on the pressure of the compressed gas can be converted into mechanical energy and output, so that the mechanical energy can be used as it is as the energy for the mechanical operation of the operating device 33. ..
  • a plurality of liquid tanks 11 may be provided in parallel or in series with respect to the gas cylinder 14.
  • the energy conversion device 1 shown in FIG. 4 shows an example in which three liquid tanks 11 having the same structure are installed in parallel with respect to a gas cylinder 14. Compressed gas is delivered to the nozzle 13 of each liquid tank 11 via the valve 14a. Further, the gas in the gas chamber 15 of each liquid tank 11 is recovered in the sub bomb 40 via the three-way valve 41, respectively.
  • the liquid tanks 11 arranged in parallel are not limited to those having the same structure as each other, may have different structures from each other, and the number is not limited to three.
  • the energy conversion device 1 shown in FIG. 5 shows an example in which three liquid tanks 11 having the same structure are installed in series with the gas cylinder 14. Each liquid tank 11 is arranged at the same horizontal level. From the side close to the gas cylinder 14, compressed gas is sent to the nozzle 13 via the valve 14a in the first liquid tank 11. Gas is sent from the gas chamber 15 of the first liquid tank 11 to the nozzle 13 of the second liquid tank 11 via the three-way valve 41. Gas is sent from the gas chamber 15 of the second liquid tank 11 to the nozzle 13 of the third liquid tank 11 via the three-way valve 41. Then, the gas is recovered in the sub-bomb 40 from the gas chamber 15 of the third liquid tank 11.
  • the valve 14a and the three three-way valves 41 are used to adjust the pressures corresponding to the pressures P1, PW, and P2 described above in the three liquid tanks 11 to each other.
  • the liquid tanks 11 arranged in series are not limited to those having the same structure as each other, may have different structures from each other, and the number is not limited to three.
  • the energy conversion device 1 shown in FIG. 6 shows an example in which two liquid tanks 11 having the same structure are installed one above the other in series with respect to the gas cylinder 14.
  • the gas from the gas chamber 15 of the lower liquid tank 11 is sent to the nozzle 13 of the upper liquid tank 11 via the three-way valve 41.
  • the pipe for guiding the gas is piped to the upper level of the upper liquid tank 11 and then pulled back to the bottom of the liquid tank 11 and connected to the nozzle 13.
  • This piping structure is a structure for preventing the liquid 10 in the upper liquid tank from flowing into the lower liquid tank 11 through the gas pipe.
  • the upper and lower liquid tanks 11 communicate with each other by the water-sealed tank 11A.
  • a configuration is realized in which mechanical energy is taken out from the upper and lower liquid tanks 11 via a water-sealed tank 11A and a transmission mechanism 30 which are common to each other.
  • the upper and lower liquid tanks 11 are not limited to communicating with each other by the water-sealed tank 11A, and the upper and lower liquid tanks 11 may be independent of each other.
  • the set of the liquid tank 11, the water-sealed tank 11A, and the transmission mechanism 30 shown in FIG. 3 may be arranged in series in the upper and lower directions. In this case, the upper and lower liquid tanks 11 are connected to the respective water-sealed tanks 11A.
  • a transmission mechanism 30 is provided.
  • the compressed gas generator 5 generates a compressed gas by pressurizing the gas using a pressurized piston 52 provided in the cylinder 51.
  • the pressure piston 52 includes a piston body 52a and a sealing material 52b made of a floating ring-shaped O-ring whose internal pressure can be adjusted.
  • a pipe for creating compressed gas is openly connected to the lower side wall of the cylinder 51.
  • the pipe is connected to the gas cylinder 14 via a three-way valve 51a.
  • the lower portion of the cylinder 51 communicates with the water sealing tank 11A provided outside the side wall of the cylinder 51 by the water sealing structure.
  • a chain is locked on the lower surface of the pressure piston 52, and the chain is freely fixed to a hoisting machine 53 located above the water sealing tank 11A through the water sealing structure. There is.
  • the internal pressure of the floating ring-shaped sealing material 52b is increased to form a slidable sealing structure between the pressurizing piston 52 and the inner wall of the cylinder 51.
  • the pressure piston 52 is moved downward by the hoisting machine 53 to compress the gas inside the cylinder 51 and send the compressed gas to the gas cylinder 14.
  • the internal pressure of the floating ring-shaped sealing material 52b is weakened to form a structure having a gap between the pressure piston 52 and the inner wall of the cylinder 51.
  • the hoisting machine 53 is loosened, the pressure piston 52 is pulled upward, and gas is sucked into the cylinder 51.
  • the mechanism and energy for pushing the pressurizing piston 52 downward to compress the gas are not limited to those using the hoisting machine 53, and various methods can be used.
  • hydraulic pressure or water pressure may be applied to the upper surface of the pressure piston 52.
  • the intake step can be easily performed by lowering the internal pressure of the floating ring-shaped sealing material 52b whose internal pressure can be adjusted.
  • the compressed gas generator 5 heats the dry ice of an individual with the combustion heat of a mixed gas containing hydrogen and oxygen to form a gas, thereby expanding the volume to generate the compressed gas.
  • the generated compressed gas is sent to the gas cylinder 14.
  • the operating gas may be any gas that produces buoyancy when delivered from the nozzle 13.
  • the area from the gas chamber 15 to the gas cylinder 14 may be in a liquid or solid state instead of a gas.
  • an operating gas that is converted into dry ice or liquefied gas and converted into an individual or a liquid can be used.
  • a substance that is compressed into a liquefied gas may be used as the operating gas.
  • the compressed gas generator 5 generates compressed gas by passing a gas pipe through a heat exchanger 54 to heat the gas, and the other energy is the energy shown in FIGS. 1 and 3. It is the same as the conversion device 1.
  • a valve 42 On the upstream side of the heat exchanger 54, that is, on the sub bomb 40 side, there is a valve 42 having a check valve function.
  • a three-way valve 51a for adjusting the gas pressure and the like is provided as needed.
  • a heat medium 54a that becomes hot is enclosed in a housing of the heat exchanger 54.
  • a pipe for guiding an operating gas that circulates in the energy conversion device 1 and operates the energy conversion device 1, that is, a gas that becomes a compressed gas, is surrounded by a heat medium 54a in the heat exchanger 54.
  • the operating gas inside the pipe is vaporized at high pressure by receiving heat from the heat medium 54a and becomes a compressed gas.
  • the operating gas does not have to be a gas at all times while circulating in the energy conversion device 1, and may be in a liquid or solid state.
  • an operating gas material When generically including an operating gas in a state different from that of a gas, it is called an operating gas material.
  • the heat exchanger 54 may be, for example, in the embodiment of a solar water heater, in which metallic sodium is enclosed as a heat medium 54a having a high boiling point.
  • the heat exchanger 54 may heat the heat medium 54a using natural energy.
  • natural energy for example, solar energy, geothermal heat (heat of magma, etc.), heat of a hot spring, or the like may be used.
  • the substance to be the operating gas depends on the combination with the liquid 10 in the liquid tank 11, and further, the operating conditions of the energy conversion device 1, for example, various pressures P1, PW, P2, the temperature conditions of the liquid 10, and the operation time. It may be arbitrarily selected and used according to the physical property value of the above. For example, a refrigerant such as Freon may be used as the operating gas. Further, as the liquid 10, ammonia water or the like may be used in addition to water.
  • the operation gas circulation process in one embodiment of the energy conversion device 1 will be schematically described.
  • the operating gas is converted into a high-pressure gas by the compressed gas generator 5, sent to the device main body 11R of the energy conversion device via the gas bomb 14, and recovered from the device main body 11R to the sub bomb 40. Then, the gas returns to the compressed gas generator 5.
  • the apparatus main body 11R is a general term for the liquid tank 11 and its internal structure as a whole, and is a component for converting the primary energy of the compressed gas into kinetic energy and then outputting it to the outside of the liquid tank 11 as secondary energy. including.
  • the compressed gas generator 5 of the present embodiment includes a compressor 16, a heat exchanger 17, and a vaporizer 18.
  • chlorofluorocarbons used as a refrigerant in a refrigerator or the like will be described as an operating gas.
  • Such an operating gas can be used as a heat source when it is heated to a high temperature, and can be used as a heat resting material when it expands to generate heat of vaporization and is cooled to a low temperature. It can also be used as a gas that gives buoyancy to the gas receiving portion 12 in the conversion device 1.
  • the compressor 16 uses, for example, electric energy to compress the operating gas into a high temperature and high voltage state.
  • the heat exchanger 17 releases the heat of the operating gas inside the heat exchanger 17 to heat a liquid or gas such as water or air.
  • the heated liquid or gas is guided to another place and used for heating in air conditioning or the like.
  • the vaporizer 18 expands the operating gas through an expansion valve or the like to further lower the temperature.
  • the low-temperature operating gas can take away heat from the surroundings, and its heat absorption capacity is used for the construction of cooling systems and the like.
  • the operating gas that has passed through the heat exchanger 17 and the vaporizer 18 becomes a compressed gas whose pressure is appropriately adjusted, and is sent to the apparatus main body 11R via the gas cylinder 14 for energy transformation.
  • surplus energy is previously input to the operating gas, and in the subsequent heat exchanger 17 and the vaporizer 18, the surplus energy is used for heating and cooling, respectively. After that, energy transformation using buoyancy can be performed. It is possible to build a unified system as a whole in an environment where surplus energy can be input.
  • the power mechanism 31A in the energy conversion device 1 of FIG. 1 is replaced with a power mechanism 31A having an aspect of a water turbine.
  • the power mechanism 31A has a plurality of gas receiving portions 12 provided around the outer periphery of a rotating body that rotates around one axis.
  • the gas receiving portion 12 has the structure shown in FIGS. 2 (a) and 2 (b).
  • two power mechanisms 31A that rotate clockwise are installed in the liquid tank 11. Further, a valve 14a and a nozzle 13 are set for each power mechanism 31A, respectively. The rotational energy of the power mechanism 31A is converted into electrical energy by the power generation device 32.
  • the first liquid tank 11B and the second liquid tank 11C having the same structure are connected in series.
  • the first liquid tank 11B and the second liquid tank 11C are installed at the same horizontal level, but may be installed up and down as shown in FIG. 6, for example.
  • the gas chamber 15, which is the space above the first liquid tank 11B, and the nozzle 13 of the second liquid tank are connected by a pipe 21.
  • a three-way valve 41, a three-way valve 41a, and a buffer tank 70 are connected to the pipe 21.
  • the three-way valve 41 and the three-way valve 41a are valves whose opening and closing are controlled.
  • the buffer tank 70 is provided with a pressure sensor.
  • a pressure sensor is also provided in the gas chamber 15.
  • the three-way valve 41a is controlled to open and close according to the internal pressures of the gas chamber 15 and the buffer tank 70 detected by the pressure sensor. Open / close control is performed by a personal computer or the like connected to the pressure sensor.
  • the energy conversion device 1 constitutes a pressure adjusting mechanism for adjusting the pressure of the gas input to the lower part of the second liquid tank 11C.
  • the pressure adjusting mechanism first sets the on-off valve (three-way valve 41a) on the inlet side of the three-way valve 41 and the buffer tank 70 when the internal pressure of the gas chamber 15 of the first liquid tank 11B reaches a predetermined value (for example, 1.5 atm). Of these, the first liquid tank 11B side) is opened, and the gas in the gas chamber 15 is guided to the buffer tank 70.
  • the pressure adjusting mechanism is an on-off valve on the inlet side of the buffer tank 70 (the first liquid tank 11B side of the three-way valve 41a) when the internal pressure of the buffer tank 70 reaches a predetermined value (for example, 1.4 atm). Closes and opens the on-off valve on the outlet side of the buffer tank 70 (the second liquid tank 11C side of the three-way valve 41a). As a result, the gas controlled to a predetermined value (for example, 1.4 atm) is supplied to the nozzle 13 of the second liquid tank 11C.
  • a predetermined value for example, 1.4 atm
  • the on-off valve on the inlet side of the buffer tank 70 (the first liquid tank 11B side of the three-way valve 41a) is opened to open the buffer tank 70.
  • the on-off valve on the outlet side (the second liquid tank 11C side of the three-way valve 41a) is closed.
  • the pressure adjusting mechanism can supply the gas with the optimized pressure to the second liquid tank 11C. For example, if the pressure is adjusted so high that the gas in the buffer tank 70 does not liquefy and solidify, the power mechanism of the second liquid tank 11C can be operated with the maximum energy efficiency.
  • the energy conversion device 1 of FIG. 13 includes a first buffer tank 70a and a second buffer tank 70b connected in series.
  • a three-way valve 41b is connected between the first buffer tank 70a and the second buffer tank 70b, and a three-way valve 41c is connected between the second buffer tank 70b and the second liquid tank 11C.
  • the pressure adjusting mechanism first opens and closes a valve (the third of the three-way valves 41) on the inlet side of the first buffer tank 70a when the internal pressure of the gas chamber 15 of the first liquid tank 11B reaches a predetermined value (for example, 1.5 atm).
  • a predetermined value for example, 1.5 atm.
  • the 1-liquid tank 11B side and the 1st buffer tank 70a side) are opened, and the gas in the gas chamber 15 is guided to the 1st buffer tank 70a.
  • the pressure adjusting mechanism closes the on-off valve on the inlet side of the first buffer tank 70a and closes the on-off valve of the first buffer tank 70a.
  • the on-off valve on the outlet side (the first buffer tank 70a side of the three-way valve 41b) and the on-off valve on the inlet side of the second buffer tank 70b (the second buffer tank 70b side of the three-way valve 41b) are opened. After that, when the internal pressure of the second buffer tank 70b reaches a predetermined value (for example, 1.3 atm), the on-off valve on the inlet side of the second buffer tank 70b is closed and the on-off valve on the outlet side of the second buffer tank 70b. open.
  • a predetermined value for example, 1.3 atm
  • the pressure adjusting mechanism opens the on-off valve on the inlet side of the first buffer tank 70a to open the outlet of the first buffer tank 70a. Close the on-off valve on the side. Further, the pressure adjusting mechanism opens the on-off valve on the inlet side of the second buffer tank 70b when the internal pressure of the second buffer tank 70b approaches a predetermined value (for example, 1.2 atm) to open the outlet of the second buffer tank 70b. Close the on-off valve on the side.
  • a predetermined value for example, 1.3 atm
  • the energy conversion device 1 of FIG. 14 includes a first buffer tank 70a and a second buffer tank 70b connected in parallel as compared with the structure of FIG.
  • a four-way valve 41d and a three-way valve 41e are connected between the first liquid tank 11B and the first buffer tank 70a.
  • a three-way valve 41f and a four-way valve 41i are connected between the first buffer tank 70a and the second liquid tank 11C.
  • a four-way valve 41d and a three-way valve 41g are connected between the first liquid tank 11B and the second buffer tank 70b.
  • a three-way valve 41h and a four-way valve 41i are connected between the second buffer tank 70b and the second liquid tank 11C.
  • the pressure adjusting mechanism first opens the on-off valve on the inlet side of the first buffer tank 70a when the internal pressure of the gas chamber 15 of the first liquid tank 11B reaches a predetermined value (for example, 1.5 atm), and the first buffer tank The gas in the gas chamber 15 is guided to 70a.
  • the pressure adjusting mechanism closes the on-off valve on the inlet side of the first buffer tank 70a when the internal pressure of the first buffer tank 70a reaches a predetermined value (for example, 1.4 atm), and the pressure adjusting mechanism of the first buffer tank 70a.
  • the on-off valve on the outlet side is opened, and the on-off valve on the inlet side of the second buffer tank 70b is opened.
  • the pressure adjusting mechanism closes the on-off valve on the inlet side of the second buffer tank 70b and exits the second buffer tank 70b. Open the on-off valve on the side.
  • a predetermined value for example, 1.4 atm
  • the on-off valve on the inlet side of the first buffer tank 70a is opened and the on-off valve on the outlet side of the first buffer tank 70a is opened. close up.
  • the on-off valve on the inlet side of the second buffer tank 70b is opened and the on-off valve on the outlet side of the second buffer tank 70b is opened. close up.
  • the first buffer tank 70a and the second buffer tank 70b may be connected by a pipe and an on-off valve so that gas can flow to each other.
  • the first buffer tank 70a and the second buffer tank 70b are also configured to be connected in series.
  • the number of buffer tanks is not limited to the examples shown in FIGS. 12, 13, and 14.
  • the energy conversion device may include a larger number of buffer tanks.
  • the plurality of buffer tanks may be connected in an appropriate combination of series and parallel.
  • the number of pipes connecting the first liquid tank 11B and the second liquid tank 11C may be a plurality of pipes.
  • the gas whose pressure is appropriately controlled is supplied to the nozzle 13 of the second liquid tank 11C.
  • the pressure adjusting mechanism can supply the gas of the optimized pressure to the second liquid tank 11C.
  • the pressure adjusting mechanism can operate the power mechanism even with the minimum necessary pressure, and can also adjust the timing of accumulating gas in the buffer tank and the timing of supplying gas to the second liquid tank 11C. ..
  • FIG. 15 is a block diagram of an energy conversion device according to still another embodiment.
  • the energy conversion device of the present embodiment includes a first sub-bomb 40a and a second sub-bomb 40b connected in parallel between the second liquid tank 11C and the sub-bomb 40, as compared with the structure of FIG.
  • a four-way valve 41j is connected between the second liquid tank 11C and the first sub-bomb 40a.
  • a three-way valve 41 is connected between the first sub-bomb 40a and the sub-bomb 40.
  • a three-way valve 41 is connected between the second sub-bomb 40b and the sub-bomb 40.
  • the pressure adjusting mechanism can adjust the pressure of each sub-bomb by controlling the opening and closing of each on-off valve according to the internal pressure of the gas chamber 15, the sub-bomb 40a, and the sub-bomb 40b of the second liquid tank 11C. can. Therefore, the pressure of the gas supplied to the recovery device can be efficiently controlled.
  • FIG. 16 is a block diagram of an energy conversion device according to still another embodiment of the present invention.
  • the energy conversion device 1 of FIG. 16 includes an input unit 67 for inputting a substance as primary energy into the liquid tank 11 instead of the nozzle 13 shown in FIG.
  • the input unit 67 pushes out a liquid or solid of a substance as primary energy and inputs it to the lower part of the liquid tank 11.
  • the substance as primary energy vaporizes from a liquid or solid in the liquid tank 11. For example, if a solid that vaporizes at room temperature (for example, 15 ° C.) such as dry ice is input to the lower part of the liquid tank 11, the dry ice is vaporized from the solid in the liquid tank 11.
  • room temperature for example, 15 ° C.
  • nitrosyl chloride has a boiling point of ⁇ 5 ° C. and vaporizes at room temperature. Therefore, if the temperature of the liquid tank 11 is kept higher than ⁇ 5 ° C. (for example, 15 ° C.), when liquid nitrosyl chloride is input to the lower part of the liquid tank 11, the nitrosyl chloride becomes liquid in the liquid tank 11. Evaporate from.
  • the input unit 67 shown in FIG. 16 includes a cylinder and a piston as an example.
  • An opening is provided at a predetermined position on the side surface of the cylinder to allow a liquid or solid substance to enter.
  • the opening is closed by a shutter 61 that can be opened and closed.
  • the connection portion of the cylinder with the liquid tank 11 is closed by a shutter 62 that can be opened and closed.
  • the shutter 62 is opened, the inside of the cylinder and the liquid tank 11 communicate with each other.
  • the inside of the cylinder communicates with the outside.
  • the inside of the cylinder communicates with the heat exchanger 60 via a pipe.
  • only one of the outside and the heat exchanger 60 can be communicated inside the cylinder, or both can be communicated.
  • the piston of the input unit 67 When the piston of the input unit 67 is pulled out from the liquid tank 11 and the piston moves to the position of the shutter 61, the liquid or solid of the substance as the primary energy can be input from the outside or into the cylinder from the heat exchanger 60. At this time, if the shutter 62 is closed, the liquid tank 11 and the inside of the cylinder are shut off, so that the pressure in the cylinder can be easily adjusted and a liquid or solid substance can be easily input into the cylinder. .. Then, when the shutter 61 is closed and the shutter 62 is opened, the cylinder and the liquid tank 11 communicate with each other. When the piston moves into the liquid tank 11, a liquid or solid substance is input into the liquid tank 11.
  • the pressure in the cylinder is made uniform with the pressure in the liquid tank 11, so that the piston can be pushed out with a very light force.
  • the heat exchanger 60 is connected to the gas chamber 15 of the liquid tank 11 via the three-way valve 41.
  • the heat exchanger 60 is an example of a recovery device, and recovers the gas in the gas chamber 15 and returns the gas to a liquid by cooling the gas.
  • nitrosyl chloride has a boiling point of ⁇ 5 ° C. Therefore, the heat exchanger 60 can liquefy nitrosyl chloride and lead it to the shutter 61 by cooling the recovered gas to ⁇ 5 ° C. or lower.
  • the liquefied substance can naturally fall to the shutter 61 due to gravity (self-weight).
  • the heat exchanger 60 which is an example of the recovery device, may cool the gas by using the surplus energy of the power mechanism of the energy conversion device and change the recovered gas into a liquid or a solid, or may use natural energy to change the gas. It is also possible to change the recovered gas into a liquid or solid.
  • FIG. 17 is a configuration diagram of an energy conversion device according to an embodiment in which a substance is changed into a liquid by using natural energy.
  • the liquid tank and the recovery device are installed in places having different temperature environments.
  • the recovery device uses natural energy due to the difference in temperature environment from the liquid tank to change the substance into a liquid or solid and return it to the input unit.
  • the liquid tank 11 is installed underground.
  • the heat exchanger 90 which is an example of the recovery device, is installed on the ground.
  • the lower part of the liquid tank 11 is maintained in a temperature environment of about 15 ° C. as an example by geothermal heat.
  • the ground is, for example, a temperature environment of ⁇ 10 ° C.
  • the heat exchanger 90 is connected to the gas chamber 15 of the liquid tank 11 via the three-way valve 41.
  • the portion of the path from the liquid tank 11 to the heat exchanger 90 that is located on the ground is covered with the heat insulating material 100. Therefore, the temperature from the gas chamber 15 to the heat exchanger 90 is maintained, and the recovered substance maintains the gas state.
  • the heat exchanger 90 cools the recovered gas and changes it into a liquid. For example, if the temperature environment on the ground is ⁇ 10 ° C., nitrosyl chloride changes to a liquid. The substance that has turned into a liquid falls in a pipe that extends underground due to gravity (self-weight). The pipe extends to the bottom of the liquid tank 11. The pipe installed underground is covered with the heat insulating material 100. Therefore, the substance that has changed to a liquid in the heat exchanger 90 maintains the liquid state and moves to the lower part of the liquid tank 11.
  • the sub tank 400 is connected to the pipe.
  • the sub-tank 400 functions as a buffer tank for holding the substance changed into a liquid. If the volume inside the pipe can store a sufficient amount of liquid, the pipe also functions as a buffer, so that the sub tank 400 is unnecessary.
  • the pipe is connected to the lower part of the liquid tank 11.
  • the bottom of the pipe is located at the bottom of the liquid tank 11. Therefore, the liquid substance that has fallen in the pipe is input to the inside of the liquid tank 11 again.
  • the liquid tank 11 is maintained at, for example, about 15 ° C. by geothermal heat. Therefore, the liquid nitrosyl chloride is input to the inside of the liquid tank 11 and vaporized.
  • the substance to be used as the primary energy source is appropriately selected according to the temperature environment of the liquid tank 11 and the temperature environment of the heat exchanger 90.
  • the substance for example, dry ice (CO2), chlorofluorocarbons, alternative chlorofluorocarbons, or the like may be used as the primary energy source.
  • CO2 dry ice
  • chlorofluorocarbons alternative chlorofluorocarbons, or the like
  • nitrosyl chloride has a boiling point of ⁇ 5 ° C. and a vapor pressure (20 ° C.) of 340 kPa. If the lower part of the liquid tank 11 is maintained in a temperature environment of about 15 ° C. due to geothermal heat and the temperature environment on the ground is -10 ° C., the nitrosyl chloride recovered from the gas chamber 15 is naturally stored in the heat exchanger 90.
  • the shutter 62 shown in FIG. 16 may be installed at the connection point between the pipe and the liquid tank 11. In this case, the timing of inputting the dropped liquid into the liquid tank 11 can be adjusted.
  • the liquid tank 11 is maintained in a temperature environment of about 15 ° C. due to geothermal heat, and the heat exchanger 90 is maintained in a temperature environment of ⁇ 10 ° C. due to the atmospheric temperature on the ground.
  • Underground and atmospheric temperatures vary from place to place. Further, it is not always necessary to install the liquid tank 11 underground.
  • the liquid tank 11 may be kept at a high temperature (for example, about 40 ° C.) by, for example, a solar water heater, a hot spring, or geothermal heat (heat of magma, etc.).
  • the temperature environment of the liquid tank 11 can be set to be higher than that on the ground.
  • pentane has a boiling point of 36 ° C. If the substance as the primary energy source is pentane, the lower part of the liquid tank 11 is kept in a temperature environment of about 40 ° C, and the ground is in a temperature environment of 30 ° C, the pentan recovered from the gas chamber 15 is The heat exchanger 90 changes to a liquid by natural energy, is input to the lower part of the liquid tank 11 again, and changes to a gas.
  • the energy conversion device of FIG. 17 does not have a compressor, but the gas may be compressed by the compressor.
  • the power of the compressor uses natural energy.
  • energy such as wind power, hydraulic power, and biomass.
  • a water turbine that generates hydraulic power is installed on the side of a river, for example.
  • an artificial structure that imitates the shape of a rias coastline is installed on the coastline, the seawater is moved to a high position using the force of the waves of the sea, the seawater is stored in a tank, etc., and the seawater is gravity.
  • the water turbine may be driven by using the falling force.
  • the energy of the waves can be used to obtain a large amount of potential energy of seawater semi-permanently.
  • the kinetic energy of the object is proportional to the square of the moving speed, the energy can be efficiently obtained from the dropped seawater or the like. For example, if seawater is dropped from a height of about 60 m, the kinetic energy will be about 625 times higher than that at a speed of 1 m / sec. Therefore, for example, if 40 L / sec of seawater or the like is dropped, sufficient energy can be obtained to drive the compressor.
  • the substance to be dropped is not limited to seawater. You may drop it using spring water at a high position in the mountain. Alternatively, for example, an object containing iron may be dropped into a baseball ball. A large number of the balls may be prepared and dropped regularly by rails or the like to transfer energy to the turbine for power generation.
  • the rail may be provided with an openable / closable stopper to control the flow of the ball.
  • a plurality of rails on which the ball falls may be prepared so that the energy of the ball or the like can be independently transmitted to the turbine or the like that receives the energy. For example, by slightly shifting the positions of the turbines, energy such as balls can be efficiently transmitted to the turbines and the like. For example, the position of the ball can be controlled so that the rotation of the turbine or the like is most efficient.
  • the dropped ball can be moved to a higher position again by a recovery device such as a conveyor used in a batting center or the like by the power of an energy conversion device.
  • a tank for storing the dropped liquid may be prepared, and the liquid may be scooped up with a bucket or the like and moved to a higher position again.
  • the falling object may be a magnet. If a coil is installed around the lane where the magnet falls, the coil can generate electricity. Such a power generation method can also be applied to the above-mentioned output means 3.
  • FIG. 17 shows an example of changing a gas recovered on the ground at a low temperature into a liquid or a solid, but it is not always necessary to change the gas into a liquid or a solid.
  • the gas compressed by the compressor driven by natural energy may be held in a cylinder installed in a place having a constant temperature (for example, about 5 ° C.) such as in the ground.
  • the compressed gas is input to the lower part of the liquid tank 11, heated to about 15 ° C., and ejected from the nozzle.
  • the energy conversion device may input a plurality of substances (first substance and second substance) into the lower part of the liquid tank 11 and change them into a gas by a chemical reaction or the like.
  • the energy conversion device inputs compressed air (gas), dry ice, and Daisei gas (Omasa gas, HHO / GAS, etc.) to the lower part of the liquid tank 11 and transfers heat due to electric or chemical reaction, etc.
  • Daisei gas may be ignited, and the heat may be used to turn dry ice into a gas and expand it, and give energy to move upward from the lower part of the liquid tank 11 together with the compressed gas.
  • the reaction does not have to be inside the liquid tank 11.
  • a reaction vessel may be prepared, a substance may be reacted in the reaction vessel, and the generated gas may be input to the lower part of the liquid tank 11.
  • the energy conversion device may boil the liquid (for example, water) in the liquid tank 11 and move the movable blade 12a by the boiled gas. If a certain temperature (for example, 15 ° C.) is maintained in the upper part of the liquid tank 11, the gas returns to the liquid in the upper part of the liquid tank 11.
  • a certain temperature for example, 15 ° C.
  • the energy for boiling a liquid for example, the energy of sunlight, the geothermal heat of magma, a hot spring, or the like can be obtained.
  • Sodium hydrogen carbonate may be input as a substance and react with the liquid 10 of the liquid tank 11 to generate carbon dioxide gas.
  • FIG. 18 is a plan view showing an example of an energy conversion device in which a plurality of liquid tanks 11 are installed on a pedestal 150.
  • a plurality of liquid tanks 11 are installed on a pedestal 150.
  • four liquid tanks 11 are installed at intervals of 90 degrees on the upper surface of the disc-shaped pedestal 150.
  • the number and position of liquid tanks 11 to be installed are not limited to this example.
  • the pedestal 150 is rotated by a motor or the like (not shown).
  • the pedestal 150 may be rotated according to the principle of the motor by providing a coil around the pedestal 150 and further providing a magnet around the coil. If the pedestal 150 rotates at a certain speed, the pedestal 150 can maintain the rotation at a constant speed under zero gravity even if the motor is stopped. Further, a plurality of pedestals 150 may be arranged so as to be stacked in the vertical direction. For example, four pedestals 150 may be vertically stacked and 16 liquid tanks 11 may be installed.
  • FIG. 19 is a block diagram of an energy conversion device according to still another embodiment of the present invention.
  • the same configuration as in FIG. 16 is designated by the same reference numerals, and the description thereof will be omitted.
  • the energy conversion device 1 of FIG. 19 is installed in the lower part of the liquid tank 11, and is caused by a cylinder 91 for inputting a liquid or a solid substance from an input unit 67 and a pressure at which the substance input to the cylinder 91 evaporates and expands. It has a moving piston 92 and a second output means 31d that outputs kinetic energy due to the movement of the piston 92 as secondary energy.
