WO2024098960A1 - Générateur à pompage d'eau sans consommation d'énergie, son procédé de fabrication et son application - Google Patents

Générateur à pompage d'eau sans consommation d'énergie, son procédé de fabrication et son application Download PDF

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Publication number
WO2024098960A1
WO2024098960A1 PCT/CN2023/119271 CN2023119271W WO2024098960A1 WO 2024098960 A1 WO2024098960 A1 WO 2024098960A1 CN 2023119271 W CN2023119271 W CN 2023119271W WO 2024098960 A1 WO2024098960 A1 WO 2024098960A1
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Prior art keywords
water
pipe
air
pump
outlet
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PCT/CN2023/119271
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English (en)
Chinese (zh)
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任文林
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任文林
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Publication of WO2024098960A1 publication Critical patent/WO2024098960A1/fr

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Classifications

    • 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
    • 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
    • F03B17/04Alleged perpetua mobilia

Definitions

  • the present invention belongs to the field of pumped power generation, especially energy-free pumped power generation and its manufacturing method and application field.
  • the priority document of this application is 202211487161.9.
  • the known technology lacks a simple structure, high performance, low cost energy-free pumping generator, especially a machine for lifting still water without energy consumption.
  • Still water refers to water that has no water level and does not flow.
  • the known methods use atmospheric pressure and/or the elastic force of enclosed air and the potential energy of the water level and/or gravity to pump water. Due to their complex structure, low efficiency and high cost, they have not been widely used. For example, a water hammer pump.
  • the known agriculture lacks simple, efficient and low-cost energy-free water-lifting methods and devices, and has always lacked irrigation water, and a large amount of power water-lifting is used. Water conservancy is the lifeline of agriculture and directly determines grain production.
  • the known technology does not make full use of the energy generated by the combination of gas and liquid in the pipeline, there is no separate air pump product or air pump engine and its application, no air pump engine is used for transportation or air pump tools or power generation, no air pump is used for equipment such as hydraulic presses or steam turbines, and no air pump is used to drive the fluid in the pipe, or the fluid in the pipe drives materials and workpieces.
  • the hydropower generation equipment refers to a machine that generates electricity with water power as the power source, including a turbine and a generator.
  • Fluid laws are the technical background and facts of the present invention, which can help people understand the present invention.
  • This application first discloses some relevant contents as follows. The following contents are more exciting.
  • gravity can energy-free water pump.
  • a long thin water pipe is erected upward, with a one-way valve at the bottom, inserted into the water source; the upper part is connected in parallel with a short thick water pipe.
  • the water outlet at the bottom of the thick water pipe is higher than the water source.
  • a water inlet can be set on the thick water pipe. Water is poured into the thick water pipe and the thin water pipe through the water inlet. The amount of water in the thick water pipe is greater than the amount of water in the thin water pipe, and the gravity of the water in the thick water pipe is greater than the gravity of the water in the thin water pipe. Turn on the water outlet switch of the thick water pipe, the water in the thick water pipe flows out, and a negative pressure is generated in the pipe.
  • the water can be other fluids, such as petroleum, mortar, mud, or oil or water carrying materials.
  • the potential refers to the position height and potential energy.
  • the thick water pipe is also called an outlet pipe, a gravity pipe.
  • the thick water pipe can also be a water tank or a water tank.
  • the uniqueness of the gravity-free energy-saving pump is that gravity pulls up the potential. It can be triggered once and do unlimited work. That is, after pouring water once, it can run forever and can pump water unlimitedly without energy consumption.
  • Law 2 Two fluids work wonders. Using two fluids simultaneously in a pipe can produce amazing wonders.
  • the gravity energy-free water pump described in Law 1 can be used in combination with gravity and compressed air.
  • An air chamber is set above the thick water pipe or an air pump is connected to it, which becomes an "air gravity energy-free water pump" composed of two fluids. It only needs to be injected once to have the original power, and water can be pumped unlimitedly without energy consumption. It is better to pressurize the flowing water and air in the pipeline at the same time than to pressurize only one kind of flowing water or air. It can obtain a greater force effect and obtain larger, higher and more violent water output.
  • the air pump is an independent air chamber, which is a device that uses compressed air to drive flowing water. There are two ways to drive flowing water with compressed air. One is that the compressed air is above the flowing water and pushes the flowing water downward. The other is that the compressed air is on the side of the flowing water and pushes the flowing water from the side.
  • Law 4 Accumulation is converted into elastic force.
  • the air in the tube can convert the pressure accumulation of man-made or flowing water into elastic force.
  • the known water hammer pump requires the flowing water to have a certain height, and the flowing water needs to compress the air repeatedly. In fact, it is not necessary. As long as the air is compressed once and the original power is given once, the air can always maintain the original power and can lift the flowing water infinitely. Air can enter the flowing water.
  • the piston device includes a piston or a diaphragm or an air bag or a slider or a one-way valve, which can block the air and the flowing water and prevent air loss.
  • compressed air in a pipe can continuously apply all the accumulated and transformed elastic forces to one point, to the contact surface with the flowing water, and can maintain pressure forever.
  • the air elastic force can apply all its pressure. Even if there is only 1 mm of looseness or movement on the contact surface, the air elastic force can exert its performance and apply all the pressure.
  • the pressure on the contact surface is the greatest pressure of all air.
  • Air can amplify external forces. The way air amplifies external forces is: give once, infinite return. Once obtained, keep it forever. Give a motive force, return infinite driving forces. Therefore, air is a good medium for applying pressure to flowing water, obtaining amplified pressure, and obtaining added value. Flowing water is different from air.
  • the unit area pressure on the contact surface of flowing water is the same as the unit area pressure on all its pipe wall contact areas.
  • the contact surface of 1 square centimeter is subjected to 100 kilograms of air pressure.
  • the total pressure is greater than the pressure.
  • the total pressure can do work and is a driving force. The greater the total pressure, the greater the work. Investing one force and getting N forces is a great profit.
  • Flowing water is a good medium. Compressed air maintains pressure infinitely and without energy consumption. The total pressure of flowing water is also infinite and without energy consumption. Both are infinite and energy-free. One always maintains pressure, and the other infinitely amplifies pressure.
  • the two wonderful properties of air and flowing water are a great treasure trove. We can combine the two wonderful properties of air and flowing water and make use of them. There is clean, cheap, and infinitely abundant energy here. Humans do not need to build any wind power stations or hydroelectric power stations to obtain endless, clean, and cheap energy. Humans have discovered an extremely huge new treasure, an energy treasure that combines gas and liquid. The omnipotent God has long given this wonderful gift to humans, but humans have never discovered it. Ancient air, ancient water, and ancient yet fresh new energy.
  • Law 7 air pump. Compressed air presses the water, and the water in the pipe generates negative pressure, which attracts water from the source, and the work of lifting water is done without energy consumption.
  • the compressed air in the air pump is the motive force. That is, the original power. As long as a motive force is given, it can have unlimited motive force.
  • the air pump includes a pump body and a connecting port, and can also have a connecting pipe, a connecting switch and a pressure gauge.
  • the air pump connects to the pipeline through the connecting port, applies pressure to the pipeline, and pushes the liquid to move toward the outlet or in the direction of less resistance.
  • the air pump is a closed space with compressed air inside. After connecting to the pipeline, water cannot enter and air cannot come out, so the air and elastic force in the air pump will not decrease.
  • the air pump can be a straight pipe, inserted into the pipeline or connected to the pipeline outside the pipeline.
  • the water flows out continuously, the negative pressure is continuously generated, and the water from the water source is continuously replenished, realizing unlimited energy-free pumping.
  • the air pump can be installed above or on the side of the pipe.
  • the air pump is an independent air chamber.
  • Elastomers can be used instead of compressed air.
  • Elastomers include springs or rubber or elastic hoses or elastic devices.
  • the elastomer can be equipped with a piston device.
  • the air pump engine includes an air pump, a pipeline and a fluid.
  • the air pump engine uses compressed air in the air pump to push the fluid in the pipe.
  • the fluid includes gas or liquid or semi-fluid or a mixture of gas and liquid.
  • the gas includes air.
  • the liquid includes water or oil.
  • the fluid can drive materials or workpieces.
  • the materials include sand or soil or corn or potato or iron powder or magnetic powder or plastic particles.
  • the workpiece includes a connecting rod or a screw rod or a blade wheel or equivalent.
  • the pipeline can be a straight pipe with a water outlet and a water inlet.
  • the water inlet is equipped with a one-way valve and inserted into the water source.
  • the air pump is connected to the pipeline through the connecting port, pressurizes the pipeline, and pushes the fluid to move toward the water outlet or in the direction of less resistance.
  • the air pump can be a straight pipe located in a water pipe.
  • the connection means that the compressed air in the air pump is connected to the water and can transmit pressure to the water.
  • the air pump is outside the water pipe and the water pipe is located in the middle of the air pump.
  • a water pipe is erected upwards, the water inlet at the bottom is inserted into the water source, and one or more air pumps are connected to the water pipe, so that water can be lifted without energy consumption.
  • the height of water lifting can reach one atmosphere of pressure. Water column or above.
  • a vertical upward water pipe the lower water inlet is inserted into the water source, and one or more air pumps are connected to the water pipe outside the water pipe, so that water can be lifted without energy consumption.
  • a water pipe is set horizontally, one end is connected to the water source, and one or more air pumps are connected to the water pipe, so that the water in the pipe can be driven without energy consumption.
  • the pressure of the compressed air in the air pump is balanced and static with the water pressure in the pipe. At this time, if the water is pressurized, the flowing water is added or pressed, the air can only be compressed, so that the volume becomes smaller and the density becomes larger.
  • the air pump can also be used as the energy source of the hydraulic press to drive the hydraulic press to move.
  • the compressed air of the air pump can also be used to extract groundwater or oil. Or the compressed air of the air pump drives the fluid in the pipe, and the fluid in the pipe drives the material or workpiece in the pipe.
  • the known hydraulic press does not have a very good effect in pressing water and is not energy-saving.
  • the compressed air of the air pump is used as power to press water, and work can be done once and for all without energy consumption.
  • the air pump engine can be used in transportation tools such as ships or machinery and equipment such as punching machines, and can drive turbines or impellers. On the turbine or impeller shaft, there are gears or pulleys or sprockets to output power.
  • the air pump engine can be installed horizontally or vertically to the horizontal installation or at an inclined angle; the magic of the air pump engine is that it can work without energy consumption forever after giving compressed air, and can lift water or generate electricity without energy consumption indefinitely.
  • Air can amplify the force of flowing water.
  • the way of amplification is: the flowing water gives the air a force, and the air can output N forces.
  • Amplification means increase.
  • the multiple of air amplifying the force is proportional to the amount used and the volume and/or density of air.
  • the multiple of running water amplifying the air pressure is proportional to the volume of running water. Air exerts one force, running water generates N forces. There is no upper limit to the multiple of running water amplifying the air pressure. Air and running water are a great combination. Air density constitutes elasticity, and elasticity constitutes pressure. Running water has pressure. The specific gravity and kinetic energy of running water are greater than those of air, so it can compress air. As long as there is running water in the pipe, the running water will press the air, and the air will gain elasticity, which will exert counter pressure on the running water.
  • Compressed air can continuously apply pressure to each section of flowing water, forcing the flowing water to become thinner, faster and more powerful, and flow out in the direction of the water outlet with low pressure.
  • the pressure of compressed air is continuously converted into flowing water at the water outlet.
  • the pressure of flowing water can create and maintain compressed air.
  • the pressure of compressed air can create and maintain flowing water.
  • the water in the pipe flows out, and the water in the water source is replenished.
  • the flowing water generates negative pressure, which attracts the water in the water source to rise and become new flowing water.
  • the new flowing water generates new pressure, and the air generates new counterpressure to the new pressure. The two forces work together to push the flowing water out.
  • Compressed air applies the same pressure to the outlet pipe and the inlet pipe, pushing the flowing water to flow toward the outlet with less resistance.
  • the total pressure of flowing water is potential force, including gravity and inertia.
  • Compressed air can push flowing water larger than its own volume to a high position to flow out, and the height of the push is proportional to the volume and density of the compressed air.
  • the elastic force of the compressed air is greater than the resistance such as the gravity of the water in the outlet pipe and the atmospheric pressure at the outlet, the water in the outlet pipe can be continuously pushed to a height above the atmospheric pressure water column and flow out.
  • the air pressure is greater than the resistance in the outlet pipe, continuous water flow in the pipe can be generated. The flowing water compresses the air, and the air has nowhere to escape, so it can only accumulate pressure and transform into elastic force.
  • the elastic force of the air is about the same as the pressure of the flowing water, and they are in balance.
  • the two forces squeeze and push the flowing water to the outlet to flow out.
  • the air pushes the flowing water, and the flowing water cannot accumulate pressure, so it can only flow out from the outlet to release the pressure.
  • Even the smallest flowing water can compress the air.
  • Even a drop of water can compress the air. Above one atmospheric pressure, it can cause and maintain the flowing water.
  • the larger the flowing water the more compressed the air; the more compressed the air, the larger the flowing water.
  • the flowing water generates elastic force, and the elastic force generates flowing water, and the interaction repeats in an infinite cycle. Each section of the flowing water can compress the air, and each section of the air participates in pushing the flowing water.
  • the elastic force of the air can generate flowing water, and the flowing water can generate gravity, attracting the water source to rise continuously.
  • the compressed air must be in a position where it is not carried out by the vortex of the flowing water in order to be retained in the pipe and to have the above performance.
  • the compressed air pushes the flowing water in the outlet pipe to the outlet and generates an equivalent negative pressure on the inlet pipe.
  • the equivalent negative pressure attracts the water in the water source.
  • the atmospheric pressure cooperates with the equivalent negative pressure like a shadow, and presses the water in the water source into the inlet pipe without missing a drop, so that it rises to the height of the atmospheric pressure water column to replenish the water flowing out. In this process, the compressed air always maintains sufficient elastic pressure to keep the water flowing continuously.
  • Sufficient air pressure can press the water in the outlet pipe to a height above N times the atmospheric pressure water column, and continue to flow out from the outlet.
  • the direction of the outlet of the outlet pipe can be upward to increase the water lifting height.
  • Compressed air can continuously apply its accumulated, converted, and all elastic pressure to the flowing water at a point to keep the water flowing continuously.
  • Flowing water is a continuous water flow.
  • the continuous water flow generates continuous negative pressure, and the continuous negative pressure attracts the water in the water source to rise continuously. As long as there is water flowing in the outlet pipe, no matter it is intermittent or continuous, continuous negative pressure will be generated in the pipe, and continuous negative pressure will produce continuous water pumping.
  • the above-mentioned gravity energy-free water pump can be provided with an air chamber above the water outlet pipe, or an air pump can be provided outside to be connected with the water outlet pipe.
  • Turn on the water outlet switch and water flows out from the outlet.
  • the water in the water source rises to the outlet of the water inlet pipe, and falls into the outlet pipe through the air chamber to supplement the flowing water. Raise the flowing water to above the atmospheric pressure water column.
  • Still water can transmit gravity.
  • Flowing water can transmit gravity and power. Water with movement is flowing water.
  • the water in the hydraulic press moves when working, but it is not connected to the atmosphere, and it is still water that does work.
  • the large piston or small piston of the known hydraulic press can be transformed into a connecting rod for transmission or a push-pull rod for push-pull.
  • a spiral blade or impeller can be set in the pipeline, and the flowing water in the pipe drives the spiral blade or impeller to rotate and output power.
  • the power of the upward pipeline outlet comes from the pressure of the air in the pipe or external force.
  • the power of the horizontal pipeline outlet includes gravity and the pressure of the air in the pipe or external force. As long as the pressure of the pipeline outlet is greater than the atmospheric pressure, water can flow out.
  • a valve can be installed on the outer shell of the air chamber to pressurize the air chamber and create artificial compressed air.
  • the peculiarity of the air energy pump is that it can do unlimited work after one triggering. That is, by injecting water once or/and compressing air once, you can pump water or generate electricity in unlimited quantities without energy consumption, breaking the law of energy conservation.
  • the outlet of the siphon can be higher than the inlet.
  • the outlet of the siphon can be higher than the inlet, that is, higher than the water source.
  • the water outlet of the thick water pipe can be higher than the water inlet of the thin water pipe, and higher than the water source.
  • Law 12 Multiple up-and-down combinations. Multiple energy-free pumps can be combined up and down to lift water over 100 meters without energy consumption.
  • the energy-free pumps mentioned above can be combined into multiple units to lift water to 20 meters, 60 meters, 100 meters, or more than 1,000 meters. They can lift the water from the Yangtze River estuary by several thousand meters and return it to its source. They can lift water without energy consumption in unlimited quantities and generate electricity without energy consumption in unlimited quantities.
  • the present invention will further describe the technical background in combination with the specific content.
  • the technical background content of the present invention can be used to support the claims.
  • the purpose of the present invention is to provide an energy-free water-lifting generator and its manufacturing method and application, as well as an air pump and an air pump engine, to solve the deficiencies described in the above technical background.
  • the content of the present invention is as follows.
  • An energy-free water pump comprising a pipeline, characterized in that the pipeline is provided with an air chamber 4 or an air pump 41;
  • the water pump includes a pipeline, the pipeline has an air chamber 4 or an air pump 41, and the air chamber 4 or the air pump 41 contains air; or the air is compressed air; or the compressed air is artificially compressed air; or the artificially compressed air refers to compressed air that is artificially pressurized into the air chamber 4 or the air pump 41 by an air compressor, an air pump or a hair dryer, and is not generated by the water flow pressure in the pipe;
  • the water pump comprises a vertical upward water pipe 27, the upper end of the water pipe 27 is a water outlet, the lower end is a water inlet with a one-way valve, inserted into the water source, one or more air pumps 41 are arranged inside or outside the water pipe 27, and the water is lifted for 10 meters, 20 meters or more than 100 meters;
  • the water pump comprises a water tank 1, a water outlet pipe 10 and a water inlet pipe 11; the water inlet pipe 11 is provided with a one-way valve and inserted into a water source 14; the water outlet of the water inlet pipe 11 is at the upper part of the water tank 1; the water in the water outlet pipe 10 is at the lower part of the water tank 1, the water in the water tank is more than the water in the water inlet pipe, the water in the water tank 1 flows down from the water outlet pipe 10 to drive the hydroelectric power generation equipment 15; or the water tank 1 is provided with an air chamber 4 or an air pump 41;
  • the energy-free water pump comprises an inlet pipe 11 and an outlet pipe 10, wherein the water in the inlet pipe 11, the water in the outlet pipe 10 and the water in the water source 14 are connected as one, and the water in the outlet pipe 10 is more than the water in the inlet pipe 11;
  • the pipeline includes a vertical upward thin water pipe, the lower part of which is provided with a one-way valve and inserted into the water source, the upper part of the thin water pipe is connected in parallel with the thick water pipe, and the lower part of the thick water pipe is provided with a water outlet and a water outlet switch;
  • the water outlet is 3 meters, 6 meters, 9 meters or more above the water source;
  • the amount of water in the thick water pipe is greater than the amount of water in the thin water pipe, and the gravity of the water in the thick water pipe is greater than the gravity of the water in the thin water pipe;
  • the thick water pipe is a water storage tank 1 or a water tank;
  • the water pump comprises an inlet pipe 11, an outlet pipe 10 and an air pipe 45, and the three pipes are vertically arranged in parallel;
  • the air pipe 45 is located between the inlet pipe 11 and the outlet pipe 10;
  • the air pipe 45 is a pipe with an air chamber 4;
  • the air pipe 45 has an air chamber 4 at the top and water 2 at the bottom;
  • the outlet of the inlet pipe 11 is above the air pipe 45;
  • the inlet of the outlet pipe 10 is below the air pipe 45, and the water in the water source 14 rises from the inlet pipe 11 to a certain height and then falls to the bottom of the air pipe 45, and then enters the outlet pipe 10 from the bottom of the air pipe 45 and rises upward;
  • the water in the three pipes is three sections with different up and down directions; or the water flow direction of the outlet pipe 10 is upward and flows out at a certain height; or the outlet pipe 10 has a downward extension pipe, the water in the outlet pipe 10 first flows upward, changes direction after reaching a certain height, and flows downward along the extension pipe
  • An energy-free pumping generator comprising an energy-free pump and a hydroelectric power generation device, wherein the hydroelectric power generation device refers to a machine that generates electricity using water power as a motive force, including a turbine and a generator, and is characterized in that the energy-free pump is combined with the hydroelectric power generation device to pump water and generate electricity.
  • a pipeline wherein there is a fluid in the pipeline, wherein the fluid includes water, and wherein the pipeline is characterized by having an air chamber 4 or an air pump 41;
  • the pipeline is provided with an air chamber 4 or an air pump 41, and there is air in the air chamber 4 or the air pump 41; or the air is compressed air; or the compressed air is artificially compressed air; or the artificially compressed air refers to compressed air that is artificially pressurized into the air chamber 4 or the air pump 41 by an air compressor, an air pump or a hair dryer, and is not compressed air generated by the water flow pressure in the pipe;
  • the pipeline includes a vertical upward water pipe 27, the upper end of the water pipe 27 is a water outlet, the lower end is a water inlet with a one-way valve, inserted into the water source, one or more air pumps 41 are arranged inside or outside the water pipe 27, and the water is lifted by 10 meters, 20 meters or more than 100 meters;
  • the pipeline includes a water outlet pipe 10 and a water inlet pipe 11; the water inlet pipe 11 is provided with a one-way valve and inserted into a water source 14; there is a water storage tank 1, and the water outlet 8 of the water inlet pipe 11 is located at the upper part of the water storage tank 1; the water inlet of the water outlet pipe 10 is located at the lower part of the water storage tank 1, and the water in the water storage tank 1 flows down from the water outlet pipe 10 to drive the hydroelectric power generation equipment 15; or the water storage tank 1 is provided with an air chamber 4 or an air pump 41;
  • the pipeline includes an inlet pipe 11 and an outlet pipe 10, wherein the water in the inlet pipe 11, the water in the outlet pipe 10 and the water in the water source 14 are connected together, and the water in the outlet pipe 10 is more than the water in the inlet pipe 11;
  • the pipeline includes a vertical upward thin water pipe, the lower part of which is provided with a one-way valve and inserted into the water source, the upper part of the thin water pipe is connected in parallel with the thick water pipe, and the lower part of the thick water pipe is provided with a water outlet and a water outlet switch;
  • the water outlet is 3 meters, 6 meters, 9 meters or more above the water source;
  • the amount of water in the thick water pipe is greater than the amount of water in the thin water pipe, and the gravity of the water in the thick water pipe is greater than the gravity of the water in the thin water pipe;
  • the thick water pipe is a water storage tank 1 or a water tank;
  • the pipeline includes an inlet pipe 11, an outlet pipe 10 and an air pipe 45, and the three pipes are vertically arranged in parallel;
  • the air pipe 45 is located between the inlet pipe 11 and the outlet pipe 10;
  • the air pipe 45 refers to a pipeline with an air chamber 4;
  • the air pipe 45 has an air chamber 4 at the top and water 2 at the bottom;
  • the outlet of the inlet pipe 11 is above the air pipe 45;
  • the inlet of the outlet pipe 10 is below the air pipe 45, and the water in the water source 14 rises from the inlet pipe 11 to a certain height and then falls to the bottom of the air pipe 45, and then enters the outlet pipe 10 from the bottom of the air pipe 45 and rises upward;
  • the flowing water in the three pipes In three different up and down directions; or the water flow direction of the outlet pipe 10 is upward and flows out at a certain height; or the outlet pipe 10 has a downward extension pipe, and the water in the outlet pipe 10 first flows upward, changes direction after reaching a certain height, and flows downward along the extension
  • An air pump comprising a pump body, and may also have a connecting pipe and/or a connecting switch and/or an instrument, wherein the pump body contains compressed air, the pump body has a connecting port or the connecting pipe has a connecting port, and the pump body is connected to the pipeline through the connecting port; the connection means that after the air pump is connected to the pipeline, the compressed air in the air pump communicates with the fluid in the pipeline, and the pressure of the compressed air can be transmitted to the fluid in the pipeline;
  • the air pump 41 is a container for air; there is air in the air pump 41; or the air is compressed air; or the compressed air is artificially compressed air; or the artificially compressed air refers to compressed air that is artificially pressurized into the air pump 41 by an air compressor, an air pump or a hair dryer, and is not compressed air generated by water flow pressure in the pipe; or the pipe includes a water pipe; the inside of the pipe refers to the inside of the pipe;
  • the air pump or the compressed air is an elastic body;
  • the elastic body includes a spring or elastic rubber or elastic plastic or elastic hose or elastic device; or the elastic body is provided with a piston device;
  • the piston device includes a piston or a diaphragm or a slider or a one-way valve;
  • the air pump is provided with the piston device; or the instrument includes a pressure gauge; or the air is other gas;
  • the air pump is a known oxygen cylinder or gas tank or air compressor or is modified from a known product with equivalent functions;
  • the air pump 41 is installed inside or outside the pipeline, or installed on the periphery of the pipeline, including above, below or on the side;
  • the pump body is cylindrical, cubic, spherical, a round tube, a square tube, an elliptical tube, or a flexible hose;
  • the air pump 41 is tubular, bagged, columnar or balloon-shaped; or is elastic and can be deformed;
  • the air pump has an extended connecting pipe, which can apply pressure to the pipeline from a distance; or the connecting pipe is a flexible hose that can be bent; or, the air pump is a high-power air compressor, which is connected to multiple extended connecting pipes to form a pipe network, and has multiple connecting ports connected to multiple pipelines to transfer the pressure of compressed air to multiple pipelines;
  • the air pump is used for a hydraulic press, a lifting machine, or a telescopic device or drives the hydraulic press, the lifting machine, or the telescopic device to move;
  • the air pump is connected to an oil pipeline to extract underground oil or transport oil;
  • the oil includes water and oil;
  • the air pump is provided at the wellhead of the oil well or water well, and has an extended connecting pipe connected with the downhole pipeline to transmit pressure.
  • An air pump engine comprising an air pump, a pipeline and a fluid in the pipeline, characterized in that the compressed air in the air pump applies pressure to the pipeline to drive the fluid in the pipeline; or the compressed air of the air pump drives the fluid in the pipeline, and the fluid in the pipeline drives an object or/and a workpiece in the pipeline;
  • the fluid comprises Gas or liquid or semi-fluid or a mixture of gas and liquid;
  • the gas includes air;
  • the liquid includes water or oil;
  • the object includes sand or soil or corn or fruit or iron powder or magnetic powder or plastic particles;
  • the workpiece includes a connecting rod or a screw shaft 19 or a blade wheel 21 or a known connecting rod or a screw shaft or a blade wheel or a known functional equivalent product;
  • the air pump engine comprises at least one water pipe 33 and at least one air pump 41, the water pipe 33 is installed along the hull, the water inlet is toward the front of the hull, and the water outlet is toward the rear of the hull; the compressed air in the air pump 41 drives the water to flow from the water inlet to the water outlet;
  • the air pump engine comprises a vertical upward water pipe 27, the upper end of the water pipe 27 is a water outlet, the lower end is a water inlet with a one-way valve, and is inserted into a water source; the water pipe 27 is connected to one or more air pumps 41, and the water pipe 27 has one or more tubular elastic air pumps 41; the water is lifted 10 meters, 30 meters, 60 meters or more than 100 meters;
  • the air pump engine 25 is provided with an air pump 41, and a water inlet pipe 11 and a water outlet pipe 10 are arranged vertically and upwardly in parallel and connected at the top;
  • the water outlet pipe 10 has a spiral shaft 19 and/or a blade wheel 21, and the spiral blades 191 on the spiral shaft 19 and/or the blades 22 of the blade wheel are driven to rotate by the flowing water in the pipe;
  • a gear or a pulley or a sprocket for outputting power is installed on the shaft of the spiral shaft 19 and/or the blade wheel 21;
  • a blade wheel 21 is installed at the water outlet of the water outlet pipe 10;
  • the blades 22 of the blade wheel 21 are driven to rotate by the flowing water of the water outlet pipe 10, and a gear or a pulley or a sprocket for outputting power is installed on the shaft of the blade wheel 21; or an air chamber 4 is provided in the upper part of the water outlet pipe 10;
  • the air pump engine 23 includes at least one horizontally installed pipe 24 and an air pump 41, one end of the pipe 24 is a water outlet; the other end is a water inlet, the water inlet is connected to a water source, a spiral shaft 19 and/or a blade wheel 21 are arranged in the pipe 24, the spiral blades 191 on the spiral shaft 19 and the blades 22 of the blade wheel are driven to rotate by the water flow in the pipe, and a gear or a pulley or a sprocket is installed on the spiral shaft 19 and the shaft of the blade wheel 21 to output power to the outside; or the blade wheel 21 is installed at the water outlet of the pipe 24; the water can be hydraulic oil;
  • the air pump engine or the pipeline 24 is installed horizontally or vertically or obliquely;
  • the air pump engine is used for transportation or machinery or drives turbine blades with high-pressure water in the pipe;
  • the air pump engine includes a water pump, which includes an inlet pipe 11, an outlet pipe 10 and an air pipe 45, and the three pipes are vertically arranged in parallel;
  • the air pipe 45 is located between the inlet pipe 11 and the outlet pipe 10;
  • the air pipe 45 is a pipe with an air chamber 4;
  • the air pipe 45 has an air chamber 4 at the top and water 2 at the bottom;
  • the outlet of the inlet pipe 11 is above the air pipe 45;
  • the inlet of the outlet pipe 10 is below the air pipe 45, and the water in the water source 14 rises from the inlet pipe 11 to a certain height and then falls to the bottom of the air pipe 45, and then enters the outlet pipe 10 from the bottom of the air pipe 45 and rises;
  • the three The water in the pipeline flows in three directions: up, down and up; or the water flow direction of the outlet pipe 10 is upward and flows out at a certain height; or the outlet pipe 10 has a downward extension pipe, and the water in the outlet pipe 10 flows upward first, changes direction after reaching a
  • the energy-free pump or energy-free pumping generator or pipeline or air pump or air pump engine is characterized in that a plurality of pumps are concentrated together and used simultaneously to increase the amount of water lifted; or a plurality of pumps are combined up and down to raise the water level higher, generate greater water level potential energy, drive the turbine, and drive the generator to generate electricity; or the water is lifted to a high place for irrigation or power generation;
  • multiple pumps are combined up and down to pump water over 10 meters or over 30 meters or over 90 meters or over 100 meters or over 1000 meters;
  • multiple pumps are combined up and down to extract groundwater or well water, and the pumps are hung at the wellhead with ropes;
  • a plurality of water storage tanks 1 are arranged vertically, and a water outlet pipe 10 is connected vertically, which guides the water in the uppermost water storage tank 1 down and returns to the water source 14 after passing through the hydroelectric power generation equipment 15; the water inlet pipe 11 of the first water storage tank 1 at the bottom is inserted into the water source 14, and the water in the water source 14 is lifted to the first water storage tank 1; a water receiving pool 18 is provided below the first water storage tank 1 to receive the water output from the water outlet pipe 101; the water receiving pool 18 is connected to the atmosphere; the water inlet pipe 111 of the water storage tank 1 on the upper layer is inserted into the water receiving pool 18 on the lower layer, and the water is lifted to the water storage tank 1 on the upper layer with the water receiving pool 18 as the water source; the water inlet pipe 111 of the water storage tank 1 on the upper layer passes through the water storage tank 1 on the lower layer, and a seal is provided between the two; the water storage tanks 1 on each layer can be As long as there is a water receiving
  • one or more pumps are mounted on the bracket 5 and the base 6; the bracket 5 and the base 6 are made of metal or/and plastic or/and cement concrete. or the water storage tank 1 or the water outlet pipe 10 or the water inlet pipe 11 or the water tank with an air chamber 4 or an air pump 41;
  • the air chamber 4 or the air pump 41 has a closed space filled with compressed air, into which water cannot enter and air cannot escape;
  • the pipeline or the water storage tank 1 or the water tank has one or more air pumps 41 or is connected to one or more air pumps 41;
  • the air pump 41 is tubular, bagged, spherical or cylindrical, and is elastic and can be deformed according to the shape of the tube or the environment;
  • the air chamber or air pump 41 there is air in the air chamber or air pump 41; or the air is compressed air; or the compressed air is artificially compressed air; or the artificially compressed air refers to compressed air that is produced by artificially pressurizing the air chamber 4 or air pump 41 with an air compressor, an air pump or a hair dryer, and is not produced by the pressure of the water flow in the pipe; or the pipe wall or shell of the air chamber 4 or air pump 41 is provided with a valve 40, and the air is pressurized from the valve 40 to produce compressed air; or the water outlet pipe 10 is a water storage tank 1 or a thick water pipe 1111;
  • the air pipe 45 is a pipe with an air chamber 4; the air pipe 45 has an air chamber 4 at the top and water 2 at the bottom;
  • the water outlet pipe 10 or the water storage tank 1 or the water inlet pipe 11 is provided with an air chamber 4 or an air pump 41;
  • a water pipe is erected upwards with one or more air pumps 41 to lift water 10 meters, 30 meters or more than 100 meters;
  • the water inlet pipe 11, 111 and/or the water outlet pipe 10, 101 are arranged at the periphery of the water storage tank 1; or the water comprises still water;
  • the water in the water storage tank 1 and the water in the water inlet pipe 11 are connected with the water in the water source 14, and the water outlet switch 13 on the water outlet pipe 10 is turned on, and the water in the water storage tank 1 flows down from the water outlet pipe 10, and the water from the water source 14 enters the water inlet pipe 11 under atmospheric pressure and flows into the water storage tank 1; or the lower part of the water outlet pipe 10 is connected to a hydroelectric power generation device;
  • the inside of the pipe refers to the inside of the pipeline; the with refers to having;
  • the outlet of the water outlet pipe is 10 meters or 30 meters higher than the water source; or; the water is other fluid or semi-fluid;
  • the water inlet pipe 11 is provided with a water guide pipe 31; or the water outlet pipe 10 is provided with a water guide pipe; or water is injected and guided through the water guide pipe or the water outlet pipe;
  • the water tank 1 is provided with a water pipe 3; or water is poured from the water pipe 3; or the air chamber 4 refers to a space with air;
  • the water in the water tank 1 is more than the water in the water inlet pipe 11, the water outlet switch 13 on the water outlet pipe 10 is turned on, the water in the water tank 1 flows down from the water outlet pipe 10, and the water from the water source 14 rises into the water inlet pipe 11 and flows into the water tank 1 under the combined effect of the pulling force of the flowing water and the atmospheric pressure; or the amount of water in the water tank 1 is greater than or equal to the amount of water in the water inlet pipe 11; or the weight of the water in the water tank 1 is greater than the weight of the water in the water inlet pipe 11; or the pressure of the water in the water tank 1 and the water outlet pipe 10 is greater than the pressure of the water in the water inlet pipe 11;
  • the water storage tank 1 is provided with at least one water outlet 9 at the bottom thereof, and the water outlet 9 is connected to the water outlet pipe 10; or the water storage tank 1 is a water tank;
  • the water source 14 is still water; the still water refers to water without drop and flow; the still water includes water in a pool, a water tank, a reservoir or a lake; or the water source 14 is located below the ground; or the water is recycled and reused;
  • the water in the water inlet pipe 11 and the water in the water storage tank 1 are separated by an air chamber 4; the water in the water inlet pipe 11 flows into the water storage tank 1 through the air chamber 4; or the water outlet pipe 10 has the same or similar height as the water inlet pipe 11; or the water source 14 is a natural water source or an artificial water source; the natural water source includes rivers, lakes, seas, weirs, ponds and ditches; the artificial water source refers to a pool, reservoir, trough or water tank set up artificially; or the water storage tank 1 is a sealed pool or water tank; or the water storage tank 1 is a rectangular parallelepiped or a cube or a cylinder or a sphere; or the water storage tank 1 has a water outlet;
  • the air chamber 4 is a space for storing air in the pipe or water tank 1 or water tank;
  • the air chamber 4 occupies less than 50% or less than 20% or less than 10% or less than 5% of the space of the pipeline or water tank;
  • the pipeline or water storage tank 1 or water tank is a sealed container that can contain water and/or air;
  • the diameter of the water outlet pipe 10 is equal to, smaller than, or larger than the diameter of the water inlet pipe 11; or the pipe is a round pipe, a square pipe, or a flat pipe;
  • the water outlet pipe 101 is provided with a water outlet switch 1011, and the water outlet switch 1011 is turned on to pressure-infuse water;
  • the water induction refers to the water infused into the water storage tank 1, the water inlet pipe 11 and the water outlet pipe 10 before starting the pump; or the water outlet pipe 10 is provided with a water outlet switch 13, and the water outlet switch 13 is closed during water infusion; or the water inlet pipe 11 is provided with a water inlet 31; or, multiple pumps are installed along the slope of the mountain to lift water to the mountain;
  • the water outflow of the water outlet pipe 10 is equal to or less than the water inflow of the water inlet pipe 11; or there is an air chamber 4 above the water outlet pipe 10;
  • the water outlet 16 of the water outlet pipe 10 is higher than the water source by more than 3 meters, more than 10 meters, more than 30 meters, or more than 100 meters;
  • the thick water pipe is a water outlet pipe;
  • the water outlet pipe is a gravity pipe, which can raise the potential of water in the thin water pipe;
  • the thick water pipe 1111 and the water inlet pipe 11 are vertically arranged side by side and connected at the top; the diameter of the thick water pipe 1111 is larger than that of the water inlet pipe 11; the thick water pipe 1111 is provided with a water outlet pipe 101, and a water outlet switch 1011 controls the water outflow or the amount of water outflow from the thick water pipe 1111; or water is pressure-injected from the water outlet pipe 101 into the thick water pipe 1111 and the water inlet pipe 11; or the water in the thick water pipe 1111 is more than the water in the water in the water inlet pipe 11; or the weight of the water in the thick water pipe 1111 is greater than the weight of the water in the water in the water inlet pipe 11; or the water pressure in the thick water pipe 1111 is greater than the water pressure in the water in the water inlet pipe 11; or the water in the thick water pipe 1111 and the water in the water in the water source 14 are connected as a whole; or the diameter of the thick water pipe 1111 is 1 times larger than that of the water in the
  • the potential refers to the height of the position and its potential energy
  • the atmospheric pressure water column height refers to the vacuum height that the atmospheric pressure pushes the water up
  • the water inlet pipe 11, 111 or the water outlet pipe 10 is installed horizontally or vertically to the horizontal or inclined or along the hillside;
  • the air pump 41 is in the shape of a sphere, a cube, a tube or a cylinder; or the liquid includes water and/or oil;
  • the pump body of the air pump 41 is an elastic hose; or the pipeline is an elastic hose; or the air is other gases;
  • the pump body of the air pump 41 is made of metal, plastic or rubber, and is cylindrical, spherical, square or flat, or elastic;
  • the air pump 41 or the elastic body or the water receiving tank 18 has a piston device;
  • the piston device includes a piston or a diaphragm or a slider or a one-way valve; or the piston device is a known product or a product converted from a known product;
  • the fluid in the pipe is oil; or the pipe has an oil cylinder; the function of the oil cylinder is equivalent to the water source 14;
  • a piston or a telescopic rod in the tube; or the piston pushes the connecting rod or the telescopic rod; or the piston is the telescopic rod;
  • the piston is a known piston or an equivalent of a known piston
  • the workpiece includes a connecting rod or a screw shaft 19 or a blade wheel 21 or a known connecting rod or a screw shaft or a blade wheel or an equivalent;
  • the connecting rod includes a well-known rod-shaped object that transmits power
  • the spiral shaft refers to a shaft or spiral blades with spiral blades, including a shaft or spiral blades with spiral blades or products or known equivalents
  • the spiral shaft is installed in a tube, driven to rotate by the fluid in the tube to output power
  • the blade wheel refers to a wheel with blades, including a well-known wheel with blades
  • the blade wheel is driven to rotate by the fluid in the tube, and a pulley, gear or sprocket is connected to the shaft of the blade wheel to output power; or there are multiple blade wheels in the tube.
  • a method for manufacturing an energy-free water pumping generator or an air pump or an air pump engine characterized by being as described in 1-6 above.
  • an air pump 41 characterized in that it is connected to a pipeline and pushes the water in the pipeline to high altitudes to make artificial rainfall or clean high-rise buildings or flush roads; or to lift seawater to inland areas or deserts to form inland seas, inland lakes, inland rivers, improve the environment and climate or desalinate seawater; or to lift water for long distances and transfer water across river basins; or to collect silt from rivers, lakes, reservoirs or oceans; or to pump water for water plants; or as a pumping toy or teaching aid; or to generate electricity.
  • a water pump is characterized by pumping water to high altitudes to make artificial rainfall or clean high-rise buildings or roads; or as a water pumping toy or teaching aid; or lifting seawater to inland or deserts to form inland seas, inland lakes, inland rivers, improving the environment and climate or desalinating seawater; or lifting water for long distances and inter-basin water transfer; or pumping water for water plants; or for power generation.
  • Figure 1 is a schematic diagram of the structure of a non-energy-consuming water pump.
  • Figure 1 is a schematic diagram of the A-A cross-sectional view of Figure 2
  • FIG. 2 is a schematic top view of the water storage tank in FIG. 1 with the upper cover removed.
  • Fig. 3 is a schematic diagram of a plurality of energy-free pumping machines combined in an upper and lower manner for generating electricity.
  • Fig. 4 is a schematic diagram of a structure of a U-shaped water receiving pool 181.
  • FIG. 5 is a schematic diagram of the structure of an energy-free water pump in a water storage tank filled with water.
  • FIG6 is a schematic diagram of an energy-free water pump that is a combination of a thick water pipe and a thin water pipe and has an air pump.
  • Fig. 7 is a schematic diagram of a water storage tank with an energy-free pumping machine having an air chamber 4.
  • Fig. 8 is a right side schematic diagram of Fig. 7.
  • FIG. 9 is a schematic diagram of the structure of using a plurality of energy-free pumps in combination to lift water to a high mountain.
  • FIG. 10 is a schematic diagram of the structure of a mushroom-shaped energy-free water pump.
  • FIG11 is a schematic diagram of a combination of a thick water pipe and a thin water pipe, and an energy-free pump with an air pump to pump water for power generation.
  • FIG. 12 is a schematic structural diagram of an energy-free water pump with an air chamber and high water output.
  • FIG. 13 is a schematic diagram of the structure of a pipeline with an air pump, a spiral shaft and a blade wheel.
  • Figure 14 is a schematic diagram of the structure of an air pump water pump.
  • Figure 15 is a schematic diagram of the structure of an air pump with a connecting port.
  • Figure 16 is a schematic diagram of the structure of an air pump with a connecting pipe and a connecting port.
  • Figure 17 is a schematic diagram of the structure of an air pump.
  • FIG. 18 is a schematic diagram of the structure of an air pump engine used in ships.
  • the water tank 1 is in the shape of a rectangular parallelepiped, or a cube or a cylinder.
  • the air chamber 4 and the water 2 can each occupy half of the space.
  • the air chamber 4 can occupy less than 50% or less than 20% or less than 10% or less than 5% or 0% of the space of the water tank 1. That is, there is no air in the water tank 1.
  • the water of the water inlet pipe 11 passes through the air chamber 4 and falls into the water of the water tank 1.
  • the water tank 1 has a bracket 5 connected to the base 6.
  • the water inlet pipe 11 and the water outlet pipe 10 can be used as a bracket.
  • water inlet pipes 11 are inserted into the water tank 1 through the water inlet 7 at the bottom of the water tank 1.
  • the water inlet pipe 11 is sealed and connected to the water inlet 7 and the water tank 1.
  • the water outlet 8 of the water inlet pipe 11 is located at the upper part of the water storage tank 1.
  • the water inlet of the water inlet pipe 11 is inserted into the water source 14.
  • the bottom plate of the water storage tank 1 has a water outlet 9, and the water outlet 9 is connected to the water outlet pipe 10.
  • the water outlet 16 of the water outlet pipe 10 is below the hydroelectric power generation equipment 15, and the water from the water outlet 16 flows into the water source 14 for recycling.
  • the amount of water in the water outlet pipe 10 is equal to or less than the amount of water in the water inlet pipe 11; the water outlet pipe 10 is provided with a water inlet 17.
  • a water inlet 3 can be provided above the water storage tank 1. Water can be poured into the water storage tank 1 from the water inlet 17 or the water inlet 3. The water inlet 3 can be sealed.
  • the water inlet 17 has a switch 12. When pouring water, turn on the switch 12 first. Only one of the water inlet 17 and the water inlet 3 can be needed.
  • the water outlet pipe 10 is also provided with a switch 13, and the switch 13 is turned off when pouring water.
  • a water inlet can also be provided on the water inlet pipe 11. Only one water inlet is required.
  • the horizontal cut-off line in the figure indicates that the length of the bracket 5, the water outlet pipe 10 and the water inlet pipe 11 are omitted.
  • the water storage tank 1 can be filled with water without the air chamber 4. In this way, the water in the water storage tank 1 is connected with the water in the water inlet pipe 11 and the water in the water source 14, and they are connected as one.
  • the water level of the water storage tank 1 is higher than the water source 14.
  • the water in the water storage tank 1 is more than the water in the water inlet pipe 11, and the weight of the water in the water storage tank 1 is greater than the weight of the water in the water inlet pipe 11.
  • the total amount of water in the water storage tank 1 is greater than the total amount of water in the water inlet pipe 11, and the water storage tank 1 is sealed.
  • the switch 13 After the water is filled and the water is drawn, the switch 13 is turned on, and the water in the water storage tank 1 will flow out of the water outlet pipe 10.
  • the water from the water source 14 will be pressurized into the water inlet pipe 11 by the atmosphere, rise to the water storage tank 1, and flow out continuously from the water outlet pipe 10. Energy-free water lifting is achieved.
  • a one-way valve can be provided at the bottom of the water inlet pipe 11.
  • the water storage tank 1 can also be a sealed pool or water tank or thick water pipe.
  • a hydroelectric power generation device 15 is arranged at the bottom of the outlet pipe 10, and the potential pressure of the water in the outlet pipe 10 is used to drive the hydroelectric power generation device to generate electricity.
  • the water 16 of the outlet pipe 10 can finally flow back to the water source 14 for recycling, or it can be used for other purposes.
  • multiple energy-free pumps are used in combination up and down to lift the water higher, generate a higher water level, and generate more hydroelectric power; or, the energy-free pumps are used in combination to lift more water.
  • the energy-free pumps are installed in a well for use.
  • a valve can be installed on the outer shell of the air chamber 4 to artificially pressurize the air.
  • FIG3 shows three energy-free pumps combined up and down to pump water and generate electricity. There can be more energy-free pumps combined to pump water higher.
  • three water storage tanks 1 are arranged up and down, and there is a cross-sectional schematic diagram of the three water storage tanks 1.
  • a bracket 5 connects the three energy-free pumps to the bottom base 6.
  • the three water storage tanks 1 are cross-sectional schematic diagrams.
  • a water outlet pipe 10 in the middle runs through the top and bottom, and the water of the top water storage tank is released to generate electricity through the hydropower generation equipment 15.
  • the water 16 of the water outlet pipe 10 is collected into the water source 14.
  • the bottom pump has an inlet pipe 11 inserted into the water source 14 to lift the water in the water source 14 to the first water storage tank.
  • the water receiving tank 18 Receives the water from the water outlet pipe 101.
  • the position of the water receiving tank 18 is higher than the water source 14.
  • the water receiving tank 18 is connected to the atmosphere.
  • the water outlet pipe 101 has a switch 1011.
  • the water inlet of the water inlet pipe 111 is inserted into the first water receiving pool 18, and the water receiving pool 18 is used as the water source.
  • the capacity of the water receiving pool 18 can meet the water intake of the water inlet pipe 111.
  • the water inlet of the water inlet pipe 111 can also be set as a U-shaped pipe, which is inserted into the water outlet pipe 101 from the outside to receive the water outlet of the water outlet pipe 101.
  • the water outlet of the water outlet pipe 101 can be set as a U-shaped pipe, which is inserted into the water inlet pipe 111 from the outside to supply water to the water inlet pipe 111.
  • the water inlet pipe 111 can pass through the first water storage tank 1, and the two are sealed.
  • the water inlet pipe 111 lifts the water in the first water receiving pool 18 to the second water storage tank 1.
  • the water inlet of the water inlet pipe 111 is inserted into the second water receiving pool 18, and the water in the second water receiving pool 18 is lifted to the third water storage tank 1.
  • the outlet pipe 10 is installed from top to bottom. Water is discharged downward from the top water tank 1, where the water level is high and the pressure is high. The water in the top water tank 1 can also be released at the top, just for pumping water up the mountain, not for pumping water to generate electricity.
  • This energy-free water pump combination can also be used to extract groundwater and underground water.
  • the energy-free pump can be installed by hanging with ropes.
  • the water inlet pipe 111 and the water outlet pipe 10 can also be moved out of the water tank 1 and set on the periphery of the water tank 1.
  • the water inlet pipe 11 can be provided with a water inlet 31 and a water diversion switch 311.
  • FIG. 4 shows a U-shaped water receiving pool 181 , the two ends of which can be respectively inserted into the water outlet pipe 101 and the water inlet pipe 111 .
  • the energy-free water pump includes a water tank 1.
  • the water tank 1 is provided with a water inlet 3.
  • the water inlet 3 can be sealed. Water can be poured into the water tank 1 and the water inlet pipe 11 from the water inlet 3.
  • the water in the water tank 1 and the water inlet pipe 11 are filled with water, so that the water in the water tank 1 and the water in the water inlet pipe 11 are connected with the water in the water source 14 and connected as one.
  • the water in the water tank 1 is more than the water in the water inlet pipe 11.
  • the water tank 1 is provided with a water outlet pipe 101, and the water in the water outlet pipe 101 is provided with a switch 1011, and the water in the water tank 1 is higher than the water in the water source 14.
  • the water inlet pipe 11 is connected to the outside of the water storage tank 1, and the two are connected at the top; the water outlet 8 of the water inlet pipe 11 is connected to the water storage tank 1; the water continuously flowing out of the high position of the water outlet pipe 101 generates a continuous negative pressure suction force on the water inlet of the water inlet pipe 11, and attracts the water of the water source 14 to continuously rise into the pipe.
  • FIG6 shows that the energy-free pump includes a thick water pipe 1111, which is connected to the water inlet pipe 11 and has an outlet.
  • the water pipe 101, the water outlet pipe 101 is provided with a switch 1011.
  • the switch 1011 can control the water outflow of the water outlet pipe 101 or control the outflow amount, so that the water outflow of the water outlet pipe 101 is equal to or less than the water inflow of the water inlet pipe 11; before use, turn on the switch 1011, and pressure-inject water from the water outlet pipe 101 into the thick water pipe 1111 and the water inlet pipe 11; let the thick water pipe 1111 and the water inlet pipe 11 be filled with water.
  • the water in the thick water pipe 1111 is connected to the water in the water inlet pipe 11 and the water in the water source 14 to form a whole.
  • the water level in the thick water pipe 1111 is higher than the water source 14.
  • the thick water pipe 1111 and the water inlet pipe 11 are sealed.
  • the thick water pipe 1111 is larger in diameter than the water inlet pipe 11.
  • the water in the thick water pipe 1111 is more than the water in the water inlet pipe 11, the amount of water in the thick water pipe 1111 is greater than the amount of water in the water inlet pipe 11, and the weight of the water in the thick water pipe 1111 is greater than the weight of the water in the water inlet pipe 11.
  • the water in the thick water pipe 1111 is connected with the water in the water inlet pipe 11 and the water in the water source 14 to form a whole; when in use, turn on the switch 1011 on the water outlet pipe 101, the water in the thick water pipe 1111 will flow out continuously, and the water in the water source 14 will be continuously replenished to the thick water pipe 1111 through the water inlet pipe 11, realizing energy-free water lifting.
  • a water inlet 31 and a switch 311 can also be set on the water inlet pipe 11, and water is poured from the water inlet 31 on the water inlet pipe 11 into the thick water pipe 1111 and the water inlet pipe 11.
  • the thick water pipe 1111 and the water inlet pipe 11 are vertically arranged side by side.
  • the energy-free pump includes a water tank 1.
  • the water tank 1 is provided with a water inlet 3.
  • Water is poured into the water tank 1 and the water inlet pipe 11 from the water inlet 3.
  • the water level in the water tank 1 reaches half or more, and an air chamber 4 is left at the top of the water tank 1. Due to different specific gravities, the water in the water inlet pipe 11 can pass through the air chamber 4, fall into the water tank 1, and merge into the water in the water tank 1.
  • the water tank 1 has a water outlet pipe 101 and a water outlet switch 1011 at the bottom, and the water in the water tank 1 is higher than the water in the water source 14.
  • the switch 1011 When in use, turn on the switch 1011, the water in the water tank 1 flows out, pulling up the water in the water inlet pipe 11, and the water from the water source 14 continuously enters the water inlet pipe 11, flows into the water tank 1 through the air chamber 4, and continuously flows out from the water outlet pipe 101; thus, energy-free water lifting is achieved.
  • turn on the switch 1011 and water is poured from the water outlet pipe 101 into the water tank 1 and the water inlet pipe 11.
  • the water inlet pipe 11 is connected to the outside of the water tank 1.
  • a valve 40 can be set on the upper part of the water tank 1 to manually compress the air in the air chamber 4.
  • the water inlet pipe 11 has a water diversion pipe 31 and a water diversion switch 311.
  • the running water can compress the air.
  • the compressed air can continuously push and lift the flowing water, and can lift the flowing water to a height above the atmospheric pressure water column.
  • FIG8 is a right side view of FIG7 .
  • FIG9 shows that multiple energy-free pumps are combined and used together, which can increase the lift height.
  • four energy-free pumps are combined and used together, which is a four-stage water lifting.
  • they are installed up and down along the slope of the mountain to lift water to the mountain.
  • the present invention can lift water for more than 3 kilometers without energy consumption.
  • a water receiving pool 18 is set below the outlet pipe 101 of the first energy-free pump, and the water receiving pool 18 is connected to the atmosphere.
  • the water receiving pool 18 of the first energy-free pump is the water source of the second energy-free pump above.
  • the water inlet pipe 111 of the upper energy-free pump lifts the water in the lower water receiving pool 18 to the upper water storage tank 1. Repeating this process can lift water to the mountain.
  • a water inlet 31 can be set on the water inlet pipe 111, and a switch 311 can be set on the water inlet 31. Turn on the switch 311 to pressure-inject water into the water storage tank 1 and the water inlet pipe 111.
  • Each energy-free pump can be provided with a water inlet on the water inlet pipe 11 or the water inlet pipe 111 for water injection.
  • the water inlet pipe 11 and the water inlet pipe 111 are connected to the water storage tank 1 outside.
  • the water in the highest water storage tank 1 can also be discharged through the water outlet pipe 10 to generate electricity.
  • the present invention can be used for long-distance water transfer and cross-basin water transfer. For example, seawater can be introduced into deserts or saline-alkali land to improve soil, climate and environment. For example, the South-to-North Water Diversion Project can use the present invention to save power energy.
  • FIG10 shows a mushroom-shaped water tower.
  • the structure of the water tower is one or more water inlet pipes 11, which are also pillars supporting a water storage tank 100.
  • the water inlet below the water inlet pipe 11 extends into a natural water source and an artificial water source, and water is pumped into the water storage tank 100, and flows out from the water outlet pipe 20 as irrigation water to nourish all things on earth. It can also purify the air.
  • the energy-free water-lifting device, energy-free water pump and energy-free water-lifting machine described in the present invention are products of the same category.
  • FIG11 shows an air pump engine 25 with an air pump 41, and an inlet pipe 11 and an outlet pipe 10 are arranged side by side and vertically upward, and the two are connected at the top;
  • the outlet pipe 10 has a spiral shaft 19 or/and a blade wheel 21, and the spiral blades 191 on the spiral shaft 19 or/and the blades 22 of the blade wheel are driven to rotate by the water flowing in the pipe;
  • a gear or a pulley or a sprocket for outputting power is installed on the output shaft of the spiral shaft 19 or/and the blade wheel 21;
  • a blade wheel 21 is installed at the outlet of the outlet pipe 10;
  • the blades 22 of the blade wheel 21 are driven to rotate by the water flowing in the pipe, and a gear or a pulley or a sprocket for outputting power is installed on the shaft of the blade wheel 21;
  • the outlet pipe 10 is a thick water pipe
  • the inlet pipe 11 is a thin water pipe.
  • the amount of water in the outlet pipe 10 is more than the amount of water in the inlet pipe 11.
  • the cross-sectional view of the lower part of the outlet pipe 10 is a schematic diagram of the structure in which the blade wheel 21 is located in the pipeline.
  • the impeller 21 may also be located at the water outlet of the pipeline.
  • a valve 40 may be installed on the water storage tank 1 or the air pump 41 to supply air to the air chamber 4 or The air pump 41 is pressurized to produce artificial compressed air.
  • the air pipe 45, the water inlet pipe 11 and the water outlet pipe 10 are arranged side by side and face upward; the air pipe 45 is located between the water inlet pipe 11 and the water outlet pipe 10; the air pipe 45 is a pipe with an air chamber 4; there is an air chamber 4 on the top of the air pipe 45 and water 2 on the bottom; the air in the air pipe 45 is located above the water 2 and will not be carried away by the vortex of the water flow in the pipe.
  • the water outlet 8 of the water inlet pipe 11 is above the air pipe 45.
  • the water inlet of the water outlet pipe 10 is below the air pipe 45.
  • the water outlet of the water outlet pipe 10 is higher than the water source 14.
  • the water flow direction in the water outlet pipe 10 is upward, and the water is lifted to a certain height before flowing out, which is used for irrigation of high mountain farmland.
  • the water outlet pipe 10 has a downward extension pipe, so that the water in the water outlet pipe 10 flows upward first, reaches a certain height, generates potential, and then flows downward for power generation.
  • the length of the water outlet pipe 10 is longer than the length of the water inlet pipe 11; the water outlet direction of the water outlet pipe 10 is upward or turns 90 degrees to the center or turns 180 degrees to the bottom.
  • Towards the center means to be horizontal.
  • the air pipe 45 can have a valve 40, and the air chamber 4 can be pressurized from the valve 40 to produce artificial compressed air.
  • the water inlet pipe 11 can have a water guide pipe 31.
  • the air pump engine 23 includes a horizontally installed pipe 24 and at least one air pump 41, one end of the pipe 24 is a water outlet; the other end is a water inlet, the water inlet is connected to a water source, a spiral shaft 19 and/or a blade wheel 21 are arranged in the pipe 24, the spiral blades 191 on the spiral shaft 19 and the blades 22 of the blade wheel are driven to rotate by the water flow in the pipe, gears or pulleys or sprockets are installed on the spiral shaft 19 and the shaft of the blade wheel 21 to output power to the outside; or the blade wheel 21 is installed at the water outlet of the pipe 24; the water can also be hydraulic oil; the cross-sectional view of the pipe outlet is a schematic diagram of the structure of the blade wheel 21.
  • the energy-free water pump 26 comprises a vertical upward water pipe 27, the upper end of the water pipe 27 is a water outlet, the lower end is a water inlet with a one-way valve, inserted in a water source, an air pump 41 is connected outside the water pipe 27, and a tubular elastic air pump 41 is arranged inside the water pipe 27.
  • the air pump 41 can be tubular, bagged, columnar or balloon-shaped, and can be elastic.
  • the elastic air pump 41 can be deformed with the shape of the tube or the shape of the environment, and can apply pressure to the fluid in the tube.
  • the air pump 41 has a connecting port 42.
  • the air pump 41 is an air chamber 4 that can be used independently;
  • the air pump is provided with a connecting pipe 43, on which there are a connecting port 42 and a connecting switch 44.
  • the air pump is connected to the pipeline through the connecting port; the connection means that after the air pump is connected to the pipeline, the compressed air of the air pump communicates with the fluid in the pipeline, and the pressure of the compressed air can be transmitted to the fluid in the pipeline;
  • the air compressor 28 is connected to a plurality of elongated connecting pipes 29 to form a connecting pipe network.
  • the connecting pipe network can be connected to a plurality of pipelines.
  • the air pump engine 32 includes at least one water pipe 33 and at least one air pump 41.
  • the water pipe 33 is installed along the hull, with the water inlet 34 at the front of the hull and the water outlet 35 at the rear of the hull.
  • the compressed air of the air pump 41 drives the water flow from the water inlet 34 to the water outlet 35, driving the ship forward.
  • the arrow in the figure indicates the direction of the water flow in the pipe.
  • the water pipe 33 is provided with a valve 36.
  • the air pump or elastomer is provided with a piston device;
  • the piston device includes a piston or a diaphragm or a slider or a one-way valve;
  • the piston or diaphragm or a slider or a one-way valve can be a known technology or a transfer of a known technology or a transformation of a known technology or an equivalent.
  • the pump body of the air pump can be made of metal or plastic or rubber or synthetic material, can be cylindrical or spherical or square, and can have elasticity.
  • the known technology can only lift still water within one atmospheric pressure water column, that is, between 10 and 13 meters, and cannot lift still water higher.
  • the water includes flowing water and still water. Whether using flowing water or still water, the effect is the same, so using flowing water is also within the scope of the present invention.
  • the pipeline or water storage tank 1 or water tank has an air chamber 4 or an air pump 41, or the pipeline or water storage tank or water tank has one or more tubular air pumps 41 or is connected to one or more air pumps 41; or the air chamber 4 or air pump 41 has air; or the air is compressed air; or the compressed air is artificially compressed air; or the artificial compressed air refers to compressed air generated by artificially using an air compressor, an air pump or a hair dryer to pressurize the air chamber 4 or the air pump 41, and is not compressed air generated by the water flow pressure in the pipe.
  • the air pump 41 can be made of elastic material and can have elasticity. With the elasticity of compressed air, the air pump has double elasticity. As long as there is flowing water in the pipe, there will be compressed air in the air pump.

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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

La présente invention appartient au domaine des pompes à eau sans consommation d'énergie et de la production d'énergie par pompage d'eau, et concerne en particulier une pompe à eau sans consommation d'énergie, son procédé de fabrication et son application. Dans la présente invention, en utilisant des lois naturelles et des principes scientifiques, tels qu'une pression atmosphérique, un effet de coup de bélier et un effet élastique d'air enfermé, une pompe à eau sans consommation d'énergie est conçue, et son procédé de fabrication et son application sont fournis, son application appartenant au domaine de la production d'énergie. La présente invention peut être appliquée à l'élévation d'eau sans consommation d'énergie ou à la production d'énergie par l'élévation d'eau, ou à l'élévation d'eau sans consommation d'énergie à des altitudes élevées pour une pluie artificielle, ou à l'élévation d'eau de mer sans consommation d'énergie vers le désert Gobi pour former des mers intérieures, de sorte à améliorer le climat de la terre, ou à l'élévation d'eau sans consommation d'énergie pour des installations de divertissement et de paysage, ou à l'élévation d'eau sans consommation d'énergie automatique de jouets ou d'auxiliaires d'enseignement, ou à la distribution d'eau sans consommation d'énergie à longue distance, ou à l'élévation d'eau sans consommation d'énergie de bassin transversal et un transfert d'eau, ou à l'élévation d'eau pour des travaux aquatiques. La présente invention comprend une pompe à air et un moteur de pompe à air. La présente invention peut être utilisée dans n'importe quel endroit ou produit qui utilise de l'eau ou de l'électricité. La présente invention permet de réaliser une élévation d'eau à n'importe quel endroit sur la terre à n'importe quel autre endroit, et de réaliser une production d'énergie sans consommation d'énergie et illimitée.
PCT/CN2023/119271 2022-11-11 2023-09-17 Générateur à pompage d'eau sans consommation d'énergie, son procédé de fabrication et son application WO2024098960A1 (fr)

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CN202211487161.9 2022-11-11

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1108737A (zh) * 1994-03-14 1995-09-20 周锦宇 真空抽吸水力发电机组装置
CN103277235A (zh) * 2013-05-29 2013-09-04 王政民 一种大气压力发电的方法及发电装置
CN103670885A (zh) * 2012-09-26 2014-03-26 王绍隆 基于海水的虹吸发电系统及其发电方法
CN106321343A (zh) * 2016-07-28 2017-01-11 华北电力大学 基于液体温度控制的等温压缩空气储能发电系统及其方法
CN109915302A (zh) * 2019-04-25 2019-06-21 潘凤林 一种水力发电系统
US20210215128A1 (en) * 2020-01-14 2021-07-15 Mithra Sankrithi Pumped storage system with waterfall control subsystem

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1108737A (zh) * 1994-03-14 1995-09-20 周锦宇 真空抽吸水力发电机组装置
CN103670885A (zh) * 2012-09-26 2014-03-26 王绍隆 基于海水的虹吸发电系统及其发电方法
CN103277235A (zh) * 2013-05-29 2013-09-04 王政民 一种大气压力发电的方法及发电装置
CN106321343A (zh) * 2016-07-28 2017-01-11 华北电力大学 基于液体温度控制的等温压缩空气储能发电系统及其方法
CN109915302A (zh) * 2019-04-25 2019-06-21 潘凤林 一种水力发电系统
US20210215128A1 (en) * 2020-01-14 2021-07-15 Mithra Sankrithi Pumped storage system with waterfall control subsystem

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