WO2022222334A1 - 一种杠杆重力自加压式发电设备 - Google Patents

一种杠杆重力自加压式发电设备 Download PDF

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Publication number
WO2022222334A1
WO2022222334A1 PCT/CN2021/114674 CN2021114674W WO2022222334A1 WO 2022222334 A1 WO2022222334 A1 WO 2022222334A1 CN 2021114674 W CN2021114674 W CN 2021114674W WO 2022222334 A1 WO2022222334 A1 WO 2022222334A1
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Prior art keywords
water
power generation
storage tank
lever
rod
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PCT/CN2021/114674
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English (en)
French (fr)
Inventor
孙劲光
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孙劲光
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Publication of WO2022222334A1 publication Critical patent/WO2022222334A1/zh

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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
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G3/00Other motors, e.g. gravity or inertia motors

Definitions

  • the invention relates to the technical field of electric power generation and energy storage, in particular to a lever gravity self-pressurized power generation device.
  • CAES compressed air energy storage
  • hydrostatic buoyancy power generation although some of them also use compressed air energy storage (CAES) technology, their own power consumption is large, and the size of the float valve Determine the amount of power generation, occupy a large area
  • wind power generation affect the environment, large investment, but also a certain wind speed environment, no wind, strong wind can affect the size of power generation.
  • the present invention provides a lever gravity self-pressurization power generation equipment.
  • a lever gravity self-pressurization type power generation equipment including a generator set, and also a water storage tank
  • a small water storage tank is arranged in the water storage tank
  • a small water storage tank is installed on the wall of the small storage tank.
  • the water in the water storage tank flows into several water inlet float valve switches of the small water storage tank.
  • the small water storage tank is provided with a push switch I, and the push switch I is correspondingly provided with a rotatable, and press the push switch.
  • the water discharge of I touches the crossbar I, and a water discharge hose I is communicated with the bottom of the push switch port I of the small water storage tank.
  • the bottom of the water storage tank is provided with an automatic weighting and discharging bucket
  • the automatic weighting and discharging bucket includes a bucket body, the water outlet of the water discharge hose I extends into the bucket body, and the bucket body is vertically installed with a water discharge contact vertical rod I , the water discharge touch vertical bar I can be pushed up and down with the automatic weighting of the water discharge bucket to move up and down the water discharge touch horizontal bar I.
  • a push switch II is also installed in the barrel, and a water release touch bar II capable of pressing the push switch II downward is rotatably installed on the barrel mouth; the bottom of the barrel corresponding to the bottom of the push switch II is connected with a water release.
  • Hose II, the water discharge hose II communicates with the water receiving tank I.
  • a movable joint is also installed on the barrel body, and a weighted lever is rotated or hinged on the barrel body through the movable joint.
  • the upper surface of the water receiving tank I is provided with a water discharge contact vertical rod II, and when the automatic weighting water discharge bucket descends, the water discharge contact vertical rod II can push up the water discharge contact vertical rod II.
  • a pressure rod is also installed at the bottom of the barrel body, and a rocking rod assembly is correspondingly installed below the pressure rod.
  • the rocking rod assembly includes a rocking rod I located below the pressure rod. The other end is tilted up, and a tilting bar II is correspondingly arranged above the tilting rod I at this end. After the pressure rod is raised upward, the tilting rod I can be reset and tilted again.
  • a semi-elliptical gear is arranged on the end of the rocker II near the transmission gear box, and a meshing gear is correspondingly arranged on the transmission gear box. The semi-elliptical gear can mesh with the meshing gear and drive the meshing gear to rotate to transmit power.
  • the variable speed gearbox drives the generator set.
  • a fulcrum is provided below the rocking rod I.
  • a pull-up spring is also installed on the lower side or the upper side of the semi-elliptical gear of the rocker II, and the other end of the pull-up spring is fixed on the transmission gear box, so as to realize the rocker I Able to reset and re-tilt.
  • the transmission gearbox is connected to the generator set through an inertia extension shaft assembly
  • the inertia extension shaft assembly includes an extension shaft connected with the output end of the transmission gearbox, the extension shaft A large transmission gear is installed at the other end
  • the generator set includes a generator
  • an extension shaft of the generator set is installed on the shaft end of the generator set
  • a transmission pinion gear capable of engaging with the transmission large gear is installed on the extension shaft of the generator set.
  • the water receiving tank I is communicated with the water storage tank through a water hammer circulation pipeline, a water hammer pump is installed on the water hammer circulation pipeline, and a water hammer connected to the water receiving tank II is installed below the water hammer pump.
  • the residual water of the pump is connected to the water pipe, and the residual water of the water hammer pump flows into the water receiving tank II through the residual water receiving pipe of the water hammer pump.
  • a baffle cover is arranged on the upper surface of the middle position of the weighted lever, and a rollable inertial iron ball is arranged in the baffle cover.