  • the energy conversion device 1 includes a discharge unit 93 for discharging the gas in the cylinder 91 and guiding the gas to the movable blade 12a which is a gas receiving part.
  • a shutter 63 is provided between the discharge unit 93 and the cylinder 91.
  • the cylinder 91, the piston 92, and the second output means 31d have a structure similar to that of an internal combustion engine used in an automobile or the like.
  • the energy conversion device 1 of the present embodiment does not expand the fuel such as gasoline, but inputs a liquid or solid substance into the cylinder 91, and moves the piston 92 by the pressure at which the substance vaporizes and expands. Let me.
  • the kinetic energy due to the movement of the piston 92 is converted into rotational energy by the crank, gear, or the like of the second output means 31d, and is connected to a power generation device 32 or the like that converts it into electrical energy as secondary energy.
  • the substance input to the cylinder 91 is all vaporized when the piston 92 moves to the highest position, and is adjusted to the amount that maximizes the pressure in the cylinder 91.
  • the energy conversion device 1 opens the shutter 63 after the piston 92 has moved to the highest position.
  • the gas in the cylinder 91 is discharged from the discharge unit 93 due to the internal pressure.
  • the discharge unit 93 has a nozzle that ejects gas upward below the movable blade 12a.
  • the piston 92 is given a force to move downward from the highest position by the inertial force of the crank in the second output means 31d.
  • the gas in the cylinder 91 is pushed out from the discharge portion 93 by a downward force of the piston 92 in addition to the internal pressure. Further, the gas in the cylinder 91 is pushed out from the discharge portion 93 by the force due to the own weight of the piston 92.
  • the energy conversion device 1 of the present embodiment can further improve energy efficiency.
  • a substance that vaporizes due to pressure change such as dry ice in an airtight container, put a fluid liquid in it, and if the gas etc. coming from the difference in specific gravity moves upward on the ground
  • Wings, etc. convert energy into rotational energy and take that energy out through gears, shafts, etc. and use it as power.
  • the vaporized dry ice (which is an example and may have similar properties) is re-introduced to another similar tank through a closed tank or the like. It is also possible to adjust the internal pressure by providing an open / close valve or the like in a part of the closed tank. Multiple sealed tanks can be connected.
  • Energy can be obtained by connecting the devices in this way and assembling such a device.
  • To send dry ice etc. in solid form or liquid it is easy to understand the image of sending dry ice etc. in the same way as a bicycle pump. It is just an example. If you inflate your bicycle with an inflator, connect the tire to the inflator, stuff dry ice (solid, liquid, gas) in the inflator pump in a sealed state and then send it to the tire from the tire. Also, the image of returning dry ice (gas, etc.) to the inflator.
  • a light object for example, carbon dioxide as a gas
  • a heavy object for example, water
  • Water is put in the tank in advance through a pipe from the outside.
  • the pipe has an opening and closing stool, and if you close the faucet etc., you can prevent the water in the tank from leaking to the outside.
  • dry ice solid carbon dioxide
  • the pressure drops and vaporizes, where the gas moves to the top of the tank.
  • the gas that has moved to the top moves through a pipe toward a second tank with a similar structure. Then move in the tank again and go up. There is a pipe at the top of the tank, etc., through which carbon dioxide is guided to a certain place. Then, the carbon dioxide sent by connecting the pipe to a compression machine is made into a solid or liquid state again. Then you can put it in again from the inlet of the very first tank.
  • solid carbon dioxide (injected as dry ice, liquid carbon dioxide, or in a gaseous state) is injected into the inlet of the first tank as a substance.
  • the carbon dioxide vaporized by injecting it can be recovered from the third tank, and it can be repressurized and returned to the inlet of the first tank.
  • the present invention is not limited to the above configuration and can be modified in various ways.
  • the configurations of the above-described embodiments can be combined with each other.
  • the sled part has a rail structure, etc., which has a protruding shape so that it slides on a frozen road surface but does not derail sideways. Tires or the like that are in contact with the side surface of the rail may be attached to the sled in order to reduce impact or the like on a curve or the like.
  • a hollow hole party is provided at the end of the lane so that rainwater, etc. can quickly escape into the structure on the lane that has been cooled and the liquid in the contact area is kept at a temperature with low resistance.
  • the structure on the passage allows rainwater to flow out.
  • a roof should be attached to the top to prevent rainwater and shield everything around it.
  • a transparent and light-transmitting substance when shielding a structure that is covered with strong plastic or connected with a PET bottle (may be a special one), and is a place where the PET bottle originally contained juice.
  • a PET bottle may be a special one
  • the temperature of the solar panel can be controlled by flowing water of about 15 ° C from the underground tank, etc., or the solar panel can be made waterproof to improve the airtightness, and shallow water is collected in the panel. It is attached to a tub, etc., and water, etc. at about 15 ° C, which is installed about 5 meters underground, is poured there and collected in an underground tank, etc. If the positional relationship is such that natural groundwater flows naturally, it may be flushed and the temperature of the panel etc. is controlled.
  • a PET bottle or the like for example, the part of the drinking spout is cut out and a plurality of rectangular cubes are glued together to construct a structure in which water of an underground tank is put.
  • a structure containing water or the like is used to create a hollow structure.
  • a solar panel or the like whose temperature is to be controlled in the hollow part or the like. This will increase the amount of power generation by installing a similar device for solar panels installed in homes. If the temperature of the solar panel becomes too high, the amount of power generated will decrease.
  • water of about 15 degrees in the underground tank is used. Since the ground temperature around the underground tank differs depending on the depth, it is possible to install multiple tanks at different depths and mix the water and the like.
  • a pipe of about 5 cm in length and width (the standard scale can be changed freely) is installed in the underground tank, and a passage is installed around it to allow water to flow.
  • the above-mentioned underground tank water etc. is flowed there, and a fan etc. is attached to the end of the pipe to send the wind.
  • air or the like moves in the pipe by the force of a fan or the like, it exchanges heat with the surrounding water or the like (for example, if it is a thin material such as a PET bottle, heat is easily conducted) and is gradually cooled in the summer. If the length of the pipe is increased to some extent, the temperature from the outlet of the pipe becomes close to the temperature of water from the underground tank.
  • a structure can be made by connecting PET bottles and the like. Fans such as electric fans consume less power, which saves energy.
  • the tube does not have to be straight and may be curved for distance. It is also possible to make it easier to exchange heat when a cold or the like hits by passing water or the like through a thinner pipe through the pipe. To increase the area of contact with the temperature of water, etc. around 15 ° C and the flowing air by passing it between the passage and the pipe where water, etc., which circulates through rods of metal, etc. with high thermal conductivity, is flowing. You can also.
  • a fan or the like can be attached not only to the entrance of the pipe but also to the other outlet or in the middle to improve the heat exchange efficiency.
  • This device can be installed indoors, but it can also be installed at a constant ground temperature of about 5 meters underground. Air is taken in and out with a pipe. If air is sent into the pipe through a pipe to a depth of about 15 ° C near 5 meters underground, the temperature will be the same when the air sucked in above ground goes around the underground and exits from the pipe outlet in the summer. However, it is the same regardless of the season even in winter when the soil temperature is close to 15 ° C. Water etc.
  • the above space for blowing warm air, etc. is installed underground or above ground, but considering the cost of digging underground, such as when the ground is extremely cold, use water from a tank about 5 meters underground at about 15 degrees Celsius. You may use the heat insulation system. Since the underground tank or the like has a depth that varies depending on the depth, it is possible to prepare multiple tanks and mix water or the like. If necessary, the efficiency etc. will be improved by covering the outer circumference of the device for sending air etc. made from this PET bottle etc. with a heat insulating material (such as foamed polystyrene which has a heat insulating effect). It is also possible to send cold air or the like.
  • a heat insulating material such as foamed polystyrene which has a heat insulating effect
  • a space such as a certain rectangle is created by connecting PET bottles and the like, and a structure and the like are made by connecting PET bottles and the like in the space. Then, as described above, a liquid or the like is allowed to flow in, and in the above case, a substance to be dried or a substance to be moistened is put in a place where air is being sent. At this time, the air or the like can be tightly packed so as not to be delayed, or there is a certain gap so that warm air or the like can flow there. For example, when evaporating seawater to take out salt, etc., a space for seawater, a space for warm air to flow over it, and a plate-shaped passage made using PET bottles under it (may be slightly inclined).
  • the outer circumference can be surrounded by a PET bottle or the like, and the entire inside can be pressurized with a compressor or the like.
  • a compressor or the like By using the power of sunlight or flowing hot water, the evaporation of seawater is accelerated and warm air is sent to accelerate it.
  • the inside pressurized by the compressor is returned to the normal atmospheric pressure, and cold water from the underground tank etc. is poured into the pipe. Due to the decrease in humidity and the cooling of the nearby temperature, water droplets from the air flow through the installed plate and move to the lowest position.
  • a filter or the like for salt damage countermeasures can be installed at a fan or the like for taking in or discharging outside air.
  • the cause of salt damage is that the fine particles generated when the waves break are blown up by the wind and carried, so this device does not generate fine particles in the first place, so it is only installed just in case. Where it can be ventilated, make sure it can withstand the pressure inside with a hatch.
  • this device it is also possible to install this device in a space such as a solar panel where sunlight is required to prevent the temperature of the solar panel from rising and to obtain salt or the like.
  • a space such as a solar panel where sunlight is required to prevent the temperature of the solar panel from rising and to obtain salt or the like.
  • adjust the angle of the device by making a pedestal etc. from a transparent material such as a PET bottle according to the installation angle of the solar panel.
  • the space When breeding fish, the space should have a loop-like structure to prevent the fish from colliding with the wall of the space containing water, etc. by accelerating in a direction close to the vertical direction.
  • the upper part may also be made of a material such as a PET bottle.
  • a pump is used to suck out the water or the like in it and apply pressure to eject it, or to send compressed air or the like in one direction to give the water or the like rotation in a certain direction.
  • the width of the loop-shaped structure where the fish are swimming should be about 50 cm to 100 cm (as a guide only).
  • an electric compressor etc. is used as the power of the compressor by using the energy of the gear that moves by hydraulic power for the power of the compressor or by transmitting the rotational energy of the windmill with the gear. do.
  • a tank that stores compressed air is installed in a place with a constant ground temperature of about 5 meters underground, or it is blown into water in a tank installed 5 meters underground to raise the temperature to 15 ° C. I'm afraid.
  • natural energy such as hydraulic power as the power of an air compression compressor and storing it in a cylinder installed underground, it is possible to take it out at any time like a battery and use it to move gears.
  • the tsunami will rush to a high place, so we will artificially create such a structure and bring the seawater to a place 10 meters or more higher than the coastline by the power of the sea wave. Then, by accumulating it, this time, the turbine of hydroelectric power generation using gravity is turned to generate electricity, and it is used as power for turning a compression compressor such as air. It is useful for human life by obtaining the potential energy of a large amount of seawater semi-permanently by using the energy of sea waves. It is also conceivable to collect compressed air in a cylinder or the like by such a method and move the cylinder to a place such as 20 meters underground, or to defer the cylinder with a diameter of 20 meters.
  • Daisei gas a mixture of hydrogen and oxygen may be used separately
  • the heat causes dry ice to be expected and expands, and compressed air also
  • an upward kinetic energy is generated with respect to water pressure (gravity), and this is applied to a water wheel or the like to rotate the water wheel or the like. It recovers that energy and runs a generator.
  • the wings of the water turbine should be movable and openable. Then, when it is pushed by gas, it opens and receives the kinetic energy, and it is possible to prevent the wings of the water wheel from hitting the liquid and becoming resistance and slowing down the rotation speed as much as possible.
  • the wing part opens and closes, but it does not close completely and it opens a little, and air etc. may enter and spread it, or a plate etc. may be attached so that the wing part air of the water wheel of the tank can easily collect. ..
  • the shape of this wing is such that when a water wheel-shaped object of this shape is installed in a tunnel or the like where there is no energy for gas such as air to rise and water pressure is applied, the wing opens where it is pushed by the water flow and closes when the pressure such as the water flow weakens. It will be like.
  • Some hydroelectric power plants such as large-scale dams have a head of 100 meters or pipes of hundreds of meters, but if a propeller for hydroelectric power generation is attached to the downstream part, the energy of the water flow can be sufficiently recovered and the turbine of the generator can be used. Since the head cannot be turned and a loss occurs, the head is about 10 meters, and it is dispersed in thinner pipe-shaped tunnels and tubes. Etc. are installed. By doing so, the potential energy of the water stream can be efficiently recovered. Also, when compressed air is ejected from a deep place with high water pressure, when the water wheel is rotated by the force of the air climbing up, the water wheel and tank are designed by devising and rotating clockwise.
  • the door that spouts out comes to a position where it does not get caught, it can be closed by force such as a spring, or gas etc. can be passed through the hollow part in the shaft and covered with a cap made of metal etc. on the cover around it.
  • a specific part of the cap has a hole, a structure can be created in which gas can be ejected when the gas outlet of the rotating shaft comes to a specific position, and the ejection of compressed gas is linked to the position of the water turbine. It is also conceivable to control the valve so that the compressed gas is emitted only when it comes to a specific position.
  • the shaft part that transmits energy such as a water wheel can be extended sideways as it is to improve the airtightness so that water does not come out from the water tank, and it can be passed to the part where there is no water such as the tank, or once inside the tank using gears etc.
  • the rotation is transmitted to the shaft that changes direction and extends upward to reach a height such that it can come into contact with the outside air at the upper part of the tank, the energy can also be transmitted to the gear or the like to be used as a power source.
  • a number of water turbines can be connected and installed in the vertical direction. There are various ways to extend the tank deep underground and to raise it above ground.
  • Energy costs can be reduced by adopting the same structure for cars, etc., even if they are not large ones such as trains. Increase the certainty of automatic driving of cars.
  • a car or the like By connecting a car or the like to a dolly or the like installed on the same platform, the weight of the car or the like is mainly received by a sled to reduce rolling resistance.
  • a motor or the like for contacting the road surface or the like to transmit power may be incorporated in the trolley or the like.
  • There are various methods such as connecting to a power unit of a trolley or the like from the above, or providing the trolley or the like with a device for transmitting the rotational force of a wheel of an automobile or the like to the road surface or the like as needed.
  • a solar panel or the like is installed near the space where such a cooling lane or the like is installed, and the electric power from the solar panel or the like is guided from the metal part of the lane to the motor of the dolly or the like, or the lane and the electricity receiving part of the dolly come into direct contact with each other. It is also possible to use non-contact power transmission or the like so that it does not have to be.
  • Tires, etc. made of iron
  • Tires, etc. that can be installed on the side surface of tires of automobiles, etc. to prevent their rotation from being installed on the road surface installed on trolleys, etc., or on the upper part of cooling rails without ice, etc.
  • a pile or the like will be installed at the rear of the bogie, and if necessary, it will be stopped promptly by lowering it on the road surface or the like.
  • the power consumption and speed during movement are maximized, such as the amount of levitation energy is small in order to adjust the direction of the levitation energy when the linear motor car is running and the energy that accelerates in the direction of travel to save electrical energy as much as possible. Adjust for an efficient balance. Even if it is not practically floating, it can run with reduced resistance because it has a warp.
  • the linear motor car may be equipped with a sled and the above power wheels. The inside of the tunnel is made into a state close to a vacuum state to eliminate loss due to wind and reduce noise. An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the heat absorbing plate of the freezer is elongated and installed there, or it is a dedicated heat absorbing device, or a large compressor etc. and water of a constant temperature underground are used. Efficient temperature control is conceivable. It is conceivable that the waste heat of the compressor or the like will be secondarily used to operate the Stirling engine or the like.
  • the compressor By installing the compressor in a space where water drawn from 5 meters underground circulates around it using pipes, etc., it can be used as a measure against heat exhaust. Even on the current road, asphalt of the road using pipes etc. to put water etc. in a tank installed 5 meters underground at the bottom of the road or passage to prevent freezing and lower the temperature of the road surface in summer.
  • a cover such as a closed structure is attached on the cooling rail (lane) or the like, and water of about 15 degrees of underground tank water is circulated there to reduce the cost of cooling or the like.
  • the upper cover of the cooling rails, lanes, etc. is closed by electric power, etc., especially in summer so that heat is not exchanged as much as possible. Leave it to.
  • compressed air (carbon dioxide) or gas can be sent to a pipe or the like that has passed through the liquid or the inside of ice to cool it with heat of vaporization. .. It is also possible to circulate a cold substance (such as a liquid) using a path such as a pipe to cool the cooling rail (of course, the substance on the traveling rail can be made into an ice state).
  • Liquids and the like used for heat insulation and cooling can be circulated with tanks and the like installed underground.
  • the energy cost for controlling the temperature of the cooling lane can be saved by flowing the liquid or the like also in the upper cover portion. It is also possible to circulate a liquid or the like having an appropriate temperature in the vicinity of the cooling lane.
  • the sled part has a rail structure or the like that slides on a frozen road surface but has a protruding shape so as not to derail sideways. Tires or the like that are in contact with the side surface of the rail may be attached to the sled in order to reduce impact or the like on a curve or the like.
  • Energy costs can be reduced by adopting the same structure for cars, etc., even if they are not large ones such as trains. Increase the certainty of automatic driving of cars.
  • a car or the like By connecting a car or the like to a dolly or the like installed on the same platform, the weight of the car or the like is mainly received by a sled to reduce rolling resistance.
  • a motor or the like for contacting the road surface or the like to transmit power may be incorporated in the trolley or the like.
  • There are various methods such as connecting to a power unit of a trolley or the like from the above, or providing the trolley or the like with a device for transmitting the rotational force of a wheel of an automobile or the like to the road surface or the like as needed.
  • the four-wheel part is used to ride on the trolley, etc., and the remaining two wheels, etc. are brought into contact with the ground as needed using hydraulic pressure, etc., and the trolley is provided with the function of a hydraulic jack. It is possible to change the height of the tires of the automobile so that the vehicle on the trolley can be raised and lowered by hydraulic pressure or the like after the automobile or the like gets on the vehicle so as not to come into contact with the ground or the like.
  • the energy of automobile engines, motors, etc. can be connected to tires, etc., which can prevent the rotation of the device from being installed on the road surface installed on the trolley, etc. Attach a roller part device, etc. to the trolley, etc. that turns according to the method of changing to running energy, etc.
  • water that has reached about 15 degrees Celsius due to geothermal heat stored 5 meters underground is guided to the vicinity of the road surface with a pipe to prevent this.
  • the linear motor car may be equipped with a sled and the above power wheels.
  • the inside of the tunnel is made into a state close to a vacuum state to eliminate loss due to wind and reduce noise.
  • An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the heat absorbing plate of the freezer is elongated and installed there, or it is a dedicated heat absorbing device, or a large compressor etc. and water of a constant temperature underground are used. Efficient temperature control is conceivable.
  • the waste heat of the compressor or the like will be secondarily used to operate the Stirling engine or the like.
  • the compressor By installing the compressor in a space where water drawn from 5 meters underground circulates around it using pipes, etc., it can be used as a measure against heat exhaust. Even on the current road, water etc. put in a tank installed 5 meters underground at the bottom of the road or passage to prevent freezing and lower the temperature of the road surface in the summer is circulated under it using a pipe etc. By doing so, the road surface, etc. will not freeze or generate excessive heat. It is also possible to improve the cooling efficiency in the summer by allowing circulating water to flow around the sled part with a pipe or the like.
  • a place where electric bicycles, etc., which are means of transportation can be parked and stored near stations, etc. will be provided to make it easy and convenient to move to the storage place, etc. at the destination.
  • a situation where an electric bicycle or the like can be mechanically unlocked in a parking storage place is set.
  • a person who wants to use an electric bicycle by installing a lock on the wheel etc. of the electric bicycle and keeping it in a parking place etc. starts an application such as a smartphone registered in advance and agrees to the terms of use and starts using it.
  • the automatically linked locking device is unlocked and can be used.
  • a device that wirelessly informs the location of an electric bicycle or the like can be attached so that the manager of the electric bicycle or the like can grasp the location when necessary.
  • the smartphone used by the user of the electric bicycle and the device that can grasp the whereabouts of the bicycle are linked while being used wirelessly, and when the distance is a certain distance, the device attached to the bicycle is used. It is equipped with an alarm function that notifies the person and the administrator by e-mail. It is also possible to automatically record and save the position of a bicycle or the like using a device. If a situation occurs such as when the distance between the bicycle and the smartphone of the user etc. occurs, if it is an electric bicycle, the current of the motor is stopped to ensure safety. If the device is simplified a little more, the password, etc. set in advance by the user, the caller ID, the name, etc. are confirmed on the phone when unlocking the bicycle, etc.
  • the administrator can remotely activate the unlock device, or communicate the password that is valid for a certain period of time with the user via a mobile phone, etc., and the user can enter the password within that time, such as the unlock button for the parking space. You can also press and enter to unlock. When locking the parking storage area, enter the password for unlocking to confirm the identity. Remotely lock by using fingerprint authentication, face authentication, eyeball authentication, etc. from software such as a dedicated smartphone to verify the identity, or by using the videophone function of the smartphone, etc. to verify the identity by face or speaking style, etc. There is also a method to cancel. If the lock device of the parking storage place and the key of the electric bicycle etc.
  • the management and usage responsibility from the application for use to the lock state of the bicycle etc. until it is properly returned to the storage place etc. are decided by the rules etc. so that the user can follow it.
  • the parking storage area is equipped with a camera with a dynamic sensor and a light communication device to record and notify the administrator.
  • a camera with a dynamic sensor and a light communication device to record and notify the administrator.
  • link the key that locks the tire with the energization of the electric system It is possible to select whether to use multiple lock devices as the lock device for the parking storage area and the lock device for the bicycle body, or to install all of them on the bicycle or the like. If all the bicycles are installed, the administrator can safely unlock and lock the bicycle while checking the condition of the parking storage area with a videophone function, live camera, etc.
  • a card key using magnetism can be provided and the user can authenticate it to a machine or the like installed in the parking storage place to use it as a means of identity verification, or it can be used in combination with the above means. Charges can be automatically deducted from banks by linking them with card keys and smartphones. If you attach a rain-proof roof to an electric bicycle, you can use it comfortably even in the rain.
  • PET bottle-shaped materials, etc. a space through which humans can pass is provided so that the internal temperature can be adjusted when moving through the space.
  • substances such as PET bottles prepare a liquid (water, etc.) with little temperature change throughout the year, such as about 5 meters underground (as a guide only), and pump it inside with an electric pump, etc.
  • the groundwater temperature also has a depth that fluctuates from year to year depending on the depth, etc., but it is also used to the maximum extent for air conditioning. Assuming that the natural outside temperature is about 5 degrees Celsius, if it is sufficiently shielded by such a structure, the internal air temperature will be close to that if the flowing water is 15 degrees Celsius, so I want to make it about 22 degrees Celsius. In some cases, the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering. If there is hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • PET bottle-shaped objects special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature.
  • PET bottles and the like are connected to allow water to flow. For that purpose, it is fixed with something on adhesive tape and the inside is hollowed out.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • Objects such as plastic bottles can be made transparent, so they are blocked by light, but they can create an open space and can be used as art if fish are bred inside. If the size of the space is changed and enlarged by the same structure, it is possible to put hot water inside or create other leisure facilities to build a space integrated with nature.
  • a space through which humans can pass is provided so that the internal temperature can be adjusted when moving through the space.
  • substances such as PET bottles, prepare a liquid (water, etc.) with little temperature change throughout the year, such as about 5 meters underground (as a guide only), and pump it inside with an electric pump, etc. Use it for internal air conditioning when the outside temperature is high or low.
  • the groundwater temperature also has a depth that fluctuates from year to year depending on the depth, etc., but it is also used to the maximum extent for air conditioning.
  • the internal air temperature will be close to that if the flowing water is 15 degrees Celsius, so I want to make it about 22 degrees Celsius.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering.
  • hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • a liquid is further put inside a space whose temperature is controlled by a structure made by using such a PET bottle or the like and fish are bred there, when the fish swim speed is fast, make it as streamlined as possible and make a large circle. Etc. to draw. If the width with respect to the traveling direction is set to 50 cm or the like according to the size of the fish or the like, it is safe because it does not collide from the front.
  • Plants, etc. are provided with a space that is not wasted depending on the size of the plants, etc. that are grown inside the structure by flowing and circulating liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • it can be artificially heated (using equipment such as an oil boiler) and cooled (equipment such as a refrigerator, liquid nitrogen, etc.), but it can also be heated using the heat of sunlight and constructed with a PET bottle as a solar heat storage hot water device. You can use the created object and save the utility bill.
  • the heat retention efficiency can be improved by condensing sunlight or the like around an object constructed of a PET bottle or the like to protect the surroundings with aluminum or the like which is a confidential material and inserting a heat insulating material or the like.
  • PET bottles etc. circulate liquid such as water inside. If the water is carried by a pipe connected from an underground tank, it will transmit the underground temperature to the inside of the space.
  • a PET bottle or the like is used to shield the space from a temperature medium such as water and the space.
  • the inside of the space is artificially covered with an air conditioner or boiler equipment by covering the inside with a heat-retaining substance or a heat-insulating substance. It is possible to reduce the energy cost when the temperature is adjusted to.
  • the lower space When a space is provided inside an object constructed of a pet bottle, etc., when the space is in several stages, the lower space is placed inside the upper space. If it does not reach, it may be a method of transmitting sunlight, etc. once condensed to an appropriate position to the required place with an optical fiber, or it may be the side of a structure made of a PET bottle etc. using a mirror etc. or another place. However, by installing a reflector or the like (mirror, etc.) in a place where the light is easy to hit, the light is refracted and guided from the place where the light is easy to hit to the place where it is hard to hit.
  • a reflector or the like mirror, etc.
  • Objects such as plastic bottles can be made transparent, so they are blocked by light, but they can create an open space and can be used as art if fish are bred inside. If the size of the space is changed and enlarged by the same structure, it is possible to put hot water inside or create other leisure facilities to build a space integrated with nature. You can build a relaxing hot spring without worrying about rain or wind.
  • the temperature inside the space and the temperature of the liquid such as flowing water are controlled by sensors, etc., and the flow rate of the electric pump, etc. is automatically changed to keep the energy cost in the right state. When installed in a mountainous area, the heat of combustion of wood, etc. can be effectively utilized by using nearby wood, etc.
  • Both restaurants and recreational facilities can serve and sell agricultural products as food for a price.
  • Recreational facilities, etc. can be used even if labor costs are considerable, as long as this coupon includes the content that provides the service of such a contract.
  • a coupon is a concept. Coupons can be paper-based or digitized. Mr. A can grasp the connection of goods, coupons and services by digitizing and encrypting with PGP encryption etc. and centrally managing the data in the database. Mr. A is free to decide whether to disclose this data to the outside. Since it is based on a credit relationship, it prevents interference by third parties and ensures stability. When the coupon is replaced with virtual currency, the value of the currency can be set in advance so that only this strawberry can be eaten per coupon.
  • the tank or the like can be kept so as not to be mixed with the water in the tank until the returned water is cooled to some extent by partitioning the inside or the like.
  • the amount of water to be flowed is programmed in advance using temperature data such as the weather forecast, and the amount of water to be flowed based on the actual temperature is controlled by the output of the pump. If you are using spring water or well water from mountains (spring water sources, well water, etc., the water temperature is stable throughout the year), you may not need a tank. If you want to adjust the water flow, add water to the roof, etc.
  • a valve or the like is provided on the leading pipe or the like to attach a device that can control the diameter of the valve or the like, or the amount of water or the like is controlled by controlling the opening and closing amount or the like with a computer or the like in the form of a faucet. It is not always necessary to install the tank underground, but if you use water whose temperature is controlled by using the ground temperature, you can control the temperature inside the house with a smaller amount of water, etc., and the cost of electricity for the pump etc. will be reduced. .. If the tank is elongated to a depth of 5 meters or more in the ground and the volume at a deep point is increased and circulated by a motor or the like, freezing can be prevented.
  • Water may be guided not only to the roof part of the house but also to the side surface by a pipe or the like (for example, water may be guided to the upper part of the window by a pipe so that the water flows on the side surface of the window. ).
  • a pipe or the like for example, water may be guided to the upper part of the window by a pipe so that the water flows on the side surface of the window.
  • the pipe has holes at appropriate intervals (not necessarily 5 cm, such as 5 cm intervals), and water comes out from there.
  • the ground temperature of about 5 meters underground is about 15 ° C, and it is circulated by pulling pipes under the flooring of houses, etc., on the sides, ceiling, etc., and collected in tanks such as underground for reuse. do.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering. If there is hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow. For that purpose, it is fixed with something on adhesive tape and the inside is hollowed out.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • the water flow can be stopped at the required time.
  • Plants, etc. are provided with a space that is not wasted depending on the size of the plants, etc. that are grown inside the structure by flowing and circulating liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • rails, wheels, etc. to move the plant to a workplace where it is set up and grown to take care of plants, etc., with limited control of the outside world and air circulation, pollen crossing is prevented and the seedling method, etc. is supported. do. It was confirmed that a space that was shielded from the outside world was constructed using PET bottles, etc., and that the space where plants were grown was connected with a hatch, etc., and that people entered there and the space was clean.
  • the heat retention efficiency can be improved by condensing sunlight or the like around an object constructed of a PET bottle or the like to protect the surroundings with aluminum or the like which is a confidential material and inserting a heat insulating material or the like. It is possible to create an appropriate space inside a structure constructed using materials such as PET bottles and put plants etc. in it to grow, but PET bottles etc. circulate liquid such as water inside.
  • the water is carried by a pipe connected from an underground tank, it will transmit the underground temperature to the inside of the space.
  • a PET bottle or the like is used to shield the space from a temperature medium such as water and the space.
  • the inside of the space is artificially covered with an air conditioner or boiler equipment by covering the inside with a heat-retaining substance or a heat-insulating substance. It is possible to reduce the energy cost when the temperature is adjusted to.
  • the space is provided inside an object constructed of a pet bottle, etc., when the space is in several stages, the lower space is placed inside the upper space. If it does not reach, it may be a method of transmitting sunlight, etc.
  • PET bottles, etc. When constructing with PET bottles, etc., when connecting PET bottles, etc., make holes in the sides of the PET bottles, etc. to move the water, etc. inside the vertically and horizontally connected PET bottles, etc. as desired. Can be done.
  • a structure constructed of plastic bottles, etc. can be made by putting water inside the plastic bottles, etc. and circulating it between tanks, etc. by the power of a motor pump, etc.
  • Structures such as PET bottles are not limited to PET bottles, and it is naturally possible to use special materials. It is used to separate the outside air from the internal space constructed of PET bottles and the like. By connecting PET bottle-shaped materials, etc., a space through which humans can pass is provided so that the internal temperature can be adjusted when moving through the space.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering. If there is hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow. For that purpose, it is fixed with something on adhesive tape and the inside is hollowed out.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • the water flow can be stopped at the required time.
  • Plants, etc. are provided with a space that is not wasted depending on the size of the plants, etc. that are grown inside the structure by flowing and circulating liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • rails, wheels, etc. to move the plant to a workplace where it is set up and grown to take care of plants, etc., with limited control of the outside world and air circulation, pollen crossing is prevented and the seedling method, etc. is supported. do. It was confirmed that a space that was shielded from the outside world was constructed using PET bottles, etc., and that the space where plants were grown was connected with a hatch, etc., and that people entered there and the space was clean.
  • the heat retention efficiency can be improved by condensing sunlight or the like around an object constructed of a PET bottle or the like to protect the surroundings with aluminum or the like which is a confidential material and inserting a heat insulating material or the like. It is possible to create an appropriate space inside a structure constructed using materials such as PET bottles and put plants etc. in it to grow, but PET bottles etc. circulate liquid such as water inside.
  • the water is carried by a pipe connected from an underground tank, it will transmit the underground temperature to the inside of the space.
  • a PET bottle or the like is used to shield the space from a temperature medium such as water and the space.
  • the inside of the space is artificially covered with an air conditioner or boiler equipment by covering the inside with a heat-retaining substance or a heat-insulating substance. It is possible to reduce the energy cost when the temperature is adjusted to.
  • the space is provided inside an object constructed of a pet bottle, etc., when the space is in several stages, the lower space is placed inside the upper space. If it does not reach, it may be a method of transmitting sunlight, etc.
  • PET bottles, etc. When constructing with PET bottles, etc., when connecting PET bottles, etc., make holes in the sides of the PET bottles, etc. to move the water, etc. inside the vertically and horizontally connected PET bottles, etc. as desired. Can be done.
  • a structure constructed of plastic bottles, etc. can be made by putting water inside the plastic bottles, etc. and circulating it between tanks, etc. by the power of a motor pump, etc.
  • Structures such as PET bottles are not limited to PET bottles, and it is naturally possible to use special materials. It is used to separate the outside air from the internal space constructed of PET bottles and the like. When creating a multipurpose space inside a structure using a PET bottle, etc. When the liquid, etc. poured from above moves due to gravity, etc., create a gap between the structures such as a PET bottle, or use a PET bottle, etc.
  • a certain helicopter-like step is provided at the end of the constructed structure to control the movement of the liquid and the like to improve the efficiency of transmitting the temperature of the liquid to the space built inside. If you put natural spring water, hot spring water, river water, etc. in multiple or single tanks installed underground in high places and pull it to a pet bottle structure etc. in a little low place by gravity etc. with a pipe etc. It is eco-friendly (theoretically, only natural energy is possible) by almost eliminating electricity costs. When a liquid or the like is put into a space constructed of a PET bottle or the like and the fish or the like is allowed to swim, the space where the fish of the structure swims is made streamlined or the like to reduce the risk of the fish colliding with an obstacle.
  • a transparent and light-transmitting substance when shielding a structure that is covered with strong plastic or connected with a pet bottle (may be a special one), where the pet bottle originally contained juice.
  • a structure that is covered with strong plastic or connected with a pet bottle may be a special one
  • the pet bottle originally contained juice.
  • the temperature of the solar panel can be controlled by flowing water of about 15 ° C from an underground tank, etc., or the solar panel can be made waterproof to improve airtightness, and shallow water can be collected in the panel. It is attached to a tub, etc., and water, etc. at about 15 ° C, which is installed about 5 meters underground, is poured there and collected in an underground tank, etc. If the positional relationship is such that natural groundwater flows naturally, it may be flushed and the temperature of the panel etc. is controlled.
  • a PET bottle or the like for example, the part of the drinking spout is cut out and a plurality of rectangular cubes are glued together to construct a structure in which water of an underground tank is put.
  • a structure containing water or the like is used to create a hollow structure.
  • a solar panel or the like whose temperature is to be controlled in the hollow part or the like. This will increase the amount of power generation by installing a similar device for solar panels installed in homes. If the temperature of the solar panel becomes too high, the amount of power generated will decrease.
  • water of about 15 degrees in the underground tank is used. Since the ground temperature around the underground tank differs depending on the depth, it is possible to install multiple tanks at different depths and mix the water and the like. If necessary, the structure made of PET bottles can be moved by draining water, etc. Since the material is light, it can be done manually, but the ceiling part should be constructed in advance so that it can be opened and closed by motor drive etc. You can also.
  • a pipe of about 5 cm in length and width (the standard scale can be changed freely) is installed in the underground tank, and a passage is installed around it to allow water to flow. The above-mentioned underground tank water etc. is flowed there, and a fan etc.
  • the tube does not have to be straight and may be curved for distance.
  • Compressed air is used when hot water such as hot springs or hot water artificially boiled in a boiler is used for air conditioning of each home or facility.
  • hot water is poured into a space made of PET bottles, etc., and in the above method, heat is exchanged using the temperature of about 15 degrees underground to bring the temperature of air etc. closer to 15 degrees. If you put hot water etc. instead of the degree, it will reach that temperature and keep it warm when you send it, so put it in a connected kudzu such as a PET bottle and compress it into the space surrounded by it ( Or, change it depending on the situation such as the degree of ventilation).
  • the underground tank or the like has a depth that varies depending on the depth, it is possible to prepare multiple tanks and mix water or the like. If necessary, the efficiency etc. will be improved by covering the outer circumference of the device for sending air etc. made from this PET bottle etc. with a heat insulating material (such as foamed polystyrene which has a heat insulating effect). It is also possible to send cold air or the like. It is also possible to circulate or temporarily hold water, etc.
  • a heat insulating material such as foamed polystyrene which has a heat insulating effect
  • the temperature of a solar panel or the like is controlled by applying the outer circumference of the solar panel or the like with a wall such as thin water having a heat of about 2 cm.
  • a wall such as thin water having a heat of about 2 cm.
  • the force of gravity flows around the solar panel through a pipe and returns to the underground tank.
  • it is also possible to lower the temperature by spraying water such as mist (not necessarily mist) on the upper part of the solar panel etc. At this time as well, the water is collected and circulated using the water in the underground tank. You can also do it.
  • Structures such as other PET bottles are constructed so that they are divided into multiple layers, such as the function of flowing fertilizer into the space constructed with PET bottles and collecting it, and the layer that allows water, oxygen, etc. to soak underground. You can also do it. If the upper part is covered with a similar structure to create a sealed state, fertilizers, pesticides, etc. will not be scattered to the outside. Costs can be reduced by reusing fertilizers. When taking in outside air, you can open it by attaching a door to the upper part, or you can let in the wind with a fan, and you can also make a door for humans to enter. With such a shield, it is possible to prevent the diffusion of fertilizer to the outside than the shield used for agriculture and the like.
  • a tunnel-shaped space is provided so that humans can barely pass through it, and rails and tires are used to pull in trolley-shaped objects.
  • the solution can be poured inside the space, and in the case of plant cultivation, a tub or the like that can hold water of the size prepared according to the growth of the roots is placed on the trolley and the space is used. It can also be moved inside. Plants can be moved by putting them on pallets using rails, etc., so if you lay the rails in a sunny place or roll them with tires, you can move them to any place.
  • the part above the root of the plant can be moved with a dolly on the upper part, so the force of pulling is small.
  • a PET bottle or the like can be used to create a space for a car or the like, and the temperature of the internal space can be controlled by using circulating water or the like, and the car can be parked and a break can be taken inside.
  • an electric compressor etc. is used, but it is used as the power of the compressor by using the energy of the gear that moves by hydraulic power for the power of the compressor or by transmitting the rotational energy of the windmill with the gear. do.
  • a tank that stores compressed air is installed in a fixed place with a ground temperature of about 5 meters underground, or it is blown into water in a tank installed 5 meters underground to raise the temperature to 15 ° C. I'll give it a try.
  • natural energy such as hydraulic power as the power of an air compression compressor and storing it in a cylinder installed underground, it is possible to take it out at any time like a battery and use it to move gears.
  • compressing air etc. with a compressor etc. once cooled in an underground tank etc. is compressed to adjust the humidity, or air etc. is stored underground to lower the humidity. It is also possible to lower the temperature of a tank containing compressed air, etc. underground.
  • the turbine of hydroelectric power generation using gravity is turned to generate electricity, and it is used as power for turning a compression compressor such as air and various power sources. It is useful for human life by obtaining the potential energy of a large amount of seawater semi-permanently by using the energy of sea waves. It is also conceivable to collect compressed air in a cylinder or the like by such a method and move the cylinder to a place such as 20 meters underground, or to defer the cylinder with a diameter of 20 meters. Then, prepare a water tank or the like filled with water or the like installed in the basement or the like.
  • Daisei gas a mixture of hydrogen and oxygen may be used separately
  • the heat causes dry ice to be expected and expands, and compressed air also
  • an upward kinetic energy is generated with respect to water pressure (gravity), and this is applied to a water wheel or the like to rotate the water wheel or the like. It recovers that energy and runs a generator.
  • the wings of the water turbine should be movable and openable. Then, when it is pushed by gas, it opens and receives the kinetic energy, and it is possible to prevent the wings of the water wheel from hitting the liquid and becoming resistance and slowing down the rotation speed as much as possible.
  • a structure is also conceivable in which the wing part opens and closes but does not close completely and opens slightly, or an object that has buoyancy even when completely closed is attached to a part of the wing and opens a little by buoyancy when it is in a specific direction.
  • the water flow or the air flow may be controlled by allowing air or the like to enter and spread the air, or by attaching a plate or the like to a specific part of the tank so that the air can easily collect.
  • the shape of this wing is such that when a water wheel-shaped object of this shape is installed in a tunnel or the like where there is no energy for gas such as air to rise and water pressure is applied, the wing opens where it is pushed by the water flow and closes when the pressure such as the water flow weakens.
  • Some hydroelectric power plants such as large-scale dams have a head of 100 meters or pipes of hundreds of meters, but if a propeller for hydroelectric power generation is attached to the downstream part, the energy of the water flow can be sufficiently recovered and the turbine of the generator can be used. Since the head cannot be turned and a loss occurs, the head is about 10 meters, and it is dispersed in thinner pipe-shaped tunnels and tubes. Etc. are installed. By doing so, the potential energy of the water stream can be efficiently recovered. Also, when compressed air is ejected from a deep place with high water pressure, when the water wheel is rotated by the force of the air climbing up, the water wheel and tank are designed by devising and rotating clockwise.
  • the door that spouts out comes to a position where it does not get caught, it can be closed by force such as a spring, or gas etc. can be passed through the hollow part in the shaft and covered with a cap made of metal etc. on the cover around it.
  • a specific part of the cap has a hole, a structure can be created in which gas can be ejected when the gas outlet of the rotating shaft comes to a specific position, and the ejection of compressed gas is linked to the position of the water turbine. It is also conceivable to control the valve so that the compressed gas is emitted only when it comes to a specific position.
  • the shaft part that transmits energy such as a water wheel can be extended sideways as it is to improve the airtightness so that water does not come out from the water tank, and it can be passed to the part where there is no water such as the tank, or once inside the tank using gears etc.
  • the rotation is transmitted to the shaft that changes direction and extends upward to reach a height such that it can come into contact with the outside air at the upper part of the tank, the energy can also be transmitted to the gear or the like to be used as a power source.
  • a number of water turbines can be connected and installed in the vertical direction. There are various ways to extend the tank deep underground and to raise it above ground.
  • the energy obtained by the buoyancy by this method is connected by a shaft and used as upward kinetic energy to lift water or the like and can be used for pumping or the like. It is also possible to divide these by 10 meters or the like, adjust the water pressure or the like, and connect a number of them in the vertical direction.
  • the valve that opens and closes may be an electronically controlled valve or an analog valve that opens and closes according to pressure with a spring or the like.
  • the devices can be connected horizontally instead of vertically, or they can be made smaller.
  • such a device can be attached to a ship or the like to provide propulsion.
  • move water etc. to a high position such as 60 meters above the ground by a pump, elevator, vehicle, etc. with the above-mentioned method intervening buoyancy, etc., and turn the pipe etc. downward from there. Water is dropped and the kinetic energy is used to power the propeller for power generation.
  • this energy can be used in various ways as power. If such a device is loaded on a ship, it can generate electricity or reduce direct propulsion energy.
  • the balls When transmitting energy from a large number of balls to a turbine for power generation, for example, the balls roll on the rails so that the balls fall into a pipe for regular fall at the upper position, and the flow is further increased by a stopper such as an open / close type. You can also control it. By making it into a ball shape and providing a slight inclination, it can be easily moved by gravity without power. Prepare multiple pipes on which balls etc. fall to receive energy, for example, make it possible to transmit energy such as balls independently to turbines etc., for example, even if you do not attach wings such as water wheels in a horizontal row By slightly shifting the position, energy such as a ball can be efficiently transmitted to wheels, a water wheel, a turbine, and the like. The return commission device, etc.
  • a number of holes for ventilation are made in the inner pipe bundled into a structure that bundles multiple thin pipes, and compressed air is sent from the high part of the pipe to water etc. in the pipe. You can also make it fall smoothly when it falls. If there is no spring water, it is possible to carry a certain amount of water or store rainwater and use it. It is also possible to move the vehicle efficiently using the above-mentioned structure that slides on the cooled ice, etc., and the rails, etc. so that it can be moved upward after accelerating using gravity energy, etc. If you make, the energy required to move water etc. to a high position can be obtained by acceleration due to gravity, so the energy cost required for propulsion power can be suppressed.
  • such a device can be attached to a ship or the like to provide propulsion.
  • the temperature around 5 meters underground in the mainland of Japan is kept at about 15 degrees throughout the year, if a tubular tunnel is grounded there, the energy required for cooling can be saved.
  • this structure is grounded to the ground and cooled, it is possible to cover the outer peripheral part of the tube with liquid water, etc., and if the outer peripheral part of the tube allows light to pass through, such as plastic or glass, the scenery can be seen from inside the vehicle. You can also see it.
  • Water from a tank installed about 5 meters underground is put into the inside of a PET bottle or the like through a pipe, and the PET bottle or the like is connected so that the water circulates and returns to the tank.
  • a pipe or the like is provided at the lower part of the train running line, and oil or the like (or a gas or the like that has been considered as clay) is poured into the pipe or the like. Then, a hole is made in the upper part of the pipe, and something like a stake is dropped from the train or the like and hooked there. The place where the pile etc. fell can slow down the speed of the train etc. while increasing the pressure etc. inside the pipe by contacting with the round plate etc. made at the very limit of the pipe etc.
  • a structure made of PET bottles (which does not have to be a PET bottle) that can stop the flow of water for a certain period of time, such as on the roof while the temperature changes, is embedded under the roof tiles. It can also be designed as such. You can prepare multiple underground tanks and connect them to different depths to finely adjust the temperature. If you can use natural cold spring water or hot spring water, use a pump etc. as it is. It can also be shed. In winter, you can prevent snow from accumulating on the roof. Further, if water is poured over the structure, the outer surface of the structure can be cleaned.
  • the temperature is kept at about 15 ° C all year round at about 5 meters underground, and that the temperature changes according to the underground depth.
  • the required ground temperature such as about 5 meters below the ground or a little shallower depth, and put water etc. in a tank composed of PET bottles etc. in advance and make it with the PET bottle etc. shown above.
  • It constitutes a structure for controlling the temperature of air and the like.
  • the air or the like is connected to a space where plants or the like composed of PET bottles or the like installed on the ground or the like grow through a pipe or the like made by using a PET bottle or the like.
  • the outside air is taken in from a specific intake and circulated to the underground space and the space for growing plants. It is possible to shut off the outside air and circulate a dedicated gas, or to purify the air by using an air filter or the like in the outside air intake section. It is also possible to prepare a plurality of underground tank parts, one at a high position and one at a low position when viewed from a structure for plant cultivation, etc., by utilizing the difference in altitude of the mountain.
  • the plant cultivation space can be designed so thin that it is impossible for humans to stand and pass through, so that the space can be used to the maximum. It is also possible to put a pallet on which plants and the like are set on a trolley and put it in and out of the cultivation space using tires and rails.
  • LEDs or other elements that convert heat into light can be used, or sunlight can be drawn into spaces such as plants by using mirrors or optical fibers.
  • a pipe-shaped device can be set between them to circulate water there to cool the plant cultivation space.
  • the plant cultivation space, etc. Since the area around the building is made of PET bottles or the like, it is possible to prevent excessive temperature fluctuations by circulating water or the like having a constant temperature such as 5 meters underground.
  • the air adjusted by the underground temperature is circulated from the underground space to the space for plant cultivation, etc., and the water stored about 5 meters underground also circulates at about 15 degrees. You can let it.
  • the plant cultivation space it can be sized to fit humans and can be used for purposes other than plant cultivation.
  • the plant cultivation space is separated from the outside world by a structure made of PET bottles, etc., and in order to control the temperature, humidity, etc. in it, the air etc. adjusted by the ground temperature is cultivated from the underground structure using the ground temperature. It is moved to the space through a pipe etc., but at that time only the air can be moved, and if you move the water together with the air and pour the water into the place where the juice of the PET bottle enters, it will also grow plants. It is also possible to control the temperature of such spaces. In some cases, only water can be circulated and only air can be circulated. If the cultivation space for plants is designed to be long and slender so that humans cannot enter it, the space can be effectively used and the cultivation space for multiple plants can be stacked on the upper part.
  • a pump can be used for various purposes such as pumping water to raise water.
  • the space per unit area increases by making the structure multi-stage in the direction.
  • the space can be used as a plant cultivation space, etc., and the work place (such as when the place where manual work such as thinning is performed is located below the space) can be connected to the bottom by using a rail or the like as a spiral place.
  • Use an elevator to move the plant and the dolly on which it is placed from a high place to a low place.
  • Rails are also drawn on elevators and the like, and the rails can be easily switched in the course and direction so that the direction can be freely changed, and the rails can be freely rearranged like a puzzle.
  • Elevators, etc. can go to the end of the growing space, and chairs, etc. are installed on the elevators, etc. and stop on each floor, where the rails, etc. provided on the elevators are connected to the rails, etc. in the cultivation space, and plants etc. are placed on them. It is also possible to move it around a chair or the like on which a human is sitting by using the trolley. Humans can also work while sitting. It is also possible to enclose the inside of this tall multi-stage structure with vinyl that allows light to pass through.
  • a human goes to work near the structure, he / she moves a part of the structure such as a PET bottle so that he / she can reach the inside of the space and moves it again after the work. It is also possible to restore the structure (parts, etc.) made by processing the PET bottles. If the inside of the structure constructed with PET bottles is isolated from the outside atmosphere and used for plant cultivation in the space inside, put a bogie etc. for moving the plants and the bogie etc. is a chain etc. It is connected like this, and using tires and rails, power such as winches and part of the bogie are powered.
  • the method of transmitting the sun's light with a daylighter (sunflower, etc.) or optical fiber, or linking the light with a movable mirror that can freely change the angle, etc. is the target space.
  • “1” The difference in gravity between water (liquid, liquid metal, liquid mercury, etc. can of course be used) and air (gas, etc.) is used to generate upward energy in the tank.
  • a chain-shaped bicycle and a crank-shaped bicycle are connected in order to convert the upward energy generated in the tank into a device with a fly that can be opened and closed and a rotational energy.
  • This device for transmitting rotational energy is installed inside the tank. (Support with columns so that it does not wobble)
  • "4" Water (liquid, etc.) can be used in the tank from the outside, and hoses such as pipes can be used.
  • "5" Compressed air (gas, etc.) is put into the tank, and it is ejected so as to hit the wings of the rotational energy transfer device using a pipe while controlling the pressure with a sensor. Even if it is not compressed air, it is possible to perform this role with an industrially produced gas such as hydrogen.
  • a tank or the like is installed on the device that acts as a stopper, and a heavy object such as water is put in it and moved downward by its weight, or for winding up to move the device that acts as a stopper upward.
  • Wires and winches will also be installed. Connect the chain downward and connect it to an external gear etc. in a situation where gas cannot enter and exit through water etc., drop water etc. (liquid etc.) from the upper part through a pipe etc. and turn the gear with that energy It is also possible to pull the device, which acts as a stopper downward, downward. Since the device acts as a stopper, etc., when moving it upward, the air inside the floating ring-shaped rubber etc.
  • CFCs used for air conditioners and their substitutes such as HFC may be used.
  • a method of compressing a refrigerant and directly converting it into rotational energy with a pipe or the like, or a method of guiding energy to a wing or the like to convert it into rotational energy The compressed refrigerant is passed through a pipe or the like through the inside of a tank or the like containing a liquid such as water to exchange heat there, and heat is exchanged with water or the like (regardless of the shape as long as it can mediate heat) based on the principle of a heat pump.
  • the pressure of the compressed refrigerant that has released heat energy to some extent is released while being adjusted by a control valve at the lower part of a wing or the like for converting into rotational energy, and rotational energy is obtained.
  • this temperature will drop due to the action of the refrigerant, so the annual geothermal temperature will be about 15 ° C at a mid-latitude about 5 meters underground. If this device is installed at a stable depth, it can be used for water that has been deprived of heat by the heat from the geothermal temperature (regardless of its shape or characteristics if it does not easily react with refrigerants such as liquids). It is also possible to balance by applying geothermal heat from the surroundings.
  • the temperature inside the device that extracts rotational energy drops significantly due to heat exchange with the refrigerant, for example, install a tank or the like at a point 5 meters underground and kept at about 15 degrees Celsius all year round, and water etc. (liquid) there.
  • the temperature of the water inside is controlled by geothermal heat by adding geothermal heat (regardless of shape or trait if it does not easily react with refrigerants, etc.) (The ground temperature in that season fluctuates depending on the depth, but the outside temperature is underground.
  • the depth for installing a tank, etc. can be freely changed in order to stably ingest heat energy by utilizing the property of being inversely proportional to the change in the temperature. Put the itchy, cold water, etc. in the tank etc.
  • Refrigerant gas, etc.
  • Refrigerant that has been applied to the upper part of the tank is sequentially moved to a device with an internal device such as a wing that converts the pressure into the next rotational energy through the pipe while adjusting the pressure with a control valve or pressure sensor through the pipe.
  • the refrigerant is then recovered and reused through a pipe or the like to the first compression device.
  • a refrigerant carbon dioxide, etc.
  • a device that converts it into rotational energy such as R circled in FIG. 8
  • Etc. can also be moved by passing it through a pipe or the like. Using a pipe or the like to guide (move) high-temperature sodium (a substance with a high boiling point) to a space containing water (liquid, etc.) in the tank of a device such as R surrounded by a circle, and its heat.
  • Michibi is controlled by using a pressure sensor or a valve for adjustment with a pipe etc. in the place where water (liquid etc.) of a device such as R surrounded by ⁇ is contained as it is with high temperature refrigerant as gas.
  • Water (liquid, etc.) is applied to water, etc. (liquid, etc.) in a device such as R surrounded by ⁇ by using the method of collecting or recovering or using the high temperature of the refrigerant to flow it through a pipe or the like.
  • Etc.) can be boiled and used to convert (generate) rotational energy.
  • liquid etc. can be moved from the bottom to the top in the opposite direction of gravity. can.
  • water When water is dropped downward, the kinetic energy rises due to gravity, so that energy can be used as an energy source for hydropower generators or as various other energies.
  • the air conditioner When the air conditioner is operated with a heater, it is difficult to exchange heat with the refrigerant in the middle of winter when the outside air is cold.
  • the liquid (water, etc.) stored in the tank, etc. installed in the basement, etc., which is kept at about the same level, is circulated through a pipe, etc. Then, the refrigerant can exchange heat at a temperature higher than the outside air in the cold winter.
  • the pipes through which the refrigerant flows can be squeezed, and the water can be squeezed 5 meters underground.
  • the tank may be changed in depth and can be reused.
  • Water etc. can be moved by natural height difference or pump. It is said that a battery with a battery level of 20-80% is good for a battery such as a smartphone, so it has a judenki with a battery that can automatically set the juden timing with that battery. There is. Link with this device using Bluetooth (registered trademark) or USB cable with a smartphone, etc., and link with the remaining battery level, etc., which allows you to freely read data such as the remaining battery level from a smartphone program, etc. Start and stop the smartphone.
  • a filter or the like having a yesterday so that the air or the like can be separated.
  • a filter with a yesterday, such as the fact that air can pass through a filter but water cannot pass through due to the substance that can be absorbed and the fineness of the substance.
  • a filter or the like can be attached to the place of ⁇ F ⁇ (Fig. 8). ⁇ F ⁇ can be used as much as necessary in places such as pipes.
  • Refrigerant can also be used as energy for such things as ⁇ R ⁇ .
  • a high-pressure refrigerant as a gas as it is where water (liquid, etc.) such as ⁇ R ⁇ is contained, use a pressure sensor or a valve for adjustment with a pipe, etc. to control and collect it. How to do it or use the high temperature of the refrigerant and let it flow through a pipe etc., so that the water etc. (liquid etc.) in the water like ⁇ R ⁇ is heated and the water etc. (liquid etc.) is wiped off. They can also be used to convert to rotational energy.
  • the air conditioner When the air conditioner operates with a heater, the outside air is full. In winter, it becomes difficult to exchange heat with the refrigerant.
  • the pipes through which the refrigerant flows the pipes through which water flows can be squeezed, and the water can be squeezed 5 meters underground. By storing it, the temperature inside the tank can be increased.
  • the tank may be changed in depth and can be reused. Water etc. can be moved by natural height difference or pump.
  • a battery with a battery level of 20-80% is good for a battery such as a smartphone, so it has a judenki with a battery that can automatically set the juden timing with that battery.
  • judenki With a battery that can automatically set the juden timing with that battery.
  • cranks and gears of bicycles and chains that transmit their rotation (belts, etc. may be used as long as they have equivalent functions) are used.
  • the chain and the like are connected to each other to form a shape like a rotating ring, and when the chain moves, the bucket and the like also move in conjunction with each other. Assuming that the height difference between the high part and the low part of such a structure is about 60 meters, when you come near the high part, make a little contact with the place where the bucket passes and tilt the bucket, such as water, mercury, etc. Also install a tank, etc. that can drop and store substances that have fluidity.
  • a process such as assembling liquid mercury such as water from a lower tank into a bucket or the like can be designed so that the passage is designed to have the minimum resistance so as to be as efficient as possible. Then, liquid mercury such as water in the upper tank can be dropped 60 meters below using a pipe or the like, and the energy can be applied to a water wheel or the like to transmit the energy and operate the generator.
  • the inside By surrounding the outside of this device with a shield and sucking out the air inside it with a suction device, the inside can be made into a vacuum or low pressure state to eliminate or reduce the air resistance when water or liquid mercury falls. can.
  • Such a device is a device that plays a role of transmitting gravitational energy to rotational energy or the like via water or the like or liquid mercury or the like.
  • liquid mercury such as water (or iron balls etc.)
  • Shishi-odoshi made of bamboo etc. found in Japanese gardens, is made of metal etc.
  • magnets and coils can be placed around the rotating pedestal or the like using the principle of power generation such as a motor to generate electricity.
  • Liquids water, mercury, gas sent through pipes, those with a lighter specific gravity and fluidity than dry ice, etc.
  • solid substances that vaporize due to the pressure difference dry ice, etc., and swaying chambers
  • dry ice, etc., and swaying chambers are placed in the tank.
  • dry ice is vaporized to become carbon dioxide and moves in a certain direction in the liquid, so that energy is used.
  • Multiple tanks can be connected, and carbon dioxide (gas) or the like can be pressurized again at a certain place to make dry ice or liquid.
  • the wood etc. are arranged exactly like the three major pyramids in Egypt, and the space etc. that is useful for living by freely creating spaces etc. can be created in the valleys such as mountainous areas. It can also be installed in. Doing so creates a large flat land above it. A vast and effective space is created. Preserving wood that has absorbed carbon dioxide can also be a countermeasure against global warming.
  • the figures of these invention examples are examples and can be freely combined depending on the purpose such as size and size.
  • a place where electric bicycles, etc., which are means of transportation can be parked and stored near stations, etc. will be provided to make it easy and convenient to move to the storage place, etc. at the destination.
  • a situation where an electric bicycle or the like can be mechanically unlocked in a parking storage place is set.
  • a person who wants to use an electric bicycle by installing a lock on the wheel etc. of the electric bicycle and keeping it in a parking place etc. starts an application such as a smartphone registered in advance and agrees to the terms of use and starts using it.
  • the automatically linked locking device is unlocked and can be used.
  • a device that wirelessly informs the location of an electric bicycle or the like can be attached so that the manager of the electric bicycle or the like can grasp the location when necessary.
  • the smartphone used by the user of the electric bicycle and the device that can grasp the whereabouts of the bicycle are linked while being used wirelessly, and when the distance is a certain distance, the device attached to the bicycle is used. It is equipped with an alarm function that notifies the person and the administrator by e-mail. It is also possible to automatically record and save the position of a bicycle or the like using a device. If a situation occurs such as when the distance between the bicycle and the smartphone of the user etc. occurs, if it is an electric bicycle, the current of the motor is stopped to ensure safety. If the device is simplified a little more, the password, etc. set in advance by the user, the caller ID, the name, etc. are confirmed on the phone when unlocking the bicycle, etc.
  • the administrator can remotely activate the unlock device, or communicate the password that is valid for a certain period of time with the user via a mobile phone, etc., and the user can enter the password within that time, such as the unlock button for the parking space. You can also press and enter to unlock. When locking the parking storage area, enter the password for unlocking to confirm the identity. Remotely lock by using fingerprint authentication, face authentication, eyeball authentication, etc. from software such as a dedicated smartphone to verify the identity, or by using the videophone function of the smartphone, etc. to verify the identity by face or speaking style, etc. There is also a method to cancel. If the lock device of the parking storage place and the key of the electric bicycle etc.
  • the management and usage responsibility from the application for use to the lock state of the bicycle etc. until it is properly returned to the storage place etc. are decided by the rules etc. so that the user can follow it.
  • the parking storage area is equipped with a camera with a dynamic sensor and a light communication device to record and notify the administrator.
  • a camera with a dynamic sensor and a light communication device to record and notify the administrator.
  • link the key that locks the tire with the energization of the electric system It is possible to select whether to use multiple lock devices as the lock device for the parking storage area and the lock device for the bicycle body, or to install all of them on the bicycle or the like. If all the bicycles are installed, the administrator can safely unlock and lock the bicycle while checking the condition of the parking storage area with a videophone function, live camera, etc.
  • a card key using magnetism can be provided and the user can authenticate it to a machine or the like installed in the parking storage place to use it as a means of identity verification, or it can be used in combination with the above means. Charges can be automatically deducted from banks by linking them with card keys and smartphones. If you attach a rain-proof roof to an electric bicycle, you can use it comfortably even in the rain.
  • a space for humans etc. to pass through is provided by connecting PET bottle-shaped materials etc. so that the internal temperature can be adjusted when moving through that space.
  • substances such as PET bottles, prepare a liquid (water, etc.) with little temperature change throughout the year, such as about 5 meters underground (as a guide only), and pump it inside with an electric pump, etc. Use it for internal air conditioning when the outside temperature is high or low.
  • the groundwater temperature also has a depth that fluctuates from year to year depending on the depth, etc., but it is also used to the maximum extent for air conditioning.
  • the internal air temperature will be close to that if the flowing water is 15 degrees Celsius, so I want to make it about 22 degrees Celsius.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering.
  • hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • Objects such as plastic bottles can be made transparent, so they are blocked by light, but they can create an open space and can be used as art if fish are bred inside. If the size of the space is changed and enlarged by the same structure, it is possible to put hot water inside or create other leisure facilities to build a space integrated with nature. You can build a relaxing hot spring without worrying about rain or wind.
  • the temperature inside the space and the temperature of the liquid such as flowing water are controlled by sensors, etc., and the flow rate of the electric pump, etc. is automatically changed to keep the energy cost in the right state.
  • the heat of combustion of wood, etc. can be effectively utilized by using nearby wood, etc.
  • the water stored in the underground tank or the like is poured into a structure composed of PET bottles or the like and returned to the underground tank.
  • Water, etc. is reused by circulating it in structures such as underground tanks and PET bottles. You can also put fish in the above leisure facilities for viewing and fishing.
  • a space for humans etc. to pass through is provided by connecting PET bottle-shaped materials etc. so that the internal temperature can be adjusted when moving through that space.
  • substances such as PET bottles, prepare a liquid (water, etc.) with little temperature change throughout the year, such as about 5 meters underground (as a guide only), and pump it inside with an electric pump, etc. Use it for internal air conditioning when the outside temperature is high or low.
  • the groundwater temperature also has a depth that fluctuates from year to year depending on the depth, etc., but it is also used to the maximum extent for air conditioning.
  • the internal air temperature will be close to that if the flowing water is 15 degrees Celsius, so I want to make it about 22 degrees Celsius.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering.
  • hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • a liquid is further put inside a space whose temperature is controlled by a structure made by using such a PET bottle or the like and fish are bred there, when the fish swim speed is fast, make it as streamlined as possible and make a large circle. Etc. to draw. If the width with respect to the traveling direction is set to 50 cm or the like according to the size of the fish or the like, it is safe because it does not collide from the front.
  • Plants, etc. are provided with a space that is not wasted depending on the size of the plants, etc. that are grown inside the structure by flowing and circulating liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • it can be artificially heated (using equipment such as an oil boiler) and cooled (equipment such as a refrigerator, liquid nitrogen, etc.), but it can also be heated using the heat of sunlight and constructed with a PET bottle as a solar heat storage hot water device. You can use the created object and save the utility bill.
  • the heat retention efficiency can be improved by condensing sunlight or the like around an object constructed of a PET bottle or the like to protect the surroundings with aluminum or the like which is a confidential material and inserting a heat insulating material or the like.
  • PET bottles etc. circulate liquid such as water inside. If the water is carried by a pipe connected from an underground tank, it will transmit the underground temperature to the inside of the space.
  • a PET bottle or the like is used to shield the space from a temperature medium such as water and the space.
  • the inside of the space is artificially covered with an air conditioner or boiler equipment by covering the inside with a heat-retaining substance or a heat-insulating substance. It is possible to reduce the energy cost when the temperature is adjusted to.
  • the lower space When a space is provided inside an object constructed of a pet bottle, etc., when the space is in several stages, the lower space is placed inside the upper space. If it does not reach, it may be a method of transmitting sunlight, etc. once condensed to an appropriate position to the required place with an optical fiber, or it may be the side of a structure made of a PET bottle etc. using a mirror etc. or another place. However, by installing a reflector or the like (mirror, etc.) in a place where the light is easy to hit, the light is refracted and guided from the place where the light is easy to hit to the place where it is hard to hit.
  • a reflector or the like mirror, etc.
  • Objects such as plastic bottles can be made transparent, so they are blocked by light, but they can create an open space and can be used as art if fish are bred inside. If the size of the space is changed and enlarged by the same structure, it is possible to put hot water inside or create other leisure facilities to build a space integrated with nature. You can build a relaxing hot spring without worrying about rain or wind.
  • the temperature inside the space and the temperature of the liquid such as flowing water are controlled by sensors, etc., and the flow rate of the electric pump, etc. is automatically changed to keep the energy cost in the right state. When installed in a mountainous area, the heat of combustion of wood, etc. can be effectively utilized by using nearby wood, etc.
  • Both restaurants and recreational facilities can serve and sell agricultural products as food for a price.
  • Recreational facilities, etc. can be used even if labor costs are considerable, as long as this coupon includes the content that provides the service of such a contract.
  • a coupon is a concept. Coupons can be paper-based or digitized. Mr. A can grasp the connection of goods, coupons and services by digitizing and encrypting with PGP encryption etc. and centrally managing the data in the database. Mr. A is free to decide whether to disclose this data to the outside. Since it is based on a credit relationship, it prevents interference by third parties and ensures stability. When the coupon is replaced with virtual currency, the value of the currency can be set in advance so that only this strawberry can be eaten per coupon. It is also possible to specify in the contract that the exchange of virtual currency can only be done through Mr. A.
  • the tank or the like can be kept so as not to be mixed with the water in the tank until the returned water is cooled to some extent by partitioning the inside or the like.
  • the amount of flowing water can also be adjusted by adjusting the output of the pump. Similarly, by flowing water on the road, it can be cooled in the summer, melt snow in the winter, and prevent freezing.
  • the amount of water to be flowed is programmed in advance using temperature data such as the weather forecast, and the amount of water to be flowed based on the actual temperature is controlled by the output of the pump. If you are using spring water or well water from mountains (spring water sources, well water, etc., the water temperature is stable throughout the year), you may not need a tank. If you want to adjust the water flow, add water to the roof, etc.
  • a valve or the like is provided on the leading pipe or the like to attach a device that can control the diameter of the valve or the like, or the amount of water or the like is controlled by controlling the opening and closing amount or the like with a computer or the like in the form of a faucet.
  • the tank It is not always necessary to install the tank underground, but if you use water whose temperature is controlled by using the ground temperature, you can control the temperature inside the house with a smaller amount of water, etc., and the cost of electricity for the pump etc. will be reduced. .. If the tank is elongated to a depth of 5 meters or more in the ground and the volume at a deep point is increased and circulated by a motor or the like, freezing can be prevented. It is also possible to install tanks underground and above ground and connect them to mix in the best temperature conditions. Since the temperature differs depending on the depth of the underground, the efficiency etc. will be improved by installing multiple tanks by changing the underground depth and flowing the mixed water etc. to the roof etc. of the house etc. by connecting with pipes etc.
  • the ground temperature of about 5 meters underground is about 15 ° C, and it is circulated by pulling pipes under the flooring of houses, etc., on the sides, ceiling, etc., and collected in tanks such as underground for reuse. do. If you use hot spring water, you can flush a hotter liquid (hot water).
  • hot water hot water
  • a space for humans etc. to pass through is provided by connecting PET bottle-shaped materials etc. so that the internal temperature can be adjusted when moving through that space.
  • substances such as PET bottles, prepare a liquid (water, etc.) with little temperature change throughout the year, such as about 5 meters underground (as a guide only), and pump it inside with an electric pump, etc. Use it for internal air conditioning when the outside temperature is high or low.
  • the groundwater temperature also has a depth that fluctuates from year to year depending on the depth, etc., but it is also used to the maximum extent for air conditioning.
  • the internal air temperature will be close to that if the flowing water is 15 degrees Celsius, so I want to make it about 22 degrees Celsius.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering.
  • hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • a liquid is further put inside a space whose temperature is controlled by a structure made by using such a PET bottle or the like and fish are bred there, when the fish swim speed is fast, make it as streamlined as possible and make a large circle. Etc. to draw. If the width with respect to the traveling direction is set to 50 cm or the like according to the size of the fish or the like, it is safe because it does not collide from the front.
  • Plants, etc. are provided with a space that is not wasted depending on the size of the plants, etc. that are grown inside the structure by flowing and circulating liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • it can be artificially heated (using equipment such as an oil boiler) and cooled (equipment such as a refrigerator, liquid nitrogen, etc.), but it can also be heated using the heat of sunlight and constructed with a PET bottle as a solar heat storage hot water device. You can use the created object and save the utility bill.
  • the heat retention efficiency can be improved by condensing sunlight or the like around an object constructed of a PET bottle or the like to protect the surroundings with aluminum or the like which is a confidential material and inserting a heat insulating material or the like.
  • PET bottles etc. circulate liquid such as water inside. If the water is carried by a pipe connected from an underground tank, it will transmit the underground temperature to the inside of the space.
  • a PET bottle or the like is used to shield the space from a temperature medium such as water and the space.
  • the inside of the space is artificially covered with an air conditioner or boiler equipment by covering the inside with a heat-retaining substance or a heat-insulating substance. It is possible to reduce the energy cost when the temperature is adjusted to.
  • the lower space When a space is provided inside an object constructed of a pet bottle, etc., when the space is in several stages, the lower space is placed inside the upper space. If it does not reach, it may be a method of transmitting sunlight, etc. once condensed to an appropriate position to the required place with an optical fiber, or it may be the side of a structure made of a PET bottle etc. using a mirror etc. or another place. However, by installing a reflector or the like (mirror, etc.) in a place where the light is easy to hit, the light is refracted and guided from the place where the light is easy to hit to the place where it is hard to hit.
  • a reflector or the like mirror, etc.
  • Objects such as plastic bottles can be made transparent, so they are blocked by light, but they can create an open space and can be used as art if fish are bred inside. If the size of the space is changed and enlarged by the same structure, it is possible to put hot water inside or create other leisure facilities to build a space integrated with nature. You can build a relaxing hot spring without worrying about rain or wind.
  • the temperature inside the space and the temperature of the liquid such as flowing water are controlled by sensors, etc., and the flow rate of the electric pump, etc. is automatically changed to keep the energy cost in the right state. Effective use of combustion heat, exhaust gas, etc. of wood, etc. when heating water, etc. around the space or heating the inside by using nearby wood, etc. when installed in a mountainous area, etc. can.
  • Plants are grown in structures constructed using substances such as PET bottles. Since it is not necessary for people to enter the space inside the structure, the plants placed on the pallets are pulled by using wheels, rails, etc., or connected like a train by the power of a motor and carried. The same applies when taking it out. About 5 meters underground with a pipe outside the structure (the depth can be changed according to the temperature, and water from tanks with different depths can be mixed. The water itself can be heated using a heater). Water, etc. pulled from the tank by a motor pump, etc., is sprinkled on the outside of this structure, etc. If the structure is constructed so that there are steps on the outside of the structure, liquid water, coolant, etc.
  • the structure can be cooled or heated. It is also possible to provide a pipe for water conduction or the like at an appropriate place in the structure and to recirculate the water or the like from there to the underground tank.
  • a pipe for water conduction or the like at an appropriate place in the structure and to recirculate the water or the like from there to the underground tank.
  • Antifreeze solution suitable for transparent is better for normal use, in some cases colored one), water, glass, bead ball, plastic resin, etc. that allows light to pass through (in some cases, colored one is better) You can adjust the amount of sunlight. You can also cover the outside with a light-shielding cover.) Leave the water in the underground tank or hot spring water to the outside of the structure as described above. Adjusts the temperature inside the structure by collecting and recirculating it. By doing so, the installation cost and strength of the structure may be improved. Structures such as PET bottles are not limited to PET bottles, and it is naturally possible to use special materials. It is used to separate the outside air from the internal space constructed of PET bottles and the like.
  • a space for humans etc. to pass through is provided by connecting PET bottle-shaped materials etc. so that the internal temperature can be adjusted when moving through that space.
  • substances such as PET bottles, prepare a liquid (water, etc.) with little temperature change throughout the year, such as about 5 meters underground (as a guide only), and pump it inside with an electric pump, etc. Use it for internal air conditioning when the outside temperature is high or low.
  • the groundwater temperature also has a depth that fluctuates from year to year depending on the depth, etc., but it is also used to the maximum extent for air conditioning.
  • the internal air temperature will be close to that if the flowing water is 15 degrees Celsius, so I want to make it about 22 degrees Celsius.
  • the air temperature can be maintained with about 7 ° C of energy, which is more efficient than raising the temperature from 5 ° C. The same can be said when lowering.
  • hot water such as a hot spring, it will be more efficient when raising the temperature of air conditioning.
  • special materials can be used if the purpose is met.
  • the installation location can be selected according to the application such as above ground, underground, and semi-underground. Multiple underground tanks can be installed depending on the temperature. PET bottles and the like are connected to allow water to flow.
  • the structural purpose is to construct a barrier for maintaining the temperature between the liquid and the outside air.
  • a liquid is further put inside a space whose temperature is controlled by a structure made by using such a PET bottle or the like and fish are bred there, when the fish swim speed is fast, make it as streamlined as possible and make a large circle. Etc. to draw. If the width with respect to the traveling direction is set to 50 cm or the like according to the size of the fish or the like, it is safe because it does not collide from the front.
  • Plants, etc. are provided with a space that is not wasted depending on the size of the plants, etc. that are grown inside the structure by flowing and circulating liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • liquids such as water using underground heat, etc. in the space constructed using substances such as PET bottles.
  • it can be artificially heated (using equipment such as an oil boiler) and cooled (equipment such as a refrigerator, liquid nitrogen, etc.), but it can also be heated using the heat of sunlight and constructed with a PET bottle as a solar heat storage hot water device. You can use the created object and save the utility bill.
  • the heat retention efficiency can be improved by condensing sunlight or the like around an object constructed of a PET bottle or the like to protect the surroundings with aluminum or the like which is a confidential material and inserting a heat insulating material or the like.
  • PET bottles etc. circulate liquid such as water inside. If the water is carried by a pipe connected from an underground tank, it will transmit the underground temperature to the inside of the space.
  • a PET bottle or the like is used to shield the space from a temperature medium such as water and the space.
  • the inside of the space is artificially covered with an air conditioner or boiler equipment by covering the inside with a heat-retaining substance or a heat-insulating substance. It is possible to reduce the energy cost when the temperature is adjusted to.
  • the lower space When a space is provided inside an object constructed of a pet bottle, etc., when the space is in several stages, the lower space is placed inside the upper space. If it does not reach, it may be a method of transmitting sunlight, etc. once condensed to an appropriate position to the required place with an optical fiber, or it may be the side of a structure made of a PET bottle etc. using a mirror etc. or another place. However, by installing a reflector or the like (mirror, etc.) in a place where the light is easy to hit, the light is refracted and guided from the place where the light is easy to hit to the place where it is hard to hit.
  • a reflector or the like mirror, etc.
  • Objects such as plastic bottles can be made transparent, so they are blocked by light, but they can create an open space and can be used as art if fish are bred inside. If the size of the space is changed and enlarged by the same structure, it is possible to put hot water inside or create other leisure facilities to build a space integrated with nature. You can build a relaxing hot spring without worrying about rain or wind.
  • the temperature inside the space and the temperature of the liquid such as flowing water are controlled by sensors, etc., and the flow rate of the electric pump, etc. is automatically changed to keep the energy cost in the right state. Effective use of combustion heat, exhaust gas, etc. of wood, etc. when heating water, etc. around the space or heating the inside by using nearby wood, etc. when installed in a mountainous area, etc. can.
  • Plants are grown in structures constructed using substances such as PET bottles. Since it is not necessary for people to enter the space inside the structure, the plants placed on the pallets are pulled by using wheels, rails, etc., or connected like a train by the power of a motor and carried. The same applies when taking it out. About 5 meters underground with a pipe outside the structure (the depth can be changed according to the temperature, and water from tanks with different depths can be mixed. The water itself can be heated using a heater). Water, etc. pulled from the tank by a motor pump, etc., is sprinkled on the outside of this structure, etc. If the structure is constructed so that there are steps on the outside of the structure, liquid water, coolant, etc.
  • the structure can be cooled or heated. It is also possible to provide a pipe for water conduction or the like at an appropriate place in the structure and to recirculate the water or the like from there to the underground tank.
  • a pipe for water conduction or the like at an appropriate place in the structure and to recirculate the water or the like from there to the underground tank.
  • Antifreeze solution suitable for transparent is better for normal use, in some cases colored one), water, glass, bead ball, plastic resin, etc. that allows light to pass through (in some cases, colored one is better) You can adjust the amount of sunlight. You can also cover the outside with a light-shielding cover.) Leave the water in the underground tank or hot spring water to the outside of the structure as described above. Adjusts the temperature inside the structure by collecting and recirculating it. By doing so, the installation cost and strength of the structure may be improved. Structures such as PET bottles are not limited to PET bottles, and it is naturally possible to use special materials. It is used to separate the outside air from the internal space constructed of PET bottles and the like. When creating a multipurpose space inside a structure using a PET bottle, etc.
  • the space where the fish of the structure swims is made streamlined or the like to reduce the risk of the fish colliding with an obstacle. It is also possible to make a large loop as a whole and create water pressure or the like using a pump, a fan or the like to generate a water flow or the like inside the space. If a large circle is constructed and a space is created with a gently curved structure, it is possible to prevent fish and the like from coming into contact with walls and the like. If the width of the space is about 50 cm when the fish swims (it depends on the size of the fish, etc.), it is possible to prevent the fish from colliding with the side surface.
  • the space for heat control using groundwater, etc. and the space for adjusting the temperature while using it can be filled with liquid for temperature control, etc. by devising the arrangement of the structure using PET bottles, etc. You can put plants that use it around you or build a space that humans can put in, and you can freely choose the arrangement.
  • a structure constructed of PET bottles, etc. which has a space of a size for each purpose inside, to a water tank set to a certain temperature, the temperature of the liquid filled in the water tank etc. can be increased. It affects the space provided in the object constructed from PET bottles and the like, and the temperature of the space can be adjusted.
  • the space can be sealed, air, etc. can be put in or sewn through a filter or the like.
  • the constant temperature water utilization device (which may be a liquid, a substance that mediates heat, a substance such as a coolant, etc.) of the present invention is a constant temperature water utilization device that utilizes constant temperature water, and is predetermined.
  • a constant temperature water utilization device including a fan that blows air toward the other end side, and the cavity is used as an air conditioning space or an energy exchange device installation space. According to such a configuration, constant temperature water or the like can be effectively used.
  • the constant temperature water utilization device according to another aspect of the present invention is a constant temperature water utilization device that utilizes constant temperature water, and is buried in a predetermined underground where a predetermined constant temperature underground temperature is maintained.
  • An underground tank that stores water, a conduit that guides the constant temperature water stored in the underground tank to the vicinity of the conduit, and the constant temperature water that is connected to the conduit to maintain the temperature on the conduit surface at a predetermined temperature.
  • a constant temperature water utilization device characterized by comprising a plurality of pipes buried at a predetermined depth from the road surface.
  • a tank installed underground using geothermal heat may be installed at points with different depths) to liquidize geothermal heat (using water, etc.) and use it to guide it to the desired location. Used to control the temperature of places and the like. According to such a configuration, constant temperature water can be effectively used.
  • the constant temperature water utilization device is a constant temperature water utilization device that utilizes constant temperature water, and is buried in a predetermined underground where a predetermined constant temperature underground temperature is maintained.
  • An underground tank for storing water a wall body formed by connecting a plurality of hollow tubes in a planar manner, a structure formed by forming a hollow portion inside using the wall body, and the above-mentioned structure.
  • a constant temperature water utilization device comprising a pipe and a circulation pump for circulating constant temperature water stored in an underground tank to a hollow tube of the structure, and the hollow portion is used as an air conditioning space. According to such a configuration, constant temperature water can be effectively used.
  • the trolley according to one aspect of the present invention is a trolley that travels on a rail on which a frozen liquid ice surface is formed to transport an automobile, and has a trolley body that supports the weight of the conveyed automobile and the trolley body described above.
  • a plurality of slings provided on the lower surface of the bogie body and gliding on the ice surface, a drive device for traveling and moving the bogie body, and a position information acquisition means for acquiring position information of the bogie body along the rail.
  • a dolly including a control device that controls the drive device based on the position information obtained by the position information acquisition means and causes the dolly body to travel to a target transport location.
  • the constant temperature water utilization device 6 is a device that utilizes constant temperature water.
  • the constant temperature water utilization device 6 includes an underground tank T, a structure 60, a pipe 62, a circulation pump P3, and a fan 63.
  • the underground tank T is buried in a predetermined underground space where a predetermined constant temperature underground temperature is maintained, and stores constant temperature water.
  • the underground temperature environment is a constant temperature of about 15 ° C. throughout the year, so that the constant temperature characteristic of such an underground space can be utilized as a curse of nature.
  • the temperature of the underground space is a constant temperature space in various temperature ranges according to the surrounding environment in which the underground space is placed, such as a hot water-containing layer such as a hot spring or a groundwater layer of melted snow.
  • the name of water in the constant temperature "water” stored and used in the underground tank T is a generic term for water and the like, and is used as a name including any other liquid that can be substituted for water.
  • the constant temperature "water” stored and used in the underground tank T may be, for example, a refrigerant in an air conditioner, a fluid for heat exchange, oil, or the like.
  • the underground tank T is arranged in an underground space having a constant temperature of a predetermined temperature, for example, near a groundwater layer containing groundwater having a constant temperature of a predetermined temperature. When the underground tank T is installed at a predetermined position, water is injected to fill the underground tank T with a predetermined full amount.
  • the water stored in the underground tank T may be groundwater at the place where the tank is installed, or tap water may be injected from the ground, for example.
  • constant temperature water can be used at an early stage.
  • the water stored in the underground tank T is pumped from the underground tank T to the ground by the water pump P2.
  • the water stored in the underground tank T is used as constant temperature water, then transferred to the underground space, returned to the constant temperature water underground, and then returned to the underground tank T to be used again as the constant temperature water.
  • the structure 60 has a hollow portion 61 formed by communicating and connecting a plurality of hollow tubes 6a formed of a light transmissive material.
  • the cavity 61 is used as an air conditioning space or an energy exchange device installation space.
  • the structure 60 may be installed on the ground when used in the presence of sunlight, and may be installed underground in other cases. In the ground, it is easy to use under a predetermined constant temperature.
  • the structure 60 is used as a closed space by sealing both ends thereof with a wall formed by connecting the hollow tubes 6a.
  • the structure 60 may be used as an open space in which a part of both ends thereof is open.
  • the pipe 62 and the circulation pump P3 are used to circulate the constant temperature water stored in the underground tank T and pumped by the water pump P2 to the hollow tube 6a of the structure 60. Due to the circulation of water in the hollow tube 6a, the internal temperature of the hollow portion 61 becomes constant.
  • the constant temperature water is stored in the auxiliary tank T1 as much as necessary, circulates in the hollow tube 6a, and then returned to the underground tank T.
  • the constant temperature water utilization device 6 includes a recovery device for returning the water taken out from the underground tank T and used to the underground tank T.
  • the recovery device is composed of a pipe 69 connecting the structure 60 and the underground tank T, a recovery tank Ts attached to the underground tank T, and the like, and a recovery pump for water supply may be provided in the path of the pipe 69.
  • the temperature of the water used and recovered is different from the temperature of the underground space where the underground tank T is installed. Therefore, the recovery tank Ts is used to restore the temperature of the recovered water to the temperature in the underground space, that is, the constant temperature.
  • the recovery tanks Ts are attached to the underground tank T, but they may be separated from each other and connected by a pipe. Further, the recovery tank Ts may wither the heat exchanger configured so that the recovered water inside can quickly return to the temperature in the underground space. Further, when the amount and temperature of the recovered water, that is, the amount of heat is small compared to the amount of heat of the constant temperature water in the underground tank T and can be ignored, the temperature fluctuation can be ignored, so that the recovered water is directly used in the underground tank. It may be collected and mixed in water at a constant temperature of T.
  • the configuration of the pipe 62, the circulation pump P3, the auxiliary tank T1 and the like for circulating and using the water in the underground tank T is an example, and is not limited to the configuration shown in the figure. Equipment and the like may be provided as needed. Further, the auxiliary tank T1 does not have to be provided, and may be provided as needed.
  • the fan 63 creates an air flow in the closed cavity 61 formed by the structure 60. This blast eliminates the stagnation of air in the cavity 61. The heat generated in the cavity 61 is carried to the wall surface by the hollow tube 6a by the air blown by the fan 63 and absorbed.
  • the structure 60 is provided with external piping from one end side to the other end side to form a closed wind passage, and the air blown by the fan 63 creates a one-way circulating wind flow in the structure 60. You may let it.
  • the cavity 61 is suitably used as an installation space for the solar panel 64.
  • the solar panel 64 is an energy exchange device that converts solar energy into electrical energy. Since the solar panel 64 is located in the cavity 61 whose four surfaces are maintained at the temperature of groundwater and is blown by the fan 63, the panel surfaces can be maintained at an appropriate temperature and the power generation efficiency can be maintained.
  • the target for maintaining an appropriate temperature by such a mechanism is not limited to solar panels, but any object.
  • the structure 60 can have an appropriate shape that can optimize and improve the efficiency of temperature control of the contents according to the contents that accommodate the shape of the cavity 61.
  • the panel is sealed by being surrounded by a wall surface formed of the hollow tube 6a in close proximity to the outer peripheral surface including the front surface and the back surface of the panel so that the panel can be accommodated in the minimum space.
  • the hollow portion 61 may be formed, or may be a non-sealed hollow portion 61 that is not completely sealed but is partially open.
  • the constant temperature water utilization device 6 has a plurality of underground tanks T (three in the illustrated example) and a mixer 6mx for mixing water from each tank whose temperature is known.
  • the underground tanks T are individually buried in a plurality of underground depths or underground spaces having different underground environments so that water having a constant temperature of different temperatures t1, t2, and t3 can be stored.
  • the mixer 6mx is a constant temperature water adjusted to a predetermined temperature t0 regardless of the season by mixing constant temperature water having different temperatures t1, t2, t3 obtained from these plurality of underground tanks T. Is sent. In this embodiment, it is assumed that the temperature of the water in each underground tank is constant in the short term but seasonally fluctuates in the long term throughout the year.
  • the apparatus of this embodiment is a constant temperature water utilization device that utilizes constant temperature water, and maintains a predetermined constant temperature underground temperature, as in the above embodiment.
  • An underground tank T that is buried in a predetermined underground and stores constant temperature water is used.
  • the constant temperature water utilization device of the present embodiment is a conduit that guides the constant temperature water stored in the underground tank T to the vicinity of the conduit, and a pipe connected to the conduit, which has a constant temperature.
  • an underground tank T is installed at the lower part of the road or passage or in the vicinity 5 meters below the ground in order to prevent freezing and lower the temperature of the road surface in summer, and the underground tank T is installed.
  • the device of still another embodiment is a constant temperature water utilization device using constant temperature water as in each of the above embodiments, and is a predetermined device in which a predetermined constant temperature underground temperature is maintained.
  • An underground tank T that is buried underground and stores constant temperature water is used.
  • a wall body formed by communicating a plurality of hollow tubes and connecting them in a plane shape, and a hollow portion formed inside by using the wall body.
  • the structure is provided with a pipe and a circulation pump for circulating constant temperature water stored in an underground tank to a hollow tube of the structure, and the hollow portion is used as an air conditioning space.
  • the apparatus may be provided with a pipe, a recovery pump, a recovery tank, a valve, other control equipment, and the like for sending out water from the underground tank T and recovering it after use.
  • the hollow tube may or may not be transparent, and a part of the wall of the hollow portion may be made transparent to serve as a light window, and an optimum air conditioning space may be configured according to the application.
  • a futon-sized space (the size of the space may be changed, which may be larger or smaller) is created as an air-conditioning space, and it is cool in the summer and does not freeze even in the winter. The temperature can be kept in the space.
  • the bogie 8 is a bogie that travels on a pair of left and right rails 23 on which an ice surface 2a of frozen liquid is formed to convey an automobile 90.
  • the bogie 8 includes a bogie main body 80 that supports the weight of the automobile 90 to be transported, a plurality of sleds 81 provided on the lower surface of the bogie main body 80 that slide on ice, and a drive device (running wheels) that moves the bogie main body 80. 85) and.
  • the carriage 8 further includes a transport sled 84 on which the rear wheel 9b of the automobile 90 is mounted and slides on the ice surface 2a. Since the bogie body 80 shares the weight of the automobile 90 with the rail 23, the front wheels 9a on the side not mounted on the transport sled 84 are mounted. Whether the front wheels 9a or the rear wheels 9b are mounted on the bogie body 80 can be arbitrarily selected according to the characteristics of the automobile 90.
  • the bogie 8 further controls the drive device based on the position information acquisition means 82 for acquiring the position information of the bogie main body 80 along the rail 23 and the position information obtained by the position information acquisition means 82, and the bogie main body 80.
  • the carriage 8 is provided with a braking device for controlling traveling.
  • the pair of left and right rails 23 are rails for guiding the sled 81 for gliding on ice, and the liquid is frozen to form the ice surface 2a.
  • the rail 23 includes a housing having a concave cross section having a groove formed in the longitudinal direction and fixed to the road surface 20, and a refrigerant pipe for passing a refrigerant arranged inside the groove.
  • the rail 23 may be provided with a cover that covers the sled 81 to prevent rain or the like from entering the inside when the sled 81 does not slide on ice, or may be provided with a drain hole for draining water existing on the ice surface 2a. good. It is desirable that the cover and the housing of the rail 23 have a structure in which underground tank water is circulated through a pipe to improve cooling efficiency.
  • a guide wheel close to the outer surface of the rail 23 may be provided at the lower part of the bogie main body 80.
  • the guide wheel guides the bogie body 80 so that the bogie 8 travels along the rail 23.
  • a guiding device may be provided between the sled 81 and the rail 23.
  • the structure in the rail 23 may be configured to wrap and surround the sled 81 so that the sled 81 does not deviate from the rail 23.
  • the drive device is a traveling wheel 85 powered by an engine or a motor mounted on the bogie body 80.
  • the traveling wheel 85 is configured to be able to move up and down with respect to the bogie body 80, and is moved upward so as to be away from the road surface 20 when not driven. When moving upward, the bogie body 80 sleds on the ice surface 2a by the sled 81.
  • the traveling wheel 85 comes into contact with the road surface 20 during driving and causes the bogie body 80 to travel on wheels.
  • the traveling wheel 85 is also used as a braking device.
  • the carriage 8 may be an embodiment in which the carriage body 80 is traveled and moved by using a drive device that does not have traveling wheels 85.
  • a drive device a jet propulsion device or a propeller propulsion device may be mounted on the bogie main body 80 and used.
  • a linear motor may be used as a drive device. In this case, the line forming the magnetic field of the linear motor may freeze the liquid to form an ice surface so as to cover the surface thereof.
  • the linear motor and the traveling wheel 85 that obtains the driving force by the engine or the motor mounted on the bogie main body 80 may be combined as a driving device.
  • the position information acquisition means 82 is configured by using, for example, a sensor that detects position display plates and markers provided along the rail 23 one after another and acquires position information, or acquires position information by using a GPS function. It may be a configuration to be used, or a configuration in which these may be combined.
  • the braking device may be configured as a braking device for a vehicle traveling with ordinary tires, in which traveling wheels 85 constituting the driving device are installed on the road surface 20 to brake.
  • the braking device is a braking device that does not use the traveling wheel 85, and may be a device that brakes by interacting with the rail 23.
  • the device may be configured such that the brake plate provided on the side wall of the rail 23 is sandwiched by the brake shoes provided at the lower part of the bogie main body 80. Further, the brake may be applied in a non-contact manner by the electromagnetic interaction between the coil arranged along the rail 23 and the coil arranged in the lower part of the bogie main body 80. Further, as a device for braking without direct interaction with the rail 23, a wind receiving plate may be arranged on the bogie main body 80, and braking may be performed by the wind pressure when the wind receiving plate is unfolded.
  • the control device 83 controls the traveling of the bogie main body 80 by using the braking device as described above, and makes the bogie main body 80 travel to a target transport location based on the position information obtained by the position information acquisition means 82. Based on the position information obtained by the position information acquisition means 82, the control device 83 selects and controls an appropriate route even when the rail 23 is branched. According to the trolley 8 of such an embodiment, the driver of the automobile can entrust the trolley 8 to transport the automobile, and can take a break or do something other than driving during the transportation.
  • the bogie 8 of the present invention is not limited to the configuration provided with the above-mentioned transport sled 84, and the entire automobile 90 may be mounted on the bogie main body 80.
  • the drive device is not limited to the one using the traveling wheel 85, and may be configured to use a rocket propulsion device, a propeller propulsion device, or a jet propulsion device in the biliary tract.
  • the bogie 8 according to another embodiment will be described with reference to FIG.
  • the bogie 8 of the present embodiment is configured such that the entire automobile 90 is mounted on the bogie main body 80 and travels by the driving force of the automobile 90, and the other points are the same as those of the bogie 8 of the above embodiment.
  • the drive device of the bogie 8 of the present embodiment includes a rotation transmission device 86 that receives the rotational force of the drive wheels (front wheels 9a in this example) of the automobile 90 mounted on the bogie main body 80 and transmits the rotational force to the traveling wheels 85.
  • the rotation transmission device 86 includes a rotatable roller that supports the front wheels 9a that are driven and rotated by the engine of an automobile from below, and a transmission mechanism that transmits the rotational energy of the rollers to the traveling wheels 85. According to the bogie 8 of such an embodiment, it is possible to travel and move by the power of the automobile 90 to be conveyed without having a motor or an engine for driving the traveling wheels 85.
  • the driver of the automobile can move with the automobile 90 by leaving it to the traveling movement of the dolly 8.
  • (Additional note) (Movement: Sleigh, trolley) Using the natural providence that the area around 5 meters underground in the mainland of Japan is kept at about 15 degrees throughout the year, if a tubular tunnel is grounded there, the energy required for cooling can be obtained. You can save.
  • this structure is installed on the ground and cooled, it is possible to cover the outer circumference of the tube with liquid water, etc., and if the outer circumference of the tube is plastic, glass, etc. that allows light to pass through, the scenery can be seen from inside the vehicle. You can also see it.
  • a bogie with a function of a hydraulic jack so that the car on the bogie can be raised and lowered by hydraulic power after the car, etc. rides on the bogie. It is possible to change the height so that it does not come into contact with the ground or the like. It is also possible to install a motor etc. to obtain the driving force during running on this dolly, and a part of the dolly can be powered and pulled or pushed to connect with other dollies like a train or to use a powered dolly. It can also be arranged appropriately to reduce the installation cost. It is also possible to monitor the movement of the dolly (unit) with a sensor or install a camera or the like around the cooling lane so that the dolly can be automatically controlled unattended.
  • a solar panel or the like is installed near the space where such a cooling lane or the like is installed, and the electric power from the solar panel or the like is guided from the metal part of the lane to the motor of the dolly or the like, or the lane and the electricity receiving part of the dolly come into direct contact with each other. It is also possible to use non-contact power transmission or the like so that it does not have to be.
  • Tires, etc. made of iron
  • Tires, etc. that can be installed on the side surface of tires of automobiles, etc. to prevent their rotation from being installed on the road surface installed on trolleys, etc., or on the upper part of cooling rails without ice, etc.
  • the linear motor car may be equipped with a sled and the above power wheels. It is also possible to make the inside of the tunnel close to a vacuum state to eliminate loss due to wind and reduce noise and the like.
  • An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the sled into the cooling lane so that the sled or the like does not derail from the cooling lane, and to shape the cooling lane like a fastener so that the sled or the like does not come off and fit the sled into it.
  • the flap can be adjusted so that the air resistance increases when decelerating. It is also possible to keep the parachute out of the vehicle at the time of emergency stop. To prevent the parachute from getting entangled, if the device with the parachute is separated from the rear of the vehicle and moved along the lane, the effect of the parachute can be obtained. You can stop safely.
  • the parachute device is connected by a wire or the like through a device that moves on the cooling lane, and the device and the vehicle are also connected by a wire or the like.
  • Wheel drive, etc., jet engine, etc., and propellers can be attached to the side surface, rear part, etc. of the vehicle as the energy of moving goods such as vehicles. After accelerating considerably, it jumps out as it is toward the sky, gliding from there, moving at high speed using rockets such as jet engines attached to moving objects as power, lift by wings, etc., and launching artificial satellites etc. It can also be put on track while saving fuel.
  • Water drawn from the compressor 5 meters underground circulates around it using pipes, etc., and heat exchange is performed at the required location to take measures against waste heat.
  • a pipe near it and put gas without humidity in it In order to cool the water in the cooling lane, install a pipe near it and put gas without humidity in it. Then, cold air such as dry ice can be flowed using a fan or the like, or can be sucked in by using a tank filled with carbon dioxide in a low atmospheric pressure state at the outlet of a pipe or the like. After recovering carbon dioxide at the end, it is possible to save storage space for carbon dioxide and the like by using another pipe or the like and flowing a gas for cooling or the like in the same reverse direction. Juan can be installed in the middle of the pipe if necessary. The carbon dioxide recovered through the pipe can be reused as dry ice.
  • a copper or the like with a closed structure or the like is attached on the cooling rail (lane) or the like, and water of about 15 degrees of underground tank water is circulated there to reduce the cost of the cooling tower.
  • the upper cover of the cooling rails, lanes, etc. is closed by electric power, etc., especially in summer so that heat is not exchanged as much as possible. Leave it to. (Additional note) (Movement: sled)
  • a pipe, etc. shall be provided at the bottom of the train running line, and oil, etc. (gas, etc. that has been considered for viscosity) may be poured into it.
  • liquid or gas may move to that section. It is possible to further increase the brake power. There are liquids, gases, etc. in an appropriate proportion in the pipe at normal times, and it is also possible to prevent a sudden shock from being given to the vehicle, etc. Also, if necessary, the pipe It is also possible to prepare a dedicated device that can send liquid, gas, etc. (hydraulic pump, etc.) so that oil, liquid, solid, etc. can be quickly sent to the required section when needed.
  • a dedicated device that can send liquid, gas, etc. (hydraulic pump, etc.) so that oil, liquid, solid, etc. can be quickly sent to the required section when needed.
  • the lane It is also possible to coat the lane with a rough material so that it can be gripped, cover the wheels with rubber, use rubber tires, etc. Also, install superconducting magnets, magnets, etc. on the side or bottom surface of the vehicle. It is also possible to install a coil etc. on the side or center of the lane to generate power. It is also possible to install a magnet etc. on the lane such as a coil on the vehicle side.
  • a battery is mounted on the vehicle and a drive motor is installed. It can be moved and charged with the generated electricity. It can also be balanced with the side by using electromagnetic force like a linear motor car. This cooling lane etc. can be used with vehicles.
  • the temperature of the solar panel can be controlled by flowing water of about 15 ° C from), or the solar panel can be made waterproof and the airtightness of the panel can be increased to make the panel into a tub where shallow water is accumulated. After putting it on, water at about 15 ° C, which is installed about 5 meters underground, is poured and collected in an underground tank. At this time, in order to keep the object such as a solar panel (there is no particular limitation, other substances or objects may be used) at an appropriate temperature, a pipe or the like is placed around the object so as to surround the temperature. Can be managed.
  • the positional relationship is such that natural groundwater flows naturally, it may be flushed and the temperature of the panel etc. is controlled.
  • a PET bottle or the like for example, the part of the drinking spout is cut out and a plurality of rectangular cubes are glued together to construct a structure in which water of an underground tank is put.
  • a structure containing water or the like is used to create a hollow structure. Then, it is possible to put a solar panel or the like whose temperature is to be controlled in the hollow part or the like. This will increase the amount of power generation by installing a similar device for solar panels installed in homes.
  • the temperature of the solar panel becomes too high, the amount of power generated will decrease.
  • water of about 15 degrees in the underground tank is used. Since the ground temperature around the underground tank differs depending on the depth, it is possible to install multiple tanks at different depths and mix the water and the like. (Additional note) Even on the current roads, use pipes, etc. to pave water, etc. in tanks installed 5 meters underground at the bottom of roads, passages, etc. in order to prevent freezing and lower the temperature of the road surface in summer. By circulating it 10 cm below the asphalt of the road, the road surface etc. will not freeze or generate excessive heat.
  • Create a futon-sized space (the size can be changed even if it is larger or smaller) using a PET bottle, etc., and keep the temperature in the space so that it will be cool in the summer and will not freeze even in the winter.
  • Water from a tank installed about 5 meters underground is put into the inside of a PET bottle or the like through a pipe, and the PET bottle or the like is connected so that the water circulates and returns to the tank.
  • a cover such as a closed structure is attached on the cooling rail (lane) or the like, and water of about 15 degrees of underground tank water is circulated there to reduce the cost of the cooling tower.
  • the upper cover of the cooling rails, lanes, etc. is closed by electric power, etc., especially in summer so that heat is not exchanged as much as possible. Leave it to.
  • the sled part has a rail structure or the like that slides on a frozen road surface but has a protruding shape so as not to derail sideways.
  • Tires or the like that are in contact with the side surface of the rail may be attached to the sled or the like in order to reduce impact or the like on a curve or the like.
  • the generation of air resistance is prevented by making the inside of the tunnel such as the tube surrounding the vehicle as vacuum as possible.
  • the trolley is provided with the function of a hydraulic jack. It is possible to change the height of the tires of the automobile so that the vehicle on the trolley can be raised and lowered by hydraulic pressure or the like after the automobile or the like gets on the vehicle so as not to come into contact with the ground or the like.
  • the energy of automobile engines, motors, etc. can be connected to tires, etc., which can prevent the rotation of the device from being installed on the road surface installed on the trolley, etc. Attach a roller part device, etc. to the trolley, etc. that turns according to the method of changing to running energy, etc.
  • the linear motor car may be equipped with a sled and the above power wheels. The inside of the tunnel is made into a state close to a vacuum state to eliminate loss due to wind and reduce noise.
  • An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the heat absorbing plate of the freezer is elongated and installed there, or it is a dedicated heat absorbing device, or a large compressor etc. and water of a constant temperature underground are used. Efficient temperature control is conceivable. It is conceivable that the waste heat of the compressor or the like will be secondarily used to operate the Stirling engine or the like.
  • the compressor By installing the compressor in a space where water drawn from 5 meters underground circulates around it using pipes, etc., it can be used as a measure against heat exhaust. Even on the current road, water etc.
  • Water from a tank installed about 5 meters underground is put into the inside of a PET bottle or the like through a pipe, and the PET bottle or the like is connected so that the water circulates and returns to the tank.
  • you use a motor to pump water install it in the ground of a high mountain, or send a large underground tank that is linked to a large-scale facility such as a waterworks and the temperature is close to 15 ° C even in the summer, you can send a cold one to each household to increase the water pressure. It can be circulated to reduce costs, or a roof or cover can be attached to a position higher than the vehicle height to protect it from rain or sun. It can be opened and closed automatically by a motor when the vehicle is passing.
  • the sled part has a rail structure, etc., which has a protruding shape so that it slides on a frozen road surface but does not derail sideways.
  • Tires or the like that are in contact with the side surface of the rail may be attached to the sled in order to reduce impact or the like on a curve or the like.
  • the generation of air resistance is prevented by making the inside of the tunnel such as the tube surrounding the vehicle as vacuum as possible.
  • a hollow hole party is provided at the end of the lane so that rainwater, etc. can quickly escape into the structure on the lane that has been cooled and the liquid in the contact area is kept at a temperature with low resistance.
  • the structure on the passage allows rainwater to flow out.
  • a roof should be attached to the top to prevent rainwater and shield everything around it.
  • a transparent substance that allows light to pass through when shielding, a structure that is covered with strong plastic or connected to a PET bottle, etc., and water etc. is placed about 5 meters underground in the place where the PET bottle originally contained juice. It is circulated by inflowing from an underground tank installed in a place kept at about 15 degrees throughout the year using a pump etc. (If it is underground in a mountainous area, there is energy that naturally falls due to the pressure of gravity).
  • the space through which the car will pass will be close to 15 ° C, and if the flow rate of the liquid is adjusted, the cost of the air conditioner can be saved.
  • depressurizing the space in which a car or the like runs to reduce air resistance and bring it closer to a vacuum state install pressure-resistant reinforced plastic, glass, etc. on the outer peripheral part of the space where the car or the like passes to reinforce it. You can also. Even when water or the like is circulated by a pump, liquids such as water do not suddenly boil even when exposed to sunlight from the outside, so that the pump does not have to be operated frequently, so the energy cost is low. When energy is obtained from solar panels, etc., install the solar panels, etc.
  • water etc. kept at a constant temperature in the above-mentioned circulating underground tank can be poured over the panel, or a pipe-shaped structure made of a material that allows light to pass through is nearby.
  • the temperature of the solar panel can be controlled by flowing water of about 15 ° C from the underground tank, etc., or the solar panel can be made waterproof to improve the airtightness, and shallow water is collected in the panel. It is attached to a tub, etc., and water, etc. at about 15 ° C, which is installed about 5 meters underground, is poured there and collected in an underground tank, etc.
  • the positional relationship is such that natural groundwater flows naturally, it may be flushed and the temperature of the panel etc. is controlled.
  • a PET bottle or the like for example, the part of the drinking spout is cut out and a plurality of rectangular cubes are glued together to construct a structure in which water of an underground tank is put.
  • a structure containing water or the like is used to create a hollow structure. Then, it is possible to put a solar panel or the like whose temperature is to be controlled in the hollow part or the like. This will increase the amount of power generation by installing a similar device for solar panels installed in homes.
  • the temperature of the solar panel becomes too high, the amount of power generated will decrease.
  • water of about 15 degrees in the underground tank is used. Since the ground temperature around the underground tank differs depending on the depth, it is possible to install multiple tanks at different depths and mix the water and the like.
  • a pipe of about 5 cm in length and width (the standard scale can be changed freely) is installed in the underground tank, and a passage is installed around it to allow water to flow.
  • the above-mentioned underground tank water etc. is flowed there, and a fan etc. is attached to the end of the pipe to send the wind.
  • an electric compressor etc. is used as the power of the compressor by using the energy of the gear that moves by hydraulic power for the power of the compressor or by transmitting the rotational energy of the windmill with the gear. do.
  • a tank that stores compressed air is installed in a place with a constant ground temperature of about 5 meters underground, or it is blown into water in a tank installed 5 meters underground to raise the temperature to 15 ° C. I'll give it to you.
  • natural energy such as hydraulic power as the power of an air compression compressor and storing it in a cylinder installed underground, it is possible to take it out at any time like a battery and use it to move gears.
  • the tsunami will rush to a high place, so we will artificially create such a structure and bring the seawater to a place 10 meters or more higher than the coastline by the power of the sea wave. Then, by accumulating it, this time, the turbine of hydroelectric power generation using gravity is turned to generate electricity, and it is used as power for turning a compression compressor such as air. It is useful for human life by obtaining the potential energy of a large amount of seawater semi-permanently by using the energy of sea waves. It is also conceivable to collect compressed air in a cylinder or the like by such a method and move the cylinder to a place such as 20 meters underground, or to defer the cylinder with a diameter of 20 meters.
  • the wing part opens and closes, but it does not close completely and it opens a little, and air etc. may enter and spread it, or a plate etc. may be attached so that the wing part air of the water wheel of the tank can easily collect. ..
  • the shape of this wing is such that when a water wheel-shaped object of this shape is installed in a tunnel or the like where there is no energy for gas such as air to rise and water pressure is applied, the wing opens where it is pushed by the water flow and closes when the pressure such as the water flow weakens.
  • Some hydroelectric power plants such as large-scale dams have a head of 100 meters or pipes of hundreds of meters, but if a propeller for hydroelectric power generation is attached to the downstream part, the energy of the water flow can be sufficiently recovered and the turbine of the generator can be used. Since the head cannot be turned and a loss occurs, the head is about 10 meters, and it is distributed in thinner pipe-shaped tunnels and tubes. By doing so, the potential energy of the water stream can be efficiently recovered. Also, when compressed air is ejected from a deep place with high water pressure, when the water wheel is rotated by the force of the air climbing up, the water wheel and tank are designed by devising and rotating clockwise.
  • the door that spouts out comes to a position where it does not get caught, it can be closed by force such as a spring, or gas etc. can be passed through the hollow part in the shaft and covered with a cap made of metal etc. on the cover around it.
  • a specific part of the cap has a hole, a structure can be created in which gas can be ejected when the gas outlet of the rotating shaft comes to a specific position, and the ejection of compressed gas is linked to the position of the water turbine. It is also conceivable to control the valve so that the compressed gas is emitted only when it comes to a specific position.
  • the shaft part that transmits energy such as a water wheel can be extended sideways as it is to improve the airtightness so that water does not come out from the water tank, and it can be passed to the part where there is no water such as the tank, or once inside the tank using gears etc.
  • the rotation is transmitted to the shaft that changes direction and extends upward to reach a height such that it can come into contact with the outside air at the upper part of the tank, the energy can also be transmitted to the gear or the like to be used as a power source.
  • a number of water turbines can be connected and installed in the vertical direction. There are various ways to extend the tank deep underground and to raise it above ground.
  • Energy costs can be reduced by adopting the same structure for cars, etc., even if they are not large ones such as trains. Increase the certainty of automatic driving of cars.
  • a car or the like By connecting a car or the like to a dolly or the like installed on the same platform, the weight of the car or the like is mainly received by a sled to reduce rolling resistance.
  • a motor or the like for contacting the road surface or the like to transmit power may be incorporated in the trolley or the like.
  • There are various methods such as connecting to a power unit of a trolley or the like from the above, or providing the trolley or the like with a device for transmitting the rotational force of a wheel of an automobile or the like to the road surface or the like as needed.
  • a part of the dolly can be powered and pulled or pushed to connect with other dollies like a train or to use a powered dolly. It can also be arranged appropriately to reduce the installation cost.
  • a solar panel or the like is installed near the space where such a cooling lane or the like is installed, and the electric power from the solar panel or the like is guided from the metal part of the lane to the motor of the dolly or the like, or the lane and the electricity receiving part of the dolly come into direct contact with each other. It is also possible to use non-contact power transmission or the like so that it does not have to be.
  • a pile or the like will be installed at the rear of the bogie, and if necessary, it will be stopped promptly by lowering it on the road surface or the like.
  • the power consumption and speed during movement are maximized, such as the amount of levitation energy is small in order to adjust the direction of the levitation energy when the linear motor car is running and the energy that accelerates in the direction of travel to save electrical energy as much as possible. Adjust for an efficient balance. Even if it is not practically floating, it can run with reduced resistance because it has a warp.
  • the linear motor car may be equipped with a sled and the above power wheels. The inside of the tunnel is made into a state close to a vacuum state to eliminate loss due to wind and reduce noise. An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the heat absorbing plate of the freezer is elongated and installed there, or it is a dedicated heat absorbing device, or a large compressor etc. and water of a constant temperature underground are used. Efficient temperature control is conceivable. It is conceivable that the waste heat of the compressor or the like will be secondarily used to operate the Stirling engine or the like.
  • the compressor By installing the compressor in a space where water drawn from 5 meters underground circulates around it using pipes, etc., it can be used as a measure against heat exhaust. Even on the current road, asphalt of the road using pipes etc. to put water etc. in a tank installed 5 meters underground at the bottom of the road or passage to prevent freezing and lower the temperature of the road surface in summer.
  • a pellet stove equipped with a fuel supply device capable of automatically supplying solid fuel by finely pulverizing a raw material for fuel having a non-uniform shape and solidifying it into a nearly uniform shape into pellets has been known.
  • Patent Document 1 Japanese Patent Application Laid-Open No. 2008-224075.
  • rock wool cubes are arranged at predetermined intervals on the upper part of the rock wool slab, a nutrient solution is supplied to the plants cultivated for each rock wool cube, and the nutrient solution is fed from the side surface of the rock wool slab at the lower stage of the rock wool cube.
  • a plant growing device configured to collect and reuse waste liquid such as liquid is known (see, for example, Patent Document 2: Japanese Patent Application Laid-Open No. 05-211823).
  • an aquatic organism breeding device that is configured to improve the quality of fish meat by giving a water flow to a loop water tank that forms a closed circuit, causing the water to flow in a loop shape, and swimming the fish in the opposite direction of the water flow.
  • Patent Document 3 Japanese Patent Application Laid-Open No. 01-243933.
  • a water tank is attached to the lid, and a water supply means for supplying water from the water tank into the pot is provided, and a cooking pot that can supply water into the pot without opening the lid during the cooking period is available.
  • Patent Document 4 Jitsuzensho 58-032730.
  • a wood cutting device including a circular saw or a chainsaw having a cutting edge provided on the outer periphery of a rotary plate or the loop outer periphery of a loop-shaped chain is known (for example, Patent Document 5: Japanese Patent Application Laid-Open No. 2019-188489).
  • Patent Document 6 See Japanese Patent Application Laid-Open No. 2000-254901).
  • land is created in a valley space, the valley space is reclaimed with earth and sand, and various buildings are built on the upper surface of the reclaimed land, or it is used as agricultural land or a plaza.
  • Patent Document 7 Japanese Unexamined Patent Publication No. 2003-193688.
  • Patent Document 8 Japanese Patent Application Laid-Open No. 03-180609.
  • Patent Document 1 Japanese Patent Application Laid-Open No.
  • the fuel supply device of the present invention is a fuel supply device for charging a solid fuel having a predetermined shape into a combustion chamber, and is arranged at a higher place than the combustion chamber to specify the solid fuel.
  • a fuel storage that can store more than a quantity, a fuel guide that guides the solid fuel stored in the fuel storage to the combustion chamber, and a stopper that adjusts and stops charging the solid fuel into the combustion chamber.
  • the fuel guide has a structure in which the solid fuel can move to the combustion chamber by its own weight, and the solid fuel has a shape in which it can roll and move along the fuel guide. do. According to such a configuration, since the solid fuel has a shape that can roll and move along the fuel guide, the solid fuel can be supplied without requiring power only by operating the stopper. Further, in the plant growing apparatus as shown in Patent Document 2: Japanese Patent Application Laid-Open No. 05-211823 described above, since the waste liquid is collected from the side surface of the long rock wool slab, a large area of plant land is planted. In order to form a large number of long rock wool slabs, it is necessary to arrange them in parallel, which limits the efficiency of land use.
  • the present invention solves the above-mentioned problems, and provides a plant growing apparatus capable of constructing a large-area plantation similar to a field for open-field cultivation and recovering and utilizing fertilizer that has not been absorbed by plants. With the goal.
  • the plant growing apparatus of the present invention has a container structure having a bottom wall and a side wall to prevent liquid leakage, and is arranged at the bottom of the container structure and has a large number of flow paths.
  • a filter layer that allows the liquid to permeate downward, a soil layer that is placed above the filter layer and holds plants for growth, and a liquid that seeps out of the soil layer into the filter layer are placed below the filter layer.
  • Patent Document 3 Japanese Patent Application Laid-Open No. 01-243933, in an aquatic organism growing apparatus, a loop aquarium has a large cross section, and a rectified water flow is generated over the entire cross section. Equipment needs to be installed in the loop tank.
  • the aquatic organism growing apparatus of the present invention is an aquatic organism growing apparatus used for growing organisms in water, and is a loop-shaped loop water tank for storing living environment water in which the aquatic organisms live.
  • the loop water tank is provided with a speed adjusting device for allowing the water to move, and the loop water tank is characterized in that the width is narrowly restricted so that a plurality of the aquatic organisms cannot move in parallel. According to such a configuration, since the width of the loop aquarium is narrowed according to the width of the aquatic organism, the cross section of the loop aquarium can be narrowed to narrow the occupied space of the aquarium.
  • An object of the present invention is to solve the above-mentioned problems, and to provide a cooking pot capable of supplying a cooking liquid to the food to be cooked distributed in the pot without being biased in place.
  • the cooking pot of the present invention includes a pot body, a lid, and a liquid tank arranged on the upper part of the lid and containing a cooking liquid to be supplied to the pot body.
  • the liquid tank has an adjusting structure for adjusting the amount of the liquid supplied to the pot body
  • the lid body has the liquid supplied from the liquid tank around the lid body.
  • the pot body has a pot groove structure that guides the liquid to the inner peripheral portion of the pot body and guides the liquid supplied to the inner outer peripheral portion to the central portion of the pot body. It is characterized by that.
  • the liquid for cooking can be supplied to the inner outer peripheral portion of the pot body by the lid groove structure and guided to the central part of the pot body by the pot groove structure, so that there is no bias in location.
  • the liquid for cooking can be supplied to the pot body.
  • the wood cutting device of the present invention is a wood cutting device that carbonizes and cuts wood by a flame, and stores a nozzle for ejecting a flame and a raw material gas to be a flame in a pressurized state.
  • the present invention solves the above-mentioned problems, and is created by landfilling in a landfilled space by a method that has a space useful for human activities and is effective for global environmental conservation.
  • the purpose is to provide a land reclamation structure.
  • the land reclamation structure of the present invention is a land reclamation structure in which a flat land is created in a landfill space surrounded by slopes on at least two opposite sides, and the landfill space is formed of wood. It is characterized by having a space useful for human activities, including a living space or a space for installing infrastructure equipment in a city, inside which the timber blocks are piled up and reclaimed and surrounded by the timber blocks.
  • the wood that has absorbed and accumulated carbon dioxide in the global environment is used for landfill with the carbon dioxide accumulated inside, so that the increase of greenhouse gases is suppressed.
  • the combination structure of wood blocks can form a space useful for human activities in the landfill space, and the space can be effectively used and land can be created.
  • Patent Document 8 Japanese Patent Application Laid-Open No. 03-180609, a cover made of a vinyl chloride resin sheet or the like is placed between floating bodies floating on the surface of the sea to prevent evaporation. Yes, artificial objects with marine pollution will be thrown into the sea.
  • the typhoon control method of the present invention is a typhoon control method for preventing the expansion of typhoon force or changing the course of a typhoon, and water maintained at about 15 ° C. in an underground tank throughout the year.
  • Select one or more cooling substances from the group of cooling substances such as artificially cooled water, dry ice, and ice, and put the selected cooling substances into the typhoon generation region or the moving direction region to the region.
  • FIG. 1 shows a configuration example of the fuel supply device 1
  • FIG. 2 shows a fuel supply device having a spiral fuel guide
  • FIG. 3 (a) shows a spherical solid fuel and a fuel guide.
  • FIG. 3 (b) shows a spherical solid fuel and a fuel guide.
  • FIG. 3C Shows a wheel-shaped solid fuel and a fuel guide
  • FIG. 3C shows a solid fuel having a rotation axis and a fuel guide
  • FIG. 4 shows an external shape of the solid fuel.
  • the fuel supply device 1 is a device for charging a solid fuel 10 having a predetermined shape into a combustion chamber 11 which is a combustion place.
  • the fuel supply device 1 is arranged at a position higher than the combustion chamber 11, and is a fuel storage 12 capable of storing a predetermined quantity or more of the solid fuel 10 and a fuel guide for guiding the solid fuel 10 stored in the fuel storage 12 to the combustion chamber 11.
  • a path 13 and a stopper 14 for adjusting and stopping the input of the solid fuel 10 into the combustion chamber 11 are provided.
  • the solid fuel 10 has a shape that can roll or slide along the fuel conduit 13 and move by its own weight, such as a spherical shape, a wheel shape, or a shape having a rotation axis.
  • the fuel conduit 13 has a configuration in which the solid fuel 10 can move to the combustion chamber 11 by its own weight according to each shape of the solid fuel 10.
  • the solid fuel 10 is, for example, a combustible material such as wood or charcoal processed into a golf pole or the like.
  • the solid fuel 10 is produced by shaving a fuel such as wood or charcoal near a rolling sphere, compressing it, or crushing it to reprocess it into a spherical shape.
  • the solid fuel 10 can also be pressed by putting the raw material in a spherical mold or the like (the inside is hollow or the like in the shape of a broken ball).
  • the fuel guideway 13 may have a shape such as a pipe shape, a gutter shape, a groove shape, a slide shape, or the like, may include a curved or straight guideway, or may have a spiral shape, a continuous zigzag shape of a curve, or the like.
  • the solid fuel 10 may have a shape that allows it to move by its own weight while rolling or sliding along the fuel conduit 13.
  • the fuel guideway 13 may have an inclined structure that increases or decreases the moving speed of the solid fuel 10 that moves by its own weight.
  • the fuel supply path 13 is configured to have a window, a groove shape with an open top, a transparent material, or the like so that the solid fuel 10 on the lead path can be visually recognized, so that the fuel supply state can be known.
  • a fuel guideway 13 can have a function as an indoor furniture along with the solid fuel 10 inside the fuel guideway 13 and its movement.
  • the surface of the solid fuel 10 may be decorated with a colorful coating layer 10a in order to enhance the function as an indoor furniture.
  • the solid fuel 10 may have a coating layer 10a for moisture-proofing, combustion promotion, or aesthetics, and the moisture-proofing material or combustion promoting material may be kneaded into the solid fuel 10.
  • the solid fuel 10 may have a hole for allowing air to pass therethrough for moisture proofing, drying promotion, combustion promotion, and the like.
  • the stopper 14 is a device that can stop or pass a rolling object of the solid fuel 10 in the middle of the fuel conduit 13 (for example, electrically raises or lowers it), and controls the movement of the fuel to the combustion chamber 11 or the like. Is. At least one stopper 14 may be provided so as to block the fuel conduit 13, but it is preferable to provide a plurality of stoppers 14. In the embodiment of FIG. 1, five stoppers 14 are provided. When there is one stopper 14, it is preferable to provide it at the outlet of the fuel storage 12 which is a connection portion from the fuel storage 12 to the fuel conduit 13, for example.
  • the plant growing device 2 is arranged on a container structure 20 having a side wall 20a and a bottom wall 20b to prevent liquid leakage, a filtration layer 21 arranged at the bottom of the container structure 20, and an upper part of the filtration layer 21. , A soil layer 22 that holds the plant 24 for growth, and a recovery device 23 that recovers the liquid that seeps out below the filtration layer 21.
  • the liquid is, for example, water sprayed from above the plant 24, and is water in which a fertilizer component given to the plant 24 is dissolved.
  • the filtration layer 21 has a large number of channels, and allows the liquid leached from the soil layer 22 into the filtration layer 21 to permeate downward.
  • a porous body such as natural or artificial pumice stone or an aggregate of the porous body, for example, rock wool, for example, a natural or artificial material having a network structure such as a non-woven fabric can be used. ..
  • the filtration layer 21 may be configured by laying a large number of PET bottle-shaped blocks. The liquid moves to the bottom of the filtration layer 21 through a number of channels that are gaps between the blocks.
  • the recovery device 23 includes a pipe 23a, a pump 23b, and a processing device 23c.
  • the pipe 23a is connected to the processing device 23c via the pump 23b.
  • the recovery device 23 allows the liquid leached from the soil layer 22 into the filtration layer 21 to permeate below the filtration layer 21, and then collects the permeated liquid and collects it in the treatment device 23c.
  • the treatment device 23c of the recovery device 23 performs a treatment for reusing the fertilizer content contained in the recovered liquid.
  • the recovery device 23 may be provided with various structures for recovering the liquid in the lower part of the filtration layer 21.
  • a structure may be provided in which a large number of perforated conduits are stretched under the filtration layer 21 and connected to the pipe 23a. Further, a groove may be provided in the bottom wall 20b so that the liquid flows toward the pipe 23a. A space 21a in which a liquid collects and flows may be provided between the filtration layer 21 and the bottom wall 20b. The bottom wall 20b may be inclined so that the liquid flows toward the pipe 23a. Further, the processing device 23c may be installed below the filtration layer 21 and the bottom wall 20b so that the liquid can be recovered without using the pump 23b.
  • the container structure 20 may form a growing space whose upper part can be opened, closed, or opened and closed.
  • the growing space with an open upper part is similar to the open field, and a large area can be easily formed, and is used, for example, as a rice field. According to such a configuration, since the liquid leached from the soil layer 22 into the filtration layer 23 is permeated under the filtration layer 23 and recovered, the soil layer 22 and the filtration layer 23 are arbitrarily widened to be large. It is possible to construct an area of land, and moreover, fertilizer can be efficiently recovered and used.
  • the aquatic organism growth apparatus 3 includes a loop-shaped loop water tank 30 for accommodating the living environment water 3b in which the aquatic organism 3a lives, a water flow generator 31, and a feed to be given to the aquatic organism 3a. It is provided with a speed adjusting device 33 for generating or extinguishing a relative speed between the food holder 32 and the living environment water 3b.
  • the aquatic organism 3a is a saltwater fish
  • the living environment water 3b is seawater.
  • the loop water tank 30 is grounded underground. In the underground space, since the groundwater temperature becomes a predetermined constant temperature, it becomes easy to manage the water temperature of the loop water tank 30.
  • the water flow generator 31 generates a water flow in the direction along the shape of the loop water tank 30 in the living environment water 3b housed in the loop water tank 30.
  • the water flow generator 31 includes a pump 21a, a water absorption pipe 31b connected to the pump 31a, and a water pipe 31c.
  • the water absorption pipe 31b absorbs water from the loop water tank 30, and the water supply pipe 31c sends water to the loop water tank 30, so that the water absorption and the momentum of the water supply generate a water flow in the loop water tank 30.
  • the water flow of the loop water tank 30 may be generated by blowing compressed air into the loop water tank 30.
  • the water flow generator 31 can slow down, speed up, or reverse the water flow.
  • the loop water tank 30 is configured to have a narrow width so that a plurality of aquatic organisms 3a cannot move in parallel. In the case of a large fish, the width of the place where the fish, which is the aquatic organism 3a, is swimming is, for example, about 50 cm to 100 cm.
  • the loop aquarium 30 is configured so that the aquatic organism 3a can orbit.
  • the aquatic organism 3a is cultivated in the loop aquarium 30 in a posture of swimming against the water flow.
  • the aquatic organism 3a eats food from the food holder 32 during the orbit.
  • the speed adjusting device 33 can move the bait holder 32 in the direction of the water flow or in the direction opposite to the water flow, and can change the relative speed between the food holder 32 and the living environment water 3b. Such a change in relative velocity can also be performed by the water flow generator 31.
  • the aquatic organism breeding apparatus 3 can reduce, for example, the energy consumed by the aquatic organism 3a for feeding by adjusting the feeding method for the aquatic organism 3a by the speed adjusting device 33.
  • FIG. 8 shows a configuration for transferring aquatic organisms 3a between two aquariums 30A and 30B.
  • a communication tank 30C and a moving wall 34 are provided between the loop water tank 30 (30A) and another water tank 30B for storing the living environment water 3b.
  • the moving wall 34 By opening the moving wall 34, the two water tanks communicate with each other via the communication water tank 30C.
  • the moving wall 34 opens in a direction in which the aquatic organism 3a can move naturally. In other words, the water flow in the three tanks 30A, 30B, 30C so that the underwater organism 3a can move smoothly in a manner in which a car running on a certain highway branches off from the highway and joins another highway reason. Is connected.
  • the moving wall 34 operates in conjunction with the water flow generator 31 to smoothly connect the water flow and transfer the middle organism 3a between the two water tanks 30A and 30B.
  • 9 (a) and 9 (b) show how the aquatic organism 3a is transferred between the loop water tank 30 (30A) and another water tank 30B for storing the living environment water 3b.
  • the loop water tank 30 (30A) has a higher water level than the other water tanks 30B.
  • the two water tanks are separated by a discharge valve 35.
  • the discharge valve 35 By opening the discharge valve 35, the aquatic organism 3a can be moved together with the water flow overflowing from the loop water tank 30 (30A) to the other water tank 30B.
  • the cross section of the loop water tank 30 can be narrowed to narrow the occupied space of the water tank.
  • the energy consumption of the aquatic organism 3a to be cultivated can be suppressed and the cultivation can be promoted.
  • the cooking pot 4 includes a pot body 40, a lid 41, and a liquid tank 42 arranged above the lid 41 and containing a cooking liquid 4a to be supplied to the pot body 40.
  • the liquid tank 42 is fixed to the upper part of the lid 41 via the heat insulating material 44.
  • the cooking pot 4 is preferably used, for example, to break an egg into a pot and heat it with a lid to make a fried egg.
  • the lid 41 has a lid groove structure 41a that guides the liquid 4a supplied from the liquid tank 42 to the peripheral portion of the lid 41 and supplies it to the inner outer peripheral portion of the pot body 40.
  • the lid 41 has an outer shape with a raised center in a dome shape, and six lid groove structures 41a are provided by the roof of the dome.
  • Each lid groove structure 41a is a groove formed from the center of the lower portion of the liquid tank 42 to the vicinity of the peripheral portion of the lid 41.
  • the liquid 4a flowing out from the lower part of the liquid tank 42 flows down along the groove, then spreads from the end of the groove and enters the pot body 40 from the peripheral edge of the lid 41.
  • the number of grooves in the lid groove structure 41a is not limited to six, and may be more or less than six.
  • the pot body 40 has six pot groove structures 40a that guide the liquid 4a supplied to the inner peripheral portion thereof to the central portion of the pot body 40.
  • the number of grooves in the pot groove structure 40a is not limited to six, and may be more or less than six.
  • the depth of the pot groove structure 40a may be made deeper toward the center of the pot body 40. Further, a recess serving as a pooling place for the liquid 4a may be provided in the central portion of the pot body 40.
  • the liquid tank 42 has a cylindrical container 42a and a container lid 42b as a structure for containing the liquid 4a. Further, the liquid tank 42 has an adjusting structure 43 for adjusting the supply amount of the liquid 4a to the pot main body 40.
  • the adjusting structure 43 has an on-off valve 43a provided in the center of the lower portion of the container 42a, and a valve operating portion 43b provided in the center of the container lid 42b.
  • the on-off valve 43a has a valve that closes a plurality of discharge holes provided on the bottom surface of the container 42a from below, and a spring that presses the valve against the discharge hole and urges the valve to close the valve.
  • the on-off valve 43a is normally closed.
  • the valve operating portion 43b has a vertically movable shaft rod extending from the upper center of the container lid 42b to just above the center of the on-off valve 43a. The shaft rod is held by a spring at the position of the upper end of the movement.
  • the shaft rod moves the on-off valve 43a downward, the release hole opens, and when the hand is released, the release hole closes.
  • the on-off valve 43a is opened, the liquid 4a in the liquid tank 42 is supplied to the lid groove structure 41a, and the liquid 4a flows down along the lid groove structure 41a and is supplied to the inside of the pot body 40.
  • the valve operating portion 43b may be fixed in a state of being pushed into an arbitrary predetermined position. In the fixed state, the supply of the liquid 4a can be continued under the supply amount corresponding to the state in which the valve operating portion 43b is pushed.
  • the liquid 4a for cooking can be supplied to the inner outer peripheral portion of the pot body 40 by the lid groove structure 41a and guided to the central portion of the pot body 40 by the pot groove structure 40a.
  • the liquid for cooking can be supplied to the pot body 40 without being biased.
  • the wood cutting device 5 guides the raw material gas from the cylinder 51 to the nozzle 50, the nozzle 50 for ejecting the flame 5a, the cylinder 51 for storing the raw material gas to be the flame 5a in a pressurized state, and the ejection amount and the ejection of the raw material gas. It is equipped with a ejection adjusting device 52 that adjusts the speed.
  • the nozzle 50 is arranged and fixed on an arc using an assembly jig 53, and a plurality of nozzles 50 (three in the embodiments of FIGS. 15 and 16) are integrated. It can also be used in the same configuration.
  • Such a plurality of nozzles 50 arranged and integrated on an arc are preferably used when cutting a columnar wood 59 along a cutting line 59C along the outer periphery thereof. Further, the nozzle 50 integrated in this way can be easily and accurately cut by using a relative moving device that relatively moves the nozzle 50 and the wood 59 along the cutting line 59C set in the wood 59.
  • the relative moving device includes an arc-shaped rail 54 and a moving table 55 that moves a plurality of nozzles 50 integrated by an assembly jig 53 along the arc-shaped rail 54. At the time of cutting, the cutting operator can proceed with the cutting work simply by fixing the rail 54 to the wood 59 and moving the moving table 55 along the rail 54.
  • the moving table 55 may be moved automatically.
  • the wood cutting device 5 may be provided with cooling nozzles 50W for blowing a cooling fluid on both sides of the cutting line 59C set on the wood 59, and may be used together with the nozzle 50 at the time of cutting. Further, the wood cutting device 5 may be provided with a cooling nozzle 50W that blows a cooling fluid onto the carbonized surface of the wood 59 after cutting. By cooling the cut surface using the cooling nozzle 50W, it is possible to prevent the progress of carbonization of the cut portion due to residual heat. According to such a configuration, since the wood 59 is carbonized and cut, there is no mechanical vibration or noise, and at least the nozzle 50 needs to be supported toward a predetermined position, so that a person with weak force is required. But it is easy to use.
  • the land reclamation structure 6 is a structure in which a flat land is created in a landfill space 60 surrounded by slopes on at least two opposite sides.
  • the landfill space 60 is filled with wood blocks made of wood by stacking them, and has a space 61 useful for human activities, including a living space or a space for installing infrastructure equipment in a city, inside the landfill space surrounded by the wood blocks. ..
  • the upper part of the land preparation structure 6 can be used as a flat land 62.
  • the wood that has absorbed and accumulated carbon dioxide in the global environment is used for landfill with the carbon dioxide accumulated inside, so that the increase of greenhouse gases is suppressed. Can contribute to global environmental conservation.
  • the combined structure of wood blocks makes it possible to form a use space 61 useful for human activities in the landfill space 60, and it is possible to effectively use the space and create land.
  • This typhoon control method is a method to prevent the expansion of typhoon power or change the course of the typhoon.
  • One or more cooling substances are selected from the group of cooling substances, and the selected cooling substances are put into the typhoon generation region or the moving direction region to lower the seawater temperature in the region to prevent the expansion of the typhoon force.
  • This is a method of changing the course. According to such a configuration, the seawater temperature is lowered by using water which is a component of seawater and dry ice composed of carbon dioxide released into the air, so that the typhoon can be controlled without causing marine pollution.
  • the fuel After processing the fuel into a spherical shape, it is naturally derived or harmful gas during combustion, such as adhesive glue (such as starch made from rice glue) to make the surface of the fuel slippery and easy to store. (Preferably one that does not easily emit harmful gas) or plastic (naturally-derived raw material that does not easily emit harmful gas when burned, etc.).
  • adhesive glue such as starch made from rice glue
  • plastic naturally-derived raw material that does not easily emit harmful gas when burned, etc.
  • attach a stopper or the like to block the flow at the fuel supply passage.
  • a device for measuring the concentration of carbon monoxide in the space is also attached and linked with it so that the stopper automatically operates in an emergency to improve safety.
  • a seismograph can also be attached to automatically activate the stopper and the like. In order to maintain the airtightness so that the place where the fuel is stored and the path through which the fuel rolls etc.
  • the fuel stock should be airtight and a moisture proofing agent etc. should be provided. Separate the outside air from the fuel, etc. It can be opened when the stopper etc. passes, but it can also be closed to prevent outside air from entering other than that.
  • Appendix 2 Plant growing equipment
  • P Reuse of fertilizer, new agricultural form, etc.
  • Water, oxygen, etc. can be circulated in (such as), and by making holes in the lower part of the structure such as PET bottles, which is suitable for that, it soaks into the soil.
  • Structures such as other PET bottles are constructed so that they are divided into multiple layers, such as the function of flowing fertilizer into the space constructed with PET bottles and collecting it, and the layer that allows water, oxygen, etc. to soak underground. You can also do it. If the upper part is covered with a similar structure to create a sealed state, fertilizers, pesticides, etc. will not be scattered to the outside. Costs can be reduced by reusing fertilizers.
  • a pump is used to suck out the water or the like in it and apply pressure to eject it, or to send compressed air or the like in one direction to give the water or the like rotation in a certain direction.
  • the width of the loop-shaped structure where the fish are swimming should be about 50 cm to 100 cm (as a guide only).
  • the water flow can also be stopped.
  • An object with buoyancy with bait (which can float or move the bottom part by buoyancy) is rotated like the hands of a clock and its movement is controlled by the behavior of a fish or the like chasing it.
  • the flow of water can be turned clockwise or counterclockwise, and the direction of movement of food can be changed freely.
  • the fish can eat the bait with a little movement, and the speed of the water flow is slowed down to eliminate the movement of the bait. If you move it in the opposite direction of the water flow or put the bait in and out of the water, the fish will concentrate on it and stay in almost the same place for a long time.
  • the above method is especially applicable to fish that cannot breathe unless they move. It is also possible to put a net or the like in a place where there is water or the like and control the movement of the fish or the like in combination with the water flow and the bait. If you use power to move the bait attached to the resting place in the space where fish etc.
  • the size of the hole should be adjustable with a screw type or the like. Make a streak in the lower part of the frying pan to allow the water that has fallen down to flow there. It is also possible to make it easier to move to the center by making the center yolk and inserting 12 streaks like the hands of a clock so that the center is deep.
  • the gas in the center of the stove is the most gas and the surroundings are almost nonexistent or not at all.
  • It can also be coated with a substance such as a PET bottle that does not allow water to pass between the wood and the ground so that the wood does not rot.
  • a large dam such as the Kurobe Dam
  • the water of the dam should be put in by providing a space below the elliptical structure, by providing a space in the upper part of the structure or around the inside, or to make a small dam at the end of the dam. You can also. It can also be used to control the room temperature inside by creating a space created by using PET bottles etc.
  • the sled part has a rail structure, etc., which has a protruding shape so that it slides on a frozen road surface but does not derail sideways.
  • Tires or the like that are in contact with the side surface of the rail may be attached to a sled or the like in order to reduce impact or the like on a curve or the like, or a bank angle or the like may be attached to the rail body. It is also possible to attach another wheel etc. to the car body etc. like a course in the place of Mini 4WD and respond with it when it is a curve.
  • it is usually stored inside the vehicle and installed on the side wall of the vehicle by attaching tires etc. to the pillars etc.
  • a wing that looks like it is parallel to the side wall, etc., is provided at a certain position from the side surface of the vehicle (a structure that keeps it out all the time, and it goes out mechanically only when necessary considering air resistance, etc.
  • the structure can be such that it is stored in the floor, side, etc. of the vehicle.
  • the force that repels the left and right walls works to counter the force that the vehicle receives outward, and the vehicle can turn the curve stably. Design the route so that it descends little by little, and use gravitational energy to accelerate it. It is possible to design the line without height difference, but even if the construction cost is calculated and it becomes an up line, friction is reduced by the sled, so it is used as an energy source to move the object to the high altitude using the energy of inertia. be able to. Even if the vehicle is slightly downhill, the resistance of the contact part of the vehicle body is extremely low, so the vehicle can accelerate rapidly even if it is given a small amount of energy from the tires that are in contact with it.
  • the generation of air resistance is prevented by making the inside of the tunnel such as the tube surrounding the vehicle as vacuum as possible.
  • a hollow hole party is provided at the end of the lane so that if rainwater etc. enters the structure on the lane that is cooled and the ice etc. at the contact part is kept at a temperature with low resistance etc.
  • the structure on the passage allows rainwater to flow out.
  • the liquefied carbon dioxide or the like can be flowed in the vicinity thereof by a pipe or the like, or can be cooled.
  • a roof should be attached to the top to prevent rainwater and shield everything around it.
  • the temperature of the solar panel can be controlled by flowing water of about 15 ° C from an underground tank, etc., or the solar panel can be made waterproof to improve airtightness, and shallow water can be collected in the panel. It is attached to a tub, etc., and water, etc. at about 15 ° C, which is installed about 5 meters underground, is poured there and collected in an underground tank, etc. If the positional relationship is such that natural groundwater flows naturally, it may be flushed and the temperature of the panel etc. is controlled. Using a PET bottle or the like, for example, the part of the drinking spout is cut out and a plurality of rectangular cubes are glued together to construct a structure in which water of an underground tank is put.
  • a structure containing water or the like is used to create a hollow structure. Then, it is possible to put a solar panel or the like whose temperature is to be controlled in the hollow part or the like. This will increase the amount of power generation by installing a similar device for solar panels installed in homes. If the temperature of the solar panel becomes too high, the amount of power generated will decrease.
  • water of about 15 degrees in the underground tank is used. Since the ground temperature around the underground tank differs depending on the depth, it is possible to install multiple tanks at different depths and mix the water and the like. If necessary, the structure made of PET bottles can be moved by draining water, etc.
  • the material is light, it can be done manually, but the ceiling part should be constructed in advance so that it can be opened and closed by motor drive etc. You can also.
  • a pipe of about 5 cm in length and width (the standard scale can be changed freely) is installed in the underground tank, and a passage is installed around it to allow water to flow.
  • the above-mentioned underground tank water etc. is flowed there, and a fan etc. is attached to the end of the pipe to send the wind.
  • air or the like moves in the pipe by the force of a fan or the like, it exchanges heat with the surrounding water or the like (for example, if it is a thin material such as a PET bottle, heat is easily conducted) and is gradually cooled in the summer.
  • the temperature from the outlet of the pipe becomes close to the temperature of water from the underground tank. It is cold in the summer and warm when the air is below about 15 ° C.
  • a structure can be made by connecting PET bottles and the like. Fans such as electric fans consume less power, which saves energy.
  • the tube does not have to be straight and may be curved for distance. It is also possible to make it easier to exchange heat when a cold or the like hits by passing water or the like through a thinner pipe through the pipe. To increase the area of contact with the temperature of water, etc. around 15 ° C and the flowing air by passing it between the passage and the pipe where water, etc., which circulates through rods of metal, etc. with high thermal conductivity, is flowing.
  • a fan or the like can be attached not only to the entrance of the pipe but also to the other outlet or in the middle to improve the heat exchange efficiency.
  • This device can be installed indoors, but it can also be installed at a constant ground temperature of about 5 meters underground. Air is taken in and out with a pipe. If air is sent into the pipe through a pipe to a depth of about 15 ° C near 5 meters underground, the temperature will be the same when the air sucked in above ground goes around the underground and exits from the pipe outlet in the summer. However, it is the same regardless of the season even in winter when the soil temperature is close to 15 ° C. Water etc.
  • the above space for blowing warm air, etc. is installed underground or above ground, but considering the cost of digging underground, such as when the ground is extremely cold, use water from a tank about 5 meters underground at about 15 degrees Celsius. You may use the heat insulation system. Since the underground tank or the like has a depth that varies depending on the depth, it is possible to prepare multiple tanks and mix water or the like. If necessary, the efficiency etc. will be improved by covering the outer circumference of the device for sending air etc.
  • a space for seawater, a space for warm air to flow over it, and a plate-shaped passage made using PET bottles under it may be slightly inclined.
  • the outer circumference can be surrounded by a PET bottle or the like, and the entire inside can be pressurized with a compressor or the like.
  • this device By making this device out of transparent materials such as PET bottles, the power of sunlight can be efficiently transmitted. By laying a black material (black sheet, etc.) on the bottom of the device, energy such as sunlight can be used more efficiently. It is also possible to install this device in a space such as a solar panel where sunlight is required to prevent the temperature of the solar panel from rising and to obtain salt or the like. For the lower part, adjust the angle of the device by making a pedestal etc. with a transparent material such as a PET bottle according to the installation angle of the solar panel. Water or the like can also be used to clean dust or the like attached to the upper part of such a structure. And if you install a filter or the like that collects dust when you reach a specific point with water etc., you can reduce the trouble of cleaning.
  • Water, etc. that has passed through PET bottles, etc. is also underground. Returning to the tank, the temperature is controlled by the ground temperature. Multiple underground tanks may be installed depending on the depth. Circulating water or the like can be passed through a finer pipe to control the temperature of the solar panel or the like, or such a pipe may be installed in a device such as a solar panel in advance. Water from underground tanks, etc. is poured into pipes made of a material that allows thin light to pass through, and placed around solar panels to control the temperature. Take waterproof measures for pipes, solar panels, etc. to prevent water from entering the electric machine. It is possible to make water etc. flow through it with a thinner material made exclusively from the beginning instead of a PET bottle.
  • the temperature of a solar panel or the like is controlled by applying the outer circumference of the solar panel or the like with a wall such as thin water having a heat of about 2 cm.
  • a wall such as thin water having a heat of about 2 cm.
  • the force of gravity flows around the solar panel through a pipe and returns to the underground tank.
  • it is also possible to lower the temperature by spraying water such as mist (not necessarily mist) on the upper part of the solar panel etc. At this time as well, the water is collected and circulated using the water in the underground tank. You can also do it.
  • PET bottles are lined up side by side in an area of 20 meters long and 10-meter wide, and the ceiling is lined up side by side.
  • the fertilizer, etc. that has been sown can be reused without missing into the ground. If you sprinkle water on the soil, the fertilizer will come to the bottom PET bottle, so make some holes in that part and put it inside the PET bottle from there. It becomes a water bottle, and it is pumped out from the end of the connected PET bottles, etc., stored in an underground tank, and reused or processed to make fertilizer, etc. from there.
  • the bottom part of the structure made of PET bottles, etc.
  • Water, oxygen, etc. can be circulated in (such as), and by making holes in the lower part of the structure such as PET bottles that pass through it, it soaks into the soil.
  • Structures such as other PET bottles are constructed so that they are divided into multiple layers, such as the function of flowing fertilizer into the space constructed with PET bottles and collecting it, and the layer that allows water, oxygen, etc. to soak underground. You can also do it.
  • the upper part is covered with a similar structure to create a sealed state, fertilizers, pesticides, etc. will not be scattered to the outside. Costs can be reduced by reusing fertilizers.
  • With such a shield it is possible to prevent the diffusion of fertilizer to the outside than the shield used for agriculture and the like. For example, when a stream or the like around a house is made of concrete, it is conceivable that almost no water flows or water does not flow in the dry season.
  • the width is extremely large even though water or the like does not flow in most normal times, or that the gutters are made shallow.
  • the ground part can be used effectively as much as 1 meter, and the land next to the river is registered. It can be said that the land that can be used by the landowner is close to the size of the landowner.
  • the river does not exist as a land in the registration, it is often the case that it is not necessary to pass anything at present because the existence is set by the administrator.
  • a gutter with a width of 1.5 meters is created for a river that is normally only about 10 cm wide, the landowner will notice the problem and use the original land.
  • This underground water conveyance mechanism can also be used to cover the gutters.
  • a tunnel-shaped space is provided so that humans can barely pass through it, and rails and tires are used to pull in trolley-shaped objects.
  • the solution can be poured inside the space, and in the case of plant cultivation, a tub or the like that can hold water of the size prepared according to the growth of the roots is placed on the trolley and the space is used. It can also be moved inside.
  • Plants can be moved by putting them on pallets using rails, etc., so if you lay the rails in a sunny place or roll them with tires, you can move them to any place.
  • the part above the root of the plant can be moved with a dolly on the upper part, so the force of pulling is small.
  • a PET bottle or the like can be used to create a space for a car or the like, and the temperature of the internal space can be controlled by using circulating water or the like, and the car can be parked and a break can be taken inside.
  • it is also possible to cultivate crops by placing a structure made using PET bottles for growing crops.
  • ammonia is a substance that causes such an odor even in a trace amount, it should be considered that its influence on ecology is enormous, and it is socially important to consider it. It can also be used as a filter by using coffee grounds or the like to remove ammonia or the like inside the space.
  • the space should have a loop-like structure to prevent the fish from colliding with the wall of the space containing water, etc. by accelerating in a direction close to the vertical direction. Make a space, etc. using a PET bottle, etc., and fill it with water, etc.
  • the upper part may also be made of a material such as a PET bottle.
  • a pump is used to suck out the water or the like in it and apply pressure to eject it, or to send compressed air or the like in one direction to give the water or the like rotation in a certain direction.
  • the width of the loop-shaped structure where the fish are swimming should be about 50 cm to 100 cm (as a guide only).
  • the water flow can also be stopped.
  • An object with buoyancy with bait (which can float or move the bottom part by buoyancy) is rotated like the hands of a clock and its movement is controlled by the behavior of a fish or the like chasing it.
  • the flow of water can be turned clockwise or counterclockwise, and the direction of movement of food can be changed freely.
  • the fish can eat the bait with a little movement, and the speed of the water flow is slowed down to eliminate the movement of the bait. If you move it in the opposite direction of the water flow or put the bait in and out of the water, the fish will concentrate on it and stay in almost the same place for a long time.
  • the above method is especially applicable to fish that cannot breathe unless they move. It is also possible to put a net or the like in a place where there is water or the like and control the movement of the fish or the like in combination with the water flow and the bait. If you use power to move the bait attached to any place in the space where fish etc.
  • the bait is pulled by power along the rails arbitrarily attached to the upper or lower part of the water tank etc. or powered by a belt etc.
  • You can also make a circular motion such as sticking food etc. to it by giving it), or you can make it go straight depending on the shape of the water tank etc.
  • a tank that stores compressed air is installed in a fixed place with a ground temperature of about 5 meters underground, or it is blown into water in a tank installed 5 meters underground to raise the temperature to 15 ° C. I'll give it a try.
  • natural energy such as hydraulic power as the power of an air compression compressor and storing it in a cylinder installed underground, it is possible to take it out at any time like a battery and use it to move gears.
  • compressing air etc. with a compressor etc. once cooled in an underground tank etc. is compressed to adjust the humidity, or air etc. is stored underground to lower the humidity. It is also possible to lower the temperature of a tank containing compressed air, etc. underground.
  • the turbine of hydroelectric power generation using gravity is turned to generate electricity, and it is used as power for turning a compression compressor such as air and various power sources. It is useful for human life by obtaining the potential energy of a large amount of seawater semi-permanently by using the energy of sea waves. It is also conceivable to collect compressed air in a cylinder or the like by such a method and move the cylinder to a place such as 20 meters underground, or to defer the cylinder with a diameter of 20 meters. Then, prepare a water tank or the like filled with water or the like installed in the basement or the like.
  • Daisei gas a mixture of hydrogen and oxygen may be used separately
  • the heat causes dry ice to be expected and expands, and compressed air also
  • an upward kinetic energy is generated with respect to water pressure (gravity), and this is applied to a water wheel or the like to rotate the water wheel or the like. It recovers that energy and runs a generator.
  • the wings of the water turbine should be movable and openable. Then, when it is pushed by gas, it opens and receives the kinetic energy, and it is possible to prevent the wings of the water wheel from hitting the liquid and becoming resistance and slowing down the rotation speed as much as possible.
  • a structure is also conceivable in which the wing part opens and closes but does not close completely and opens slightly, or an object that has buoyancy even when completely closed is attached to a part of the wing and opens a little by buoyancy when it is in a specific direction.
  • the water flow or the air flow may be controlled by allowing air or the like to enter and spread the air, or by attaching a plate or the like to a specific part of the tank so that the air can easily collect.
  • the shape of this wing is such that when a water wheel-shaped object of this shape is installed in a tunnel or the like where there is no energy for gas such as air to rise and water pressure is applied, the wing opens where it is pushed by the water flow and closes when the pressure such as the water flow weakens.
  • Some hydroelectric power plants such as large-scale dams have a head of 100 meters or pipes of hundreds of meters, but if a propeller for hydroelectric power generation is attached to the downstream part, the energy of the water flow can be sufficiently recovered and the turbine of the generator can be used. Since the head cannot be turned and a loss occurs, the head is about 10 meters, and it is dispersed in thinner pipe-shaped tunnels and tubes. Etc. are installed. By doing so, the potential energy of the water stream can be efficiently recovered. Also, when compressed air is ejected from a deep place with high water pressure, when the water wheel is rotated by the force of the air climbing up, the water wheel and tank are designed by devising and rotating clockwise.
  • the door that spouts out comes to a position where it does not get caught, it can be closed by force such as a spring, or gas etc. can be passed through the hollow part in the shaft and covered with a cap made of metal etc. on the cover around it.
  • a specific part of the cap has a hole, a structure can be created in which gas can be ejected when the gas outlet of the rotating shaft comes to a specific position, and the ejection of compressed gas is linked to the position of the water turbine. It is also conceivable to control the valve so that the compressed gas is emitted only when it comes to a specific position.
  • the shaft part that transmits energy such as a water wheel can be extended sideways as it is to improve the airtightness so that water does not come out from the water tank, and it can be passed to the part where there is no water such as the tank, or once inside the tank using gears etc.
  • the rotation is transmitted to the shaft that changes direction and extends upward to reach a height such that it can come into contact with the outside air at the upper part of the tank, the energy can also be transmitted to the gear or the like to be used as a power source.
  • a number of water turbines can be connected and installed in the vertical direction. There are various ways to extend the tank deep underground and to raise it above ground.
  • the energy obtained by the buoyancy by this method is connected by a shaft and used as upward kinetic energy to lift water or the like and can be used for pumping or the like. It is also possible to divide these by 10 meters or the like, adjust the water pressure or the like, and connect a number of them in the vertical direction.
  • the valve that opens and closes may be an electronically controlled valve or an analog valve that opens and closes according to pressure with a spring or the like.
  • the devices can be connected horizontally instead of vertically, or they can be made smaller.
  • such a device can be attached to a ship or the like to provide propulsion.
  • move water etc. to a high position such as 60 meters above the ground by a pump, elevator, vehicle, etc. with the above-mentioned method intervening buoyancy, etc., and turn the pipe etc. downward from there. Water is dropped and the kinetic energy is used to power the propeller for power generation.
  • this energy can be used in various ways as power. If such a device is loaded on a ship, it can generate electricity or reduce direct propulsion energy.
  • the balls When transmitting energy from a large number of balls to a turbine for power generation, for example, the balls roll on the rails so that the balls fall into a pipe for regular fall at the upper position, and the flow is further increased by a stopper such as an open / close type. You can also control it. By making it into a ball shape and providing a slight inclination, it can be easily moved by gravity without power. Prepare multiple pipes on which balls etc. fall to receive energy, for example, make it possible to transmit energy such as balls independently to turbines etc., for example, even if you do not attach wings such as water wheels in a horizontal row By slightly shifting the position, energy such as a ball can be efficiently transmitted to wheels, a water wheel, a turbine, and the like. The return commission device, etc.
  • a number of holes for ventilation are made in the inner pipe bundled into a structure that bundles multiple thin pipes, and compressed air is sent from the high part of the pipe to water etc. in the pipe. You can also make it fall smoothly when it falls. If there is no spring water, it is possible to carry a certain amount of water or store rainwater and use it. It is also possible to move the vehicle efficiently using the above-mentioned structure that slides on the cooled ice, etc., and the rails, etc. so that it can be moved upward after accelerating using gravity energy, etc. If you make, the energy required to move water etc. to a high position can be obtained by acceleration due to gravity, so the energy cost required for propulsion power can be suppressed.
  • such a device can be attached to a ship or the like to provide propulsion.
  • the temperature around 5 meters underground in the mainland of Japan is kept at about 15 degrees throughout the year, if a tubular tunnel is grounded there, the energy required for cooling can be saved.
  • this structure is grounded to the ground and cooled, it is possible to cover the outer peripheral part of the tube with liquid water, etc., and if the outer peripheral part of the tube allows light to pass through, such as plastic or glass, the scenery can be seen from inside the vehicle. You can also see it.
  • a bogie with a function of a hydraulic jack so that the car on the bogie can be raised and lowered by hydraulic power after the car, etc. rides on the bogie. It is possible to change the height so that it does not come into contact with the ground or the like. It is also possible to install a motor etc. to obtain the driving force during running on this dolly, and a part of the dolly can be powered and pulled or pushed to connect with other dollies like a train or to use a powered dolly. It can also be arranged appropriately to reduce the installation cost. It is also possible to monitor the movement of the dolly (unit) with a sensor or install a camera or the like around the cooling lane so that the dolly can be automatically controlled unattended.
  • a solar panel or the like is installed near the space where such a cooling lane or the like is installed, and the electric power from the solar panel or the like is guided from the metal part of the lane to the motor of the dolly or the like, or the lane and the electricity receiving part of the dolly come into direct contact with each other. It is also possible to use non-contact power transmission or the like so that it does not have to be.
  • Tires, etc. made of iron
  • Tires, etc. that can be installed on the side surface of tires of automobiles, etc. to prevent their rotation from being installed on the road surface installed on trolleys, etc., or on the upper part of cooling rails without ice, etc.
  • the linear motor car may be equipped with a sled and the above power wheels. It is also possible to make the inside of the tunnel close to a vacuum state to eliminate loss due to wind and reduce noise and the like.
  • An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the sled into the cooling lane so that the sled or the like does not derail from the cooling lane, and to shape the cooling lane like a fastener so that the sled or the like does not come off and fit the sled into it.
  • the flap can be adjusted so that the air resistance increases when decelerating. It is also possible to keep the parachute out of the vehicle at the time of emergency stop. To prevent the parachute from getting entangled, if the device with the parachute is separated from the rear of the vehicle and moved along the lane, the effect of the parachute can be obtained. You can stop safely.
  • the parachute device is connected by a wire or the like through a device that moves on the cooling lane, and the device and the vehicle are also connected by a wire or the like.
  • a wheel drive or the like, a jet engine or the like, or a propeller is attached to the side surface or the rear part of the vehicle. After accelerating considerably, it jumps out as it is toward the sky, gliding from there, moving at high speed using rockets such as jet engines attached to moving objects as power, lift by wings, etc., and launching artificial satellites etc. It can also be put on track while saving fuel.
  • Water drawn from the compressor 5 meters underground circulates around it using pipes, etc., and heat exchange is performed at the required location to take measures against waste heat.
  • a pipe near it and put gas without humidity in it In order to cool the water in the cooling lane, install a pipe near it and put gas without humidity in it. Then, cold air such as dry ice can be flowed using a fan or the like, or can be sucked in by using a tank filled with carbon dioxide in a low atmospheric pressure state at the outlet of a pipe or the like. After recovering carbon dioxide at the end, it is possible to save storage space for carbon dioxide and the like by using another pipe or the like and flowing a gas for cooling or the like in the same reverse direction.
  • the fan can be installed in the middle of the pipe if necessary. The carbon dioxide recovered through the pipe can be reused as dry ice.
  • a cover such as a closed structure is attached on the cooling rail (lane) or the like, and water of about 15 degrees of underground tank water is circulated there to reduce the cost of the cooling tower.
  • the upper cover of the cooling rails, lanes, etc. is closed by electric power, etc., especially in summer so that heat is not exchanged as much as possible. Leave it to. Add functions to cooking utensils to prevent the white part from burning when baking fried eggs. Provide a space for water etc. in the upper part of the lid, etc. Remove it moderately from the hole around the lid.
  • the size of the hole should be adjustable with a screw type or the like. Make a streak in the lower part of the frying pan to allow the water that has fallen down to flow there.
  • a nozzle for ejecting water or the like at the gas outlet or the like so that the water or the like ejected from the nozzle does not heat the surroundings more than necessary. It is also possible to make the shape of the nozzle elongated so that water can be applied only to a small area. In order to increase efficiency, it is possible to cut a plurality of gases and the like in a short time. You can make it into a circle and set it around a tree, or you can cut about 70% of the tree in the shape of a crescent moon. In order to prevent humans from supporting the chainsaw, etc., put out a strong rod-shaped object that can be fixed to the tree, etc. near the handle of the chainsaw, and use bolts, etc.
  • the place where the pile etc. fell can slow down the speed of the train etc. while increasing the pressure etc. inside the pipe by contacting with the round plate etc. made at the very limit of the pipe etc. so that the pressure does not escape like an air gun. ..
  • first stake one stake (a rod-shaped object for hooking the vehicle etc. to the outside) and then the second and third trains.
  • the braking force applied to the train can be adjusted. It is possible to make holes in some parts of the pipe to release the pressure, and when the pressure reaches a certain level, the stopper etc. will come off and the pressure will be suddenly applied too much to prevent the pipe from breaking.
  • the door of the train In order to reduce the air resistance of the train, the door of the train is flipped up and the train gets on and off from there to lower the vehicle height.
  • the pressure of the pipe containing liquid such as oil or gas used for brakes exceeds a certain level, it will come off (or the structure that mechanically removes the plug (remotely removes liquid, gas, etc. inside the pipe)
  • liquid or gas may move to that section.
  • the braking force can be further increased.
  • Something like a pile When connecting a vehicle and a pressure pipe, etc., in order to mitigate the impact on the vehicle, etc., it looks like a shock absorber such as a spring or hydraulic type between the vehicle etc. and something like a pile (hooking structure). It is also possible to install a shock absorber, etc. When freezing a liquid such as water in the cooling lane, a gas such as carbon dioxide is filled in a pipe or the like and compressed or blown there. It is also possible to pressurize and send in something like vaporized dry ice, and then collect it at the end of the pipe and make it into dry ice again to make it in a very low temperature state before it hardens.
  • a special vinyl sheet or the like may be used as long as it can be installed around it to prevent the surrounding plants from growing to prevent the growth of seedlings such as cedar.
  • the cost may be different.
  • the fuel on the sphere After processing the fuel on the sphere, it is naturally derived or harmful gas at the time of combustion, such as adhesive glue (such as starch made from rice paste) to make the surface slippery and easy to store. (Preferably one that does not easily emit harmful gas) or plastic (naturally-derived raw material that does not easily emit harmful gas when burned, etc.).
  • adhesive glue such as starch made from rice paste
  • plastic naturally-derived raw material that does not easily emit harmful gas when burned, etc.
  • attach a stopper or the like to block the flow at the fuel supply passage.
  • a device for measuring the concentration of carbon monoxide in the space is also attached and linked with it so that the stopper automatically operates in an emergency to improve safety.
  • a seismograph can also be attached to automatically activate the stopper and the like. In order to maintain the airtightness so that the place where the fuel is stored and the path through which the fuel rolls etc.
  • the fuel stock should be airtight and a moisture proofing agent etc. should be provided. Separate the outside air from the fuel, etc. It can be opened when the stopper etc. passes, but it can also be closed to prevent outside air from entering other than that.
  • a space for a person with a diameter of 4 meters can be put in wood, concrete, etc. Make something like a small tower by making it up to 20 meters in height. If the height is about 2 meters, you can secure a space of about 40 square meters.
  • a wasabi medium by providing a partition inside with an object such as a PET bottle lying sideways and putting a transparent material such as marbles in the upper part so that it will not be deteriorated by water.
  • the lower part is open so that water can easily flow in.
  • Marbles and the like may be specially processed so that the inside is hollow. The size of the marbles, from large to small, can be selected according to the positional relationship with the wasabi. If you lay a PET bottle on its side and compare it to a ship, make a cut hole in the upper part so that wasabi can grow. Do not make more holes than necessary and use it to prevent pests.
  • a rail (lane) etc. is laid at the point where you want to fly while limiting the range of action by attaching a string etc. to the drone so that radio waves for identification etc. can be transmitted and received there and the drone etc. is a certain rail as a mark Allows you to fly fine. Ensuring accurate flight and safety of drones, etc. in forest areas where GPS does not reach. Use radio waves emitted from the drone, etc.
  • the position of this bicycle or the like can be determined by using a sensor or the like, and based on this, it can be remotely controlled by using a computer or the like, or automatic driving can be performed. Arrange the required number of terminals, etc.
  • the moving object reads its position speed, inclination angle of the land, etc. and operates the handle. You can also use that information. It does not have to be a fully electric bicycle, but a dedicated car may be used. Anything with horsepower such as a buggy can carry a lot of luggage. Brake operation can also be performed automatically. In the case of motor drive on a slope, it is possible to apply a force that turns the motor in the direction of burning so that it can descend slowly. By connecting PET bottles, etc., and arranging such structures on the roof of the house in a way that cools the solar panels, etc. You can also control the temperature of the. For water, etc., install a tank, etc.
  • a structure made of PET bottles (which does not have to be a PET bottle) that can stop the flow of water for a certain period of time, such as on the roof while the temperature changes, is embedded under the roof tiles. It can also be designed as such. You can prepare multiple underground tanks and connect them to different depths to finely adjust the temperature. If you can use natural cold spring water or hot spring water, use a pump etc. as it is. It can also be shed. In winter, you can prevent snow from accumulating on the roof. Further, if water is poured over the structure, the outer surface of the structure can be cleaned.
  • a structure In order to control the temperature of the space where humans are, such as a car, a structure is created in which water or the like circulates or stays around by connecting PET bottles or the like, and the temperature of the space in the structure is controlled. You can also prepare water and pour it into a structure made of PET bottles, etc., and put ice etc. made in the freezer to lower the temperature. There is an elongated tube inside the freezer as described above, and tap water or the like is put into it to freeze it. The air inside the car is made to flow in and out there by using a fan or the like, and cold air or the like is sent into the car. It is also possible to put dry ice etc. in the freezer or put it in a place where water etc.
  • the freezer etc. can be driven by a battery or solar, even if the engine etc. of the car etc. is turned off.
  • a pressure valve, a fan, or the like can be provided to release carbon dioxide or the like into the atmosphere, and the freezer can also be provided with a mechanism to release carbon dioxide or the like into the atmosphere by the same mechanism.
  • This mechanism for transport trucks and the like it is possible to control the temperature inside the vehicle or container. Create a space where humans can live by using wood and other materials that store carbon dioxide. Since wood and the like immobilize carbon dioxide in the atmosphere, they are used as space construction materials without burning.
  • This wood is used to fill the space like building blocks in places where water is accumulated, such as large dams, and to create a space where humans can work. Like the three major pyramids of Egypt, it is possible to construct wooden pillars, etc., and provide an appropriate space inside. (It is possible to create a larger space than Central Park in New York. You can also create a runway for airplanes there.) A vast space can be obtained by utilizing places such as dams in the mountains in this way. It can also be coated with a substance such as a PET bottle that does not allow water to pass between the wood and the ground so that the wood does not rot.
  • Dam water can be put in by providing a space below the structure, by providing a space in the upper part of the structure or around the inside, or by creating a small dam at the end of the dam. can. It can also be used to control the room temperature inside by creating a space created by using PET bottles etc. in the upper part of such a structure, and by shielding it from the outside air, the lower part of it can be used.
  • the air adjusted by the underground temperature is circulated from the underground space to the space for plant cultivation, etc., and the water stored about 5 meters underground also circulates at about 15 degrees. You can let it.
  • the plant cultivation space it can be sized to fit humans and can be used for purposes other than plant cultivation.
  • the plant cultivation space is separated from the outside world by a structure made of PET bottles, etc., and in order to control the temperature, humidity, etc. in it, the air etc. adjusted by the ground temperature is cultivated from the underground structure using the ground temperature.
  • the space is moved to the space through a pipe etc., but at that time only the air can be moved, and if you move the water together with the air and pour the water into the place where the juice of the PET bottle enters, it will also grow plants. It is also possible to control the temperature of such spaces. In some cases, only water can be circulated and only air can be circulated. If the cultivation space for plants is designed to be long and slender so that humans cannot enter it, the space can be effectively used and the cultivation space for multiple plants can be stacked on the upper part. From the plant cultivation space to the work place for humans to care for plants, set a long and narrow tunnel made of similar PET bottles underground or above ground on a rail or something with plants on a trolley.
  • a person who agrees with the inventor to operate the service network for the continuation of the service while mutually accommodating services in order to use the invention technology as a basic guaranty for rational social construction is entrusted to the inventor by contract. Have them manage it. Water that is maintained at about 15 degrees Celsius throughout the year in large tankers, etc. before and after the occurrence of typhoons and hurricane eyes in order to suppress the occurrence of typhoons and hurricanes and change the course. Artificially cooled water, etc. is carried to the desired point and discharged. Then, the sea surface temperature is lowered to prevent the development of typhoons and hurricanes, the expansion of power is prevented, and the course of typhoons and hurricanes is changed.
  • the principle of using ice, dry ice, cold water, etc. can also be used to deal with general rainfall fronts and rainfall phenomena.
  • the lanes, etc. are coated with a rough material, the wheels are covered with rubber, etc., and the rubber tires, etc. are covered so that the wheels, etc. that transmit power when sliding the vehicle etc. using a cooling rail etc. are surely gripped. It can also be used.
  • a magnet or the like on the lane such as a coil on the vehicle side.
  • electromagnetic force like a linear motor car to balance it with the side surface.
  • the vehicle and the linear motor car are operated as a set to generate electricity in the vehicle using the cooling lane.
  • a coil is installed around the path such as a lane where the magnets processed to roll are dropped instead of water.
  • the lane is used to generate electricity and roll to a certain place based on gravitational energy, and the gears, shafts, etc. are moved by the power using the compressed air shown above.
  • Water can be stored in the water and dropped as needed to generate energy, natural water can be stored there, or spring water can be used.
  • a pump can be used for various purposes such as pumping water to raise water. Attach magnets (electromagnets, superconducting magnets, etc.) to the tire installation surface of moving objects such as cars, their surroundings, and near or to the side of the vehicle installation surface, and attach coils to the ground, side lanes, etc. It can also generate electricity when it passes. It is also possible to combine a magnet, an electromagnet, a superconducting magnet, etc. on the coil ground of a car or the like. It can be charged to a battery connected to a coil, transmitted power, or used directly on the spot.
  • the sled part has a rail structure, etc., which has a protruding shape so that it slides on a frozen road surface but does not derail sideways.
  • Tires or the like that are in contact with the side surface of the rail may be attached to a sled or the like in order to reduce impact or the like on a curve or the like, or a bank angle or the like may be attached to the rail body. It is also possible to attach another wheel etc. to the car body etc. like a course in the place of Mini 4WD and respond with it when it is a curve.
  • it is usually stored inside the vehicle and installed on the side wall of the vehicle by attaching tires etc. to the pillars etc.
  • a wing that looks like it is parallel to the side wall, etc., is provided at a certain position from the side surface of the vehicle (a structure that keeps it out all the time, and it goes out mechanically only when necessary considering air resistance, etc.
  • the structure can be such that it is stored in the floor, side, etc. of the vehicle.
  • the force that repels the left and right walls works to counter the force that the vehicle receives outward, and the vehicle can turn the curve stably. Design the route so that it descends little by little, and use gravitational energy to accelerate it. It is possible to design the line without height difference, but even if the construction cost is calculated and it becomes an up line, friction is reduced by the sled, so it is used as an energy source to move the object to the high altitude using the energy of inertia. be able to. Even if the vehicle is slightly downhill, the resistance of the contact part of the vehicle body is extremely low, so the vehicle can accelerate rapidly even if it is given a small amount of energy from the tires that are in contact with it.
  • the generation of air resistance is prevented by making the inside of the tunnel such as the tube surrounding the vehicle as vacuum as possible.
  • a hollow hole party is provided at the end of the lane so that if rainwater etc. enters the structure on the lane that is cooled and the ice etc. at the contact part is kept at a temperature with low resistance etc.
  • the structure on the passage allows rainwater to flow out.
  • the liquefied carbon dioxide or the like can be flowed in the vicinity thereof by a pipe or the like, or can be cooled.
  • a roof should be attached to the top to prevent rainwater and shield everything around it.
  • the temperature of the solar panel can be controlled by flowing water of about 15 ° C from an underground tank, etc., or the solar panel can be made waterproof to improve airtightness, and shallow water can be collected in the panel. It is attached to a tub, etc., and water, etc. at about 15 ° C, which is installed about 5 meters underground, is poured there and collected in an underground tank, etc. If the positional relationship is such that natural groundwater flows naturally, it may be flushed and the temperature of the panel etc. is controlled. Using a PET bottle or the like, for example, the part of the drinking spout is cut out and a plurality of rectangular cubes are glued together to construct a structure in which water of an underground tank is put.
  • a structure containing water or the like is used to create a hollow structure. Then, it is possible to put a solar panel or the like whose temperature is to be controlled in the hollow part or the like. This will increase the amount of power generation by installing a similar device for solar panels installed in homes. If the temperature of the solar panel becomes too high, the amount of power generated will decrease.
  • water of about 15 degrees in the underground tank is used. Since the ground temperature around the underground tank differs depending on the depth, it is possible to install multiple tanks at different depths and mix the water and the like. If necessary, the structure made of PET bottles can be moved by draining water, etc.
  • the material is light, it can be done manually, but the ceiling part should be constructed in advance so that it can be opened and closed by motor drive etc. You can also.
  • a pipe of about 5 cm in length and width (the standard scale can be changed freely) is installed in the underground tank, and a passage is installed around it to allow water to flow.
  • the above-mentioned underground tank water etc. is flowed there, and a fan etc. is attached to the end of the pipe to send the wind.
  • air or the like moves in the pipe by the force of a fan or the like, it exchanges heat with the surrounding water or the like (for example, if it is a thin material such as a PET bottle, heat is easily conducted) and is gradually cooled in the summer.
  • the temperature from the outlet of the pipe becomes close to the temperature of water from the underground tank. It is cold in the summer and warm when the air is below about 15 ° C.
  • a structure can be made by connecting PET bottles and the like. Fans such as electric fans consume less power, which saves energy.
  • the tube does not have to be straight and may be curved for distance. It is also possible to make it easier to exchange heat when a cold or the like hits by passing water or the like through a thinner pipe through the pipe. To increase the area of contact with the temperature of water, etc. around 15 ° C and the flowing air by passing it between the passage and the pipe where water, etc., which circulates through rods of metal, etc. with high thermal conductivity, is flowing.
  • a fan or the like can be attached not only to the entrance of the pipe but also to the other outlet or in the middle to improve the heat exchange efficiency.
  • This device can be installed indoors, but it can also be installed at a constant ground temperature of about 5 meters underground. Air is taken in and out with a pipe. If air is sent into the pipe through a pipe to a depth of about 15 ° C near 5 meters underground, the temperature will be the same when the air sucked in above ground goes around the underground and exits from the pipe outlet in the summer. However, it is the same regardless of the season even in winter when the soil temperature is close to 15 ° C. Water etc.
  • the above space for blowing warm air, etc. is installed underground or above ground, but considering the cost of digging underground, such as when the ground is extremely cold, use water from a tank about 5 meters underground at about 15 degrees Celsius. You may use the heat insulation system. Since the underground tank or the like has a depth that varies depending on the depth, it is possible to prepare multiple tanks and mix water or the like. If necessary, the efficiency etc. will be improved by covering the outer circumference of the device for sending air etc.
  • a space for seawater, a space for warm air to flow over it, and a plate-shaped passage made using PET bottles under it may be slightly inclined.
  • the outer circumference can be surrounded by a PET bottle or the like, and the entire inside can be pressurized with a compressor or the like.
  • this device By making this device out of transparent materials such as PET bottles, the power of sunlight can be efficiently transmitted. By laying a black material (black sheet, etc.) on the bottom of the device, energy such as sunlight can be used more efficiently. It is also possible to install this device in a space such as a solar panel where sunlight is required to prevent the temperature of the solar panel from rising and to obtain salt or the like. For the lower part, adjust the angle of the device by making a pedestal etc. with a transparent material such as a PET bottle according to the installation angle of the solar panel. Water or the like can also be used to clean dust or the like attached to the upper part of such a structure. And if you install a filter or the like that collects dust when you reach a specific point with water etc., you can reduce the trouble of cleaning.
  • Water, etc. that has passed through PET bottles, etc. is also underground. Returning to the tank, the temperature is controlled by the ground temperature. Multiple underground tanks may be installed depending on the depth. Circulating water or the like can be passed through a finer pipe to control the temperature of the solar panel or the like, or such a pipe may be installed in a device such as a solar panel in advance. Water from underground tanks, etc. is poured into pipes made of a material that allows thin light to pass through, and placed around solar panels to control the temperature. Take waterproof measures for pipes, solar panels, etc. to prevent water from entering the electric machine. It is possible to make water etc. flow through it with a thinner material made exclusively from the beginning instead of a PET bottle.
  • the temperature of a solar panel or the like is controlled by applying the outer circumference of the solar panel or the like with a wall such as thin water having a heat of about 2 cm.
  • a wall such as thin water having a heat of about 2 cm.
  • the force of gravity flows around the solar panel through a pipe and returns to the underground tank.
  • it is also possible to lower the temperature by spraying water such as mist (not necessarily mist) on the upper part of the solar panel etc. At this time as well, the water is collected and circulated using the water in the underground tank. You can also do it.
  • PET bottles are lined up side by side in an area of 20 meters long and 10-meter wide, and the ceiling is lined up side by side.
  • the fertilizer, etc. that has been sown can be reused without missing into the ground. If you sprinkle water on the soil, the fertilizer will come to the bottom PET bottle, so make some holes in that part and put it inside the PET bottle from there. It becomes a water bottle, and it is pumped out from the end of the connected PET bottles, etc., stored in an underground tank, and reused or processed to make fertilizer, etc. from there.
  • the bottom part of the structure made of PET bottles, etc.
  • Water, oxygen, etc. can be circulated in (such as), and by making holes in the lower part of the structure such as PET bottles that pass through it, it soaks into the soil.
  • Structures such as other PET bottles are constructed so that they are divided into multiple layers, such as the function of flowing fertilizer into the space constructed with PET bottles and collecting it, and the layer that allows water, oxygen, etc. to soak underground. You can also do it.
  • the upper part is covered with a similar structure to create a sealed state, fertilizers, pesticides, etc. will not be scattered to the outside. Costs can be reduced by reusing fertilizers.
  • With such a shield it is possible to prevent the diffusion of fertilizer to the outside than the shield used for agriculture and the like. For example, when a stream or the like around a house is made of concrete, it is conceivable that almost no water flows or water does not flow in the dry season.
  • the width is extremely large even though water or the like does not flow in most normal times, or that the gutters are made shallow.
  • the ground part can be used effectively as much as 1 meter, and the land next to the river is registered. It can be said that the land that can be used by the landowner is close to the size of the landowner.
  • the river does not exist as a land in the registration, it is often the case that it is not necessary to pass anything at present because the existence is set by the administrator.
  • a gutter with a width of 1.5 meters is created for a river that is normally only about 10 cm wide, the landowner will notice the problem and use the original land.
  • This underground water conveyance mechanism can also be used to cover the gutters.
  • a tunnel-shaped space is provided so that humans can barely pass through it, and rails and tires are used to pull in trolley-shaped objects.
  • the solution can be poured inside the space, and in the case of plant cultivation, a tub or the like that can hold water of the size prepared according to the growth of the roots is placed on the trolley and the space is used. It can also be moved inside.
  • Plants can be moved by putting them on pallets using rails, etc., so if you lay the rails in a sunny place or roll them with tires, you can move them to any place.
  • the part above the root of the plant can be moved with a dolly on the upper part, so the force of pulling is small.
  • a PET bottle or the like can be used to create a space for a car or the like, and the temperature of the internal space can be controlled by using circulating water or the like, and the car can be parked and a break can be taken inside.
  • it is also possible to cultivate crops by placing a structure made using PET bottles for growing crops.
  • ammonia is a substance that causes such an odor even in a trace amount, it should be considered that its influence on ecology is enormous, and it is socially important to consider it. It can also be used as a filter by using coffee grounds or the like to remove ammonia or the like inside the space.
  • the space should have a loop-like structure to prevent the fish from colliding with the wall of the space containing water, etc. by accelerating in a direction close to the vertical direction. Make a space, etc. using a PET bottle, etc., and fill it with water, etc.
  • the upper part may also be made of a material such as a PET bottle.
  • a pump is used to suck out the water or the like in it and apply pressure to eject it, or to send compressed air or the like in one direction to give the water or the like rotation in a certain direction.
  • the width of the loop-shaped structure where the fish are swimming should be about 50 cm to 100 cm (as a guide only).
  • the water flow can also be stopped.
  • An object with buoyancy with bait (which can float or move the bottom part by buoyancy) is rotated like the hands of a clock and its movement is controlled by the behavior of a fish or the like chasing it.
  • the flow of water can be turned clockwise or counterclockwise, and the direction of movement of food can be changed freely.
  • the fish can eat the bait with a little movement, and the speed of the water flow is slowed down to eliminate the movement of the bait. If you move it in the opposite direction of the water flow or put the bait in and out of the water, the fish will concentrate on it and stay in almost the same place for a long time.
  • the above method is especially applicable to fish that cannot breathe unless they move. It is also possible to put a net or the like in a place where there is water or the like and control the movement of the fish or the like in combination with the water flow and the bait. If you use power to move the bait attached to any place in the space where fish etc.
  • the bait is pulled by power along the rails arbitrarily attached to the upper or lower part of the water tank etc. or powered by a belt etc.
  • You can also make a circular motion such as sticking food etc. to it by giving it), or you can make it go straight depending on the shape of the water tank etc.
  • a tank that stores compressed air is installed in a fixed place with a ground temperature of about 5 meters underground, or it is blown into water in a tank installed 5 meters underground to raise the temperature to 15 ° C. I'll give it a try.
  • natural energy such as hydraulic power as the power of an air compression compressor and storing it in a cylinder installed underground, it is possible to take it out at any time like a battery and use it to move gears.
  • compressing air etc. with a compressor etc. once cooled in an underground tank etc. is compressed to adjust the humidity, or air etc. is stored underground to lower the humidity. It is also possible to lower the temperature of a tank containing compressed air, etc. underground.
  • the turbine of hydroelectric power generation using gravity is turned to generate electricity, and it is used as power for turning a compression compressor such as air and various power sources. It is useful for human life by obtaining the potential energy of a large amount of seawater semi-permanently by using the energy of sea waves. It is also conceivable to collect compressed air in a cylinder or the like by such a method and move the cylinder to a place such as 20 meters underground, or to defer the cylinder with a diameter of 20 meters. Then, prepare a water tank or the like filled with water or the like installed in the basement or the like.
  • Daisei gas a mixture of hydrogen and oxygen may be used separately
  • the heat causes dry ice to be expected and expands, and compressed air also
  • an upward kinetic energy is generated with respect to water pressure (gravity), and this is applied to a water wheel or the like to rotate the water wheel or the like. It recovers that energy and runs a generator.
  • the wings of the water turbine should be movable and openable. Then, when it is pushed by gas, it opens and receives the kinetic energy, and it is possible to prevent the wings of the water wheel from hitting the liquid and becoming resistance and slowing down the rotation speed as much as possible.
  • a structure is also conceivable in which the wing part opens and closes but does not close completely and opens slightly, or an object that has buoyancy even when completely closed is attached to a part of the wing and opens a little by buoyancy when it is in a specific direction.
  • the water flow or the air flow may be controlled by allowing air or the like to enter and spread the air, or by attaching a plate or the like to a specific part of the tank so that the air can easily collect.
  • the shape of this wing is such that when a water wheel-shaped object of this shape is installed in a tunnel or the like where there is no energy for gas such as air to rise and water pressure is applied, the wing opens where it is pushed by the water flow and closes when the pressure such as the water flow weakens.
  • Some hydroelectric power plants such as large-scale dams have a head of 100 meters or pipes of hundreds of meters, but if a propeller for hydroelectric power generation is attached to the downstream part, the energy of the water flow can be sufficiently recovered and the turbine of the generator can be used. Since the head cannot be turned and a loss occurs, the head is about 10 meters, and it is dispersed in thinner pipe-shaped tunnels and tubes. Etc. are installed. By doing so, the potential energy of the water stream can be efficiently recovered. Also, when compressed air is ejected from a deep place with high water pressure, when the water wheel is rotated by the force of the air climbing up, the water wheel and tank are designed by devising and rotating clockwise.
  • the door that spouts out comes to a position where it does not get caught, it can be closed by force such as a spring, or gas etc. can be passed through the hollow part in the shaft and covered with a cap made of metal etc. on the cover around it.
  • a specific part of the cap has a hole, a structure can be created in which gas can be ejected when the gas outlet of the rotating shaft comes to a specific position, and the ejection of compressed gas is linked to the position of the water turbine. It is also conceivable to control the valve so that the compressed gas is emitted only when it comes to a specific position.
  • the shaft part that transmits energy such as a water wheel can be extended sideways as it is to improve the airtightness so that water does not come out from the water tank, and it can be passed to the part where there is no water such as the tank, or once inside the tank using gears etc.
  • the rotation is transmitted to the shaft that changes direction and extends upward to reach a height such that it can come into contact with the outside air at the upper part of the tank, the energy can also be transmitted to the gear or the like to be used as a power source.
  • a number of water turbines can be connected and installed in the vertical direction. There are various ways to extend the tank deep underground and to raise it above ground.
  • the energy obtained by the buoyancy by this method is connected by a shaft and used as upward kinetic energy to lift water or the like and can be used for pumping or the like. It is also possible to divide these by 10 meters or the like, adjust the water pressure or the like, and connect a number of them in the vertical direction.
  • the valve that opens and closes may be an electronically controlled valve or an analog valve that opens and closes according to pressure with a spring or the like.
  • the devices can be connected horizontally instead of vertically, or they can be made smaller.
  • such a device can be attached to a ship or the like to provide propulsion.
  • move water etc. to a high position such as 60 meters above the ground by a pump, elevator, vehicle, etc. with the above-mentioned method intervening buoyancy, etc., and turn the pipe etc. downward from there. Water is dropped and the kinetic energy is used to power the propeller for power generation.
  • this energy can be used in various ways as power. If such a device is loaded on a ship, it can generate electricity or reduce direct propulsion energy.
  • the balls When transmitting energy from a large number of balls to a turbine for power generation, for example, the balls roll on the rails so that the balls fall into a pipe for regular fall at the upper position, and the flow is further increased by a stopper such as an open / close type. You can also control it. By making it into a ball shape and providing a slight inclination, it can be easily moved by gravity without power. Prepare multiple pipes on which balls etc. fall to receive energy, for example, make it possible to transmit energy such as balls independently to turbines etc., for example, even if you do not attach wings such as water wheels in a horizontal row By slightly shifting the position, energy such as a ball can be efficiently transmitted to wheels, a water wheel, a turbine, and the like. The return commission device, etc.
  • a number of holes for ventilation are made in the inner pipe bundled into a structure that bundles multiple thin pipes, and compressed air is sent from the high part of the pipe to water etc. in the pipe. You can also make it fall smoothly when it falls. If there is no spring water, it is possible to carry a certain amount of water or store rainwater and use it. It is also possible to move the vehicle efficiently using the above-mentioned structure that slides on the cooled ice, etc., and the rails, etc. so that it can be moved upward after accelerating using gravity energy, etc. If you make, the energy required to move water etc. to a high position can be obtained by acceleration due to gravity, so the energy cost required for propulsion power can be suppressed.
  • such a device can be attached to a ship or the like to provide propulsion.
  • the temperature around 5 meters underground in the mainland of Japan is kept at about 15 degrees throughout the year, if a tubular tunnel is grounded there, the energy required for cooling can be saved.
  • this structure is grounded to the ground and cooled, it is possible to cover the outer peripheral part of the tube with liquid water, etc., and if the outer peripheral part of the tube allows light to pass through, such as plastic or glass, the scenery can be seen from inside the vehicle. You can also see it.
  • a bogie with a function of a hydraulic jack so that the car on the bogie can be raised and lowered by hydraulic power after the car, etc. rides on the bogie. It is possible to change the height so that it does not come into contact with the ground or the like. It is also possible to install a motor etc. to obtain the driving force during running on this dolly, and a part of the dolly can be powered and pulled or pushed to connect with other dollies like a train or to use a powered dolly. It can also be arranged appropriately to reduce the installation cost. It is also possible to monitor the movement of the dolly (unit) with a sensor or install a camera or the like around the cooling lane so that the dolly can be automatically controlled unattended.
  • a solar panel or the like is installed near the space where such a cooling lane or the like is installed, and the electric power from the solar panel or the like is guided from the metal part of the lane to the motor of the dolly or the like, or the lane and the electricity receiving part of the dolly come into direct contact with each other. It is also possible to use non-contact power transmission or the like so that it does not have to be.
  • Tires, etc. made of iron
  • Tires, etc. that can be installed on the side surface of tires of automobiles, etc. to prevent their rotation from being installed on the road surface installed on trolleys, etc., or on the upper part of cooling rails without ice, etc.
  • the linear motor car may be equipped with a sled and the above power wheels. It is also possible to make the inside of the tunnel close to a vacuum state to eliminate loss due to wind and reduce noise and the like.
  • An energy transfer part using magnetic force in a linear motor car and a sled device may be installed separately.
  • the sled into the cooling lane so that the sled or the like does not derail from the cooling lane, and to shape the cooling lane like a fastener so that the sled or the like does not come off and fit the sled into it.
  • the flap can be adjusted so that the air resistance increases when decelerating. It is also possible to keep the parachute out of the vehicle at the time of emergency stop. To prevent the parachute from getting entangled, if the device with the parachute is separated from the rear of the vehicle and moved along the lane, the effect of the parachute can be obtained. You can stop safely.
  • the parachute device is connected by a wire or the like through a device that moves on the cooling lane, and the device and the vehicle are also connected by a wire or the like.
  • a wheel drive or the like, a jet engine or the like, or a propeller is attached to the side surface or the rear part of the vehicle. After accelerating considerably, it jumps out as it is toward the sky, gliding from there, moving at high speed using rockets such as jet engines attached to moving objects as power, lift by wings, etc., and launching artificial satellites etc. It can also be put on track while saving fuel.
  • Water drawn from the compressor 5 meters underground circulates around it using pipes, etc., and heat exchange is performed at the required location to take measures against waste heat.
  • a pipe near it and put gas without humidity in it In order to cool the water in the cooling lane, install a pipe near it and put gas without humidity in it. Then, cold air such as dry ice can be flowed using a fan or the like, or can be sucked in by using a tank filled with carbon dioxide in a low atmospheric pressure state at the outlet of a pipe or the like. After recovering carbon dioxide at the end, it is possible to save storage space for carbon dioxide and the like by using another pipe or the like and flowing a gas for cooling or the like in the same reverse direction.
  • the fan can be installed in the middle of the pipe if necessary. The carbon dioxide recovered through the pipe can be reused as dry ice.
  • a cover such as a closed structure is attached on the cooling rail (lane) or the like, and water of about 15 degrees of underground tank water is circulated there to reduce the cost of the cooling tower.
  • the upper cover of the cooling rails, lanes, etc. is closed by electric power, etc., especially in summer so that heat is not exchanged as much as possible. Leave it to. Add functions to cooking utensils to prevent the white part from burning when baking fried eggs. Provide a space for water etc. in the upper part of the lid, etc. Remove it moderately from the hole around the lid.
  • the size of the hole should be adjustable with a screw type or the like. Make a streak in the lower part of the frying pan to allow the water that has fallen down to flow there.
  • a nozzle for ejecting water or the like at the gas outlet or the like so that the water or the like ejected from the nozzle does not heat the surroundings more than necessary. It is also possible to make the shape of the nozzle elongated so that water can be applied only to a small area. In order to increase efficiency, it is possible to cut a plurality of gases and the like in a short time. You can make it into a circle and set it around a tree, or you can cut about 70% of the tree in the shape of a crescent moon. In order to prevent humans from supporting the chainsaw, etc., put out a strong rod-shaped object that can be fixed to the tree, etc. near the handle of the chainsaw, and use bolts, etc.
  • the place where the pile etc. fell can slow down the speed of the train etc. while increasing the pressure etc. inside the pipe by contacting with the round plate etc. made at the very limit of the pipe etc. so that the pressure does not escape like an air gun. ..
  • first stake one stake (a rod-shaped object for hooking the vehicle etc. to the outside) and then the second and third trains.
  • the braking force applied to the train can be adjusted. It is possible to make holes in some parts of the pipe to release the pressure, and when the pressure reaches a certain level, the stopper etc. will come off and the pressure will be suddenly applied too much to prevent the pipe from breaking.
  • the door of the train In order to reduce the air resistance of the train, the door of the train is flipped up and the train gets on and off from there to lower the vehicle height.
  • the pressure of the pipe containing liquid such as oil or gas used for brakes exceeds a certain level, it will come off (or the structure that mechanically removes the plug (remotely removes liquid, gas, etc. inside the pipe)
  • liquid or gas may move to that section.
  • the braking force can be further increased.
  • Something like a pile When connecting a vehicle and a pressure pipe, etc., in order to mitigate the impact on the vehicle, etc., it looks like a shock absorber such as a spring or hydraulic type between the vehicle etc. and something like a pile (hooking structure). It is also possible to install a shock absorber, etc. When freezing a liquid such as water in the cooling lane, a gas such as carbon dioxide is filled in a pipe or the like and compressed or blown there. It is also possible to pressurize and send in something like vaporized dry ice, and then collect it at the end of the pipe and make it into dry ice again to make it in a very low temperature state before it hardens.
  • a special vinyl sheet or the like may be used as long as it can be installed around it to prevent the surrounding plants from growing to prevent the growth of seedlings such as cedar.
  • the cost may be different.
  • the fuel on the sphere After processing the fuel on the sphere, it is naturally derived or harmful gas at the time of combustion, such as adhesive glue (such as starch made from rice paste) to make the surface slippery and easy to store. (Preferably one that does not easily emit harmful gas) or plastic (naturally-derived raw material that does not easily emit harmful gas when burned, etc.).
  • adhesive glue such as starch made from rice paste
  • plastic naturally-derived raw material that does not easily emit harmful gas when burned, etc.
  • attach a stopper or the like to block the flow at the fuel supply passage.
  • a device for measuring the concentration of carbon monoxide in the space is also attached and linked with it so that the stopper automatically operates in an emergency to improve safety.
  • a seismograph can also be attached to automatically activate the stopper and the like. In order to maintain the airtightness so that the place where the fuel is stored and the path through which the fuel rolls etc.
  • the fuel stock should be airtight and a moisture proofing agent etc. should be provided. Separate the outside air from the fuel, etc. It can be opened when the stopper etc. passes, but it can also be closed to prevent outside air from entering other than that.
  • a space for a person with a diameter of 4 meters can be put in wood, concrete, etc. Make something like a small tower by making it up to 20 meters in height. If the height is about 2 meters, you can secure a space of about 40 square meters.
  • a wasabi medium by providing a partition inside with an object such as a PET bottle lying sideways and putting a transparent material such as marbles in the upper part so that it will not be deteriorated by water.
  • the lower part is open so that water can easily flow in.
  • Marbles and the like may be specially processed so that the inside is hollow. The size of the marbles, from large to small, can be selected according to the positional relationship with the wasabi. If you lay a PET bottle on its side and compare it to a ship, make a cut hole in the upper part so that wasabi can grow. Do not make more holes than necessary and use it to prevent pests.
  • a rail (lane) etc. is laid at the point where you want to fly while limiting the range of action by attaching a string etc. to the drone so that radio waves for identification etc. can be transmitted and received there and the drone etc. is a certain rail as a mark Allows you to fly fine. Ensuring accurate flight and safety of drones, etc. in forest areas where GPS does not reach. Use radio waves emitted from the drone, etc.
  • the position of this bicycle or the like can be determined by using a sensor or the like, and based on this, it can be remotely controlled by using a computer or the like, or automatic driving can be performed. Arrange the required number of terminals, etc.
  • the moving object reads its position speed, inclination angle of the land, etc. and operates the handle. You can also use that information. It does not have to be a fully electric bicycle, but a dedicated car may be used. Anything with horsepower such as a buggy can carry a lot of luggage. Brake operation can also be performed automatically. In the case of motor drive on a slope, it is possible to apply a force that turns the motor in the direction of burning so that it can descend slowly. By connecting PET bottles, etc., and arranging such structures on the roof of the house in a way that cools the solar panels, etc. You can also control the temperature of the. For water, etc., install a tank, etc.
  • a structure made of PET bottles (which does not have to be a PET bottle) that can stop the flow of water for a certain period of time, such as on the roof while the temperature changes, is embedded under the roof tiles. It can also be designed as such. You can prepare multiple underground tanks and connect them to different depths to finely adjust the temperature. If you can use natural cold spring water or hot spring water, use a pump etc. as it is. It can also be shed. In winter, you can prevent snow from accumulating on the roof. Further, if water is poured over the structure, the outer surface of the structure can be cleaned.
  • a structure In order to control the temperature of the space where humans are, such as a car, a structure is created in which water or the like circulates or stays around by connecting PET bottles or the like, and the temperature of the space in the structure is controlled. You can also prepare water and pour it into a structure made of PET bottles, etc., and put ice etc. made in the freezer to lower the temperature. There is an elongated tube inside the freezer as described above, and tap water or the like is put into it to freeze it. The air inside the car is made to flow in and out there by using a fan or the like, and cold air or the like is sent into the car. It is also possible to put dry ice etc. in the freezer or put it in a place where water etc.
  • the freezer etc. can be driven by a battery or solar, even if the engine etc. of the car etc. is turned off.
  • a pressure valve, a fan, or the like can be provided to release carbon dioxide or the like into the atmosphere, and the freezer can also be provided with a mechanism to release carbon dioxide or the like into the atmosphere by the same mechanism.
  • This mechanism for transport trucks and the like it is possible to control the temperature inside the vehicle or container. Create a space where humans can live by using wood and other materials that store carbon dioxide. Since wood and the like immobilize carbon dioxide in the atmosphere, they are used as space construction materials without burning.
  • This wood is used to fill the space like building blocks in places where water is accumulated, such as large dams, and to create a space where humans can work. Like the three major pyramids of Egypt, it is possible to construct wooden pillars, etc., and provide an appropriate space inside. (It is possible to create a larger space than Central Park in New York. You can also create a runway for airplanes there.) A vast space can be obtained by utilizing places such as dams in the mountains in this way. It can also be coated with a substance such as a PET bottle that does not allow water to pass between the wood and the ground so that the wood does not rot.
  • Dam water can be put in by providing a space below the structure, by providing a space in the upper part of the structure or around the inside, or by creating a small dam at the end of the dam. can. It can also be used to control the room temperature inside by creating a space created by using PET bottles etc. in the upper part of such a structure, and by shielding it from the outside air, the lower part of it can be used.
  • the air adjusted by the underground temperature is circulated from the underground space to the space for plant cultivation, etc., and the water stored about 5 meters underground also circulates at about 15 degrees. You can let it.
  • the plant cultivation space it can be sized to fit humans and can be used for purposes other than plant cultivation.
  • the plant cultivation space is separated from the outside world by a structure made of PET bottles, etc., and in order to control the temperature, humidity, etc. in it, the air etc. adjusted by the ground temperature is cultivated from the underground structure using the ground temperature.
  • the space is moved to the space through a pipe etc., but at that time only the air can be moved, and if you move the water together with the air and pour the water into the place where the juice of the PET bottle enters, it will also grow plants. It is also possible to control the temperature of such spaces. In some cases, only water can be circulated and only air can be circulated. If the cultivation space for plants is designed to be long and slender so that humans cannot enter it, the space can be effectively used and the cultivation space for multiple plants can be stacked on the upper part. From the plant cultivation space to the work place for humans to care for plants, set a long and narrow tunnel made of similar PET bottles underground or above ground on a rail or something with plants on a trolley.
  • a person who agrees with the inventor to operate the service network for the continuation of the service while mutually accommodating services in order to use the invention technology as a basic guaranty for rational social construction is entrusted to the inventor by contract. Have them manage it. Water that is maintained at about 15 degrees Celsius throughout the year in large tankers, etc. before and after the occurrence of typhoons and hurricane eyes in order to suppress the occurrence of typhoons and hurricanes and change the course. Artificially cooled water, etc. is carried to the desired point and discharged. Then, the sea surface temperature is lowered to prevent the development of typhoons and hurricanes, the expansion of power is prevented, and the course of typhoons and hurricanes is changed.
  • the principle of using ice, dry ice, cold water, etc. can also be used to deal with general rainfall fronts and rainfall phenomena.
  • the lanes, etc. are coated with a rough material, the wheels are covered with rubber, etc., and the rubber tires, etc. are covered so that the wheels, etc. that transmit power when sliding the vehicle etc. using a cooling rail etc. are surely gripped. It can also be used.
  • a magnet or the like on the lane such as a coil on the vehicle side.
  • electromagnetic force like a linear motor car to balance it with the side surface.
  • the vehicle and the linear motor car are operated as a set to generate electricity in the vehicle using the cooling lane.
  • a coil is installed around the path such as a lane where the magnets processed to roll are dropped instead of water.
  • the lane is used to generate electricity and roll to a certain place based on gravitational energy, and the gears, shafts, etc. are moved by the power using the compressed air shown above.
  • Water can be stored in the water and dropped as needed to generate energy, natural water can be stored there, or spring water can be used.
  • a pump can be used for various purposes such as pumping water to raise water. Attach magnets (electromagnets, superconducting magnets, etc.) to the tire installation surface of moving objects such as cars, their surroundings, and near or to the side of the vehicle installation surface, and attach coils to the ground, side lanes, etc. It can also generate electricity when it passes. It is also possible to combine a magnet, an electromagnet, a superconducting magnet, etc. on the coil ground of a car or the like. It can be charged to a battery connected to a coil, transmitted power, or used directly on the spot.
  • FIG. 21, FIG. 22, FIG. 22, FIG. 23, FIG. 24, FIG. 25, FIG. 26, FIG. 27, FIG. 28, FIG. 29, FIG. 30, FIG. 31, FIG. 32, FIG. 33, FIG. 34, FIG. 35, FIG. 36. 37, 38, 39 are devices and the like.
  • Claim 1 An energy converter, a liquid tank that stores liquids, A plurality of gas receiving portions provided in the liquid tank in the vertical direction and which can rotate or move up and down, and In the liquid tank, a nozzle that ejects compressed gas from below the gas receiving portion located at the bottom, and A gas cylinder that stores the compressed gas as a primary energy source and sends the compressed gas to the nozzle.
  • An output means for outputting the kinetic energy of rotation or upward movement generated in the gas receiving portion by the buoyancy generated by the gas receiving portion receiving the compressed gas ejected from the nozzle as secondary energy to the outside of the liquid tank.
  • An energy conversion device including a recovery device for returning gas from the liquid tank to the gas cylinder.
  • Claim 2 The energy conversion device according to claim 1, wherein the gas cylinder is connected to a compressed gas generator that generates a compressed gas using natural energy.
  • Claim 3 The gas cylinder expands in volume by using dry ice (butane or the like. Substitutes having similar properties. Note that the liquefaction pressure differs depending on the substance) due to the heat of combustion of a mixed gas containing hydrogen and oxygen.
  • the gas receiving portion is configured to have movable wings that can be opened and closed, and when it receives the compressed gas ejected from the nozzle and generates buoyancy, it is in an open state, and when it does not receive the compressed gas and does not generate buoyancy.
  • the energy conversion device according to any one of claims 1 to 3, wherein the gas is in a closed state.
  • Claim 5 The gas cylinder ejects compressed gas from the nozzle via a valve whose opening and closing is controlled, and the valve is controlled to open only when the gas receiving portion comes to a predetermined position.
  • the energy conversion device according to any one of claims 1 to 4, wherein the energy conversion device is characterized.
  • the output means is characterized by comprising a power mechanism including a belt in which a plurality of gas receiving portions are distributed and arranged in a ring shape, and a gear on which the belt is hung and rotated by the movement of the belt.
  • the energy conversion device according to any one of 1 to 5.
  • Claim 7 A water-sealed tank having a communication opening that communicates with the inside of the liquid tank and an upper opening that opens upward is provided on the lateral outside of the liquid tank.
  • the output means is provided with a coupler and a shaft for transmitting the rotation of the gear of the power mechanism in a space where the liquid tank and the water-sealed tank communicate with each other, and the coupler and the shaft are used.
  • Claim 8 The gas cylinder is pressurized with a compressed gas generator that generates the compressed gas by passing a gas pipe through a heat exchanger to heat the gas, or a floating ring-shaped O-ring whose internal pressure can be adjusted as a sealing material.
  • the energy conversion device according to any one of claims 1 to 7, wherein the energy conversion device is connected to a compressed gas generator that generates the compressed gas by pressurizing the gas with a piston.
  • Claim 9 The energy conversion device according to any one of claims 1 to 8, wherein a plurality of the liquid tanks are provided in parallel or in series with respect to the gas cylinder.
  • Claim 10 It ’s a car body moving device.
  • the sleds for gliding on ice provided on the front, back, left and right of the lower surface of the vehicle body,
  • a rail provided on the road surface that guides the sled to slide on ice, and a rail on which the ice surface is formed by freezing the liquid.
  • a vehicle body moving device including a drive device for traveling the vehicle body.
  • the drive device is a wheel powered by an engine or a motor mounted on a vehicle body.
  • Claim 12 The vehicle body moving device according to claim 10, wherein the drive device is a jet propulsion device or a propeller propulsion device mounted on a vehicle body.
  • the drive device is a linear motor.
  • the vehicle body moving device according to claim 10 wherein the line forming the magnetic field of the linear motor has an ice surface formed by freezing the liquid so as to cover the surface thereof.
  • Claim 14 The vehicle body moving device according to claim 10, wherein the drive device is a linear motor and wheels obtained by an engine or a motor mounted on the vehicle body.
  • Claim 15 It is an energy utilization device that uses the energy of constant temperature groundwater.
  • An underground tank that is buried in a predetermined underground where a predetermined constant temperature groundwater can be obtained and stores the constant temperature groundwater,
  • a structure formed by communicating and connecting a plurality of hollow tubes made of a light-transmitting material to form a hollow portion inside.
  • a pipe and a circulation pump that circulate the constant temperature groundwater stored in the underground tank to the hollow tube of the structure.
  • the cavity formed by the structure is provided with a fan for blowing air from one end side to the other end side thereof.
  • An energy utilization device characterized in that the cavity is used as an air conditioning space or an energy exchange device installation space.
  • Claim 16 The energy utilization device according to claim 15, wherein the energy exchange device is a solar panel.
  • Claim 18 It is an energy utilization device that uses constant temperature underground energy.
  • a hollow pipe reciprocating between the underground and the surface of the earth at a predetermined temperature and a predetermined depth, The hollow pipe is equipped with a fan that sends air on the ground surface side.
  • An energy utilization device characterized in that air sent to the hollow pipe by the fan and cooled or heated in the underground at a predetermined depth is used for air conditioning on the ground surface side.
  • Claim 19 It is an energy utilization device that uses sunlight energy.
  • a structure formed by communicating and connecting a plurality of hollow tubes made of a light-transmitting material to form a hollow portion inside.
  • the cavity formed by the structure is provided with a fan that blows air from one opening to the other.
  • the structure is installed in a place where it can receive sunlight, and seawater is passed through the bottom surface side of the cavity in a plan view, and the wind from the fan is passed through the upper surface of the seawater to promote evaporation of the seawater to obtain salt.
  • Characteristic energy utilization device Characteristic energy utilization device.
  • An energy utilization device that uses compressed air for air conditioning.
  • An air compression compressor powered by natural energy An underground tank that stores the air compressed by the air compression compressor, Equipped with An energy utilization device characterized in that compressed air stored in the tank and regulated in temperature is sent to an air-conditioned space through a pipe.
  • the space should have a loop-like structure to prevent the fish from colliding with the wall of the space containing water, etc. by accelerating in a direction close to the vertical direction.
  • the upper part may also be made of a material such as a PET bottle.
  • a pump is used to suck out the water or the like in it and apply pressure to eject it, or to send compressed air or the like in one direction to give the water or the like rotation in a certain direction.
  • the width of the loop-shaped structure where the fish are swimming should be about 50 cm to 100 cm (as a guide only).
  • a device that moves on the cooling rail is used as a dolly, and an automobile or the like is placed on it.
  • the dolly can be attached to one that can run on its own and one that can only run in combination. Even if the dolly is not operated by humans, it can be automatically driven by computer control so that humans can reach the destination without doing anything.
  • Three-way valve 41d, 41i, 41j ... Four-way valve 52 ... Pressurized piston 52b ... Sealing material 54, 60, 90 ... Heat exchanger 61, 62 ... Shutter 67 ... Input unit 70 ... Buffer tank 70a ... First buffer tank 70b ... Second buffer tank 100 ... Insulation material 150 ... Pedestal 400 ... Sub tank

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Other Liquid Machine Or Engine Such As Wave Power Use (AREA)

Abstract

Un dispositif de conversion d'énergie selon la présente invention comprend : un réservoir de liquide; une partie de réception de gaz qui peut tourner ou se déplacer dans une direction verticale, une pluralité de celles-ci étant disposées le long de la direction longitudinale à l'intérieur du réservoir de liquide; une partie d'entrée qui reçoit une entrée d'une substance servant de source d'énergie primaire dans la partie inférieure à l'intérieur du réservoir de liquide; un moyen de sortie qui délivre, à l'extérieur du réservoir de liquide en tant qu'énergie secondaire, une énergie cinétique pour la rotation ou le mouvement vers le haut qui se produit dans les parties de réception de gaz suite à une force de flottabilité se produisant dans les parties de réception de gaz lors de la réception d'un gaz correspondant à la substance; et un dispositif de récupération qui récupère la substance à partir du réservoir de liquide et la renvoie à la partie d'entrée. Le réservoir de liquide comprend un premier réservoir de liquide et un second réservoir de liquide. Le dispositif de conversion d'énergie comprend : un tuyau qui guide le gaz qui s'accumule dans la partie supérieure du premier réservoir de liquide vers le second réservoir de liquide; un réservoir tampon qui est relié au tuyau; une vanne tout-ou-rien qui est disposée au niveau de l'entrée et de la sortie du réservoir tampon; et un mécanisme de réglage de pression qui détecte la pression interne de la partie supérieure du premier réservoir de liquide et la pression interne du réservoir tampon, et régule la pression de l'entrée de gaz vers la partie inférieure du second réservoir de liquide par l'ouverture et la fermeture de la vanne tout-ou-rien en fonction des pressions internes détectées.
PCT/JP2021/026054 2020-12-09 2021-07-11 Invention apportant des avancées dans la vie quotidienne WO2022130669A1 (fr)

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06123273A (ja) * 1991-02-26 1994-05-06 Kinuo Okamoto 回転装置及び回転力取出装置
JP2011074915A (ja) * 1995-02-03 2011-04-14 Independent Natural Resources Inc 天然ガスパイプラインの過剰圧力を使用して動力を発生する方法

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06123273A (ja) * 1991-02-26 1994-05-06 Kinuo Okamoto 回転装置及び回転力取出装置
JP2011074915A (ja) * 1995-02-03 2011-04-14 Independent Natural Resources Inc 天然ガスパイプラインの過剰圧力を使用して動力を発生する方法

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