  • an inertia wheel is also installed on the elongated shaft.
  • the elongated shaft passes through the bearing on the bracket.
  • a water receiving tank II wherein one or more floating valve power supply contacts the water pump are also installed in the water receiving tank II box, and the circulating water of the floating valve power supply contacting the water pump is communicated with the water storage tank 1 through pipes.
  • a drain pipe I for preventing external diffusion is installed along the edge of the connected water tank I, and the drain pipe I communicates with the water receiving tank II.
  • the beneficial effects of the present invention are: by adopting the lever combined with the principle of gravity, through the design of the lever assembly and the automatic weighting of the water discharge bucket, the gravity and inertia of the water flow, the automatic weighting of the water discharge bucket, etc. are realized, and a force is applied to one end of the rocking rod, so that the other end of the rocking rod can be adjusted.
  • the semi-elliptical gear easily drives the meshing gear to rotate to achieve the purpose of storing energy and generating electricity. It solves the problem that the existing new energy is affected by the environment and the power consumption of the new energy equipment itself is large, and realizes the purpose of energy saving and environmental protection, which can reduce the loss of large power consumption, and the power transmitted to the outside is large, and the structure is simple. Small size, good reliability and so on.
  • FIG. 1 is a schematic diagram 1 of the structure of the lever gravity self-pressurization power generation equipment according to the present invention.
  • FIG. 2 is a second structural schematic diagram of the lever gravity self-pressurization power generation equipment according to the present invention.
  • FIG. 3 is a schematic structural diagram of the lever assembly on the side of the gear box of the self-pressurized power generation equipment of the present invention when the lever assembly is engaged with the meshing gear on the gear box.
  • FIG. 4 is a schematic diagram of the installation structure of the inertial elongated shaft assembly and the generator set of the lever gravity self-pressurization power generation equipment of the present invention.
  • FIG. 5 is a schematic diagram of the partial structure of the self-weighting water discharge bucket of the lever gravity self-pressurization power generation equipment of the present invention.
  • FIG. 6 is a schematic structural diagram of a small water storage tank provided in the water storage tank of the lever gravity self-pressurization power generation equipment of the present invention.
  • FIG. 7 is a schematic structural diagram of the push switch of the lever gravity self-pressurization power generation equipment of the present invention.
  • 2-Water tank I 201-Water hammer circulation pipeline, 202-Water hammer pump, 203-Water contact vertical rod II, 204-Drain pipe I, 205-Water hammer pump residual water connection pipe;
  • 5-water tank II 501-pipeline for circulating water, 502-drain pipe II, 503-float valve power supply touch pump;
  • 6- tilting bar assembly 601- tilting bar I, 602- tilting bar II, 603- fulcrum, 604- tilting bar installation fixed shaft, 605-lifting spring, 606-semi-elliptical gear;
  • 701-change gear box 702-change gear set, 7021-mesh gear;
  • 8-Inertia extension shaft assembly 801-Extended shaft, 802-Inertia wheel, 803-Bracket, 804-Bearing, 805-Transmission large gear, 806-Transmission pinion;
  • 9-generator set 901-generator, 902-generator set extension shaft.
  • a lever gravity self-pressurization power generation equipment includes a generator set 9, the generator set 9 includes a generator 901 and a generator set extension shaft 902, and the generator 901 shaft is connected to the generator set extension shaft 902 , this structure is a common means of the existing power generation equipment, of course, multiple long shafts can also be set to connect with the rotating shaft of the generator 901, and the above structure is the existing structure.
  • a water storage tank 1 which is a box structure with an open top. In this embodiment, it is a square structure. Of course, it can also be a box with other shapes, such as a barrel shape. A certain amount of liquid should be pre-stored in the water tank 1 in advance.
  • the liquid used in the present invention may be natural water, diluted oil or antifreeze dilution, etc., depending on the local environment. Power medium.
  • a small water storage tank 105 is installed in the middle of the water storage tank 1.
  • the small water storage tank 105 has an independent space.
  • the small water storage tank 105 separates the water in the water storage tank 1.
  • the height of the top side is the same or higher, so as to prevent the water in the water storage tank 1 from overflowing into the small water storage tank 105 from the high position of the top side of the small water storage tank 105 .
  • One or more water inlet float valve switches 106 are arranged on the inner walls of the middle and lower parts of the small water storage tank 105, and the water inlet float valve switches 106 are in the prior art. The speed of lifting is determined by the number of installed water inlet float valve switches 106. The float ball of the inlet water float valve switch 106 should be set in the small storage tank 105, and the storage water of the storage tank 1 is entered through the inlet water float valve switch 106. To the small water storage tank 105, that is, the small water storage tank 105 is supplemented with water through the water inlet float valve switch 106, so as to realize the control of the downward flow.
  • a push switch I102 is installed inside the small water storage tank 105.
  • the push switch I102 is correspondingly provided with a water discharge contact bar I103 that can rotate and press the push switch I102.
  • a hinged support rod can also be set separately.
  • the water release touch crossbar I103 can press the push switch I102 by swinging up and down.
  • the water release touch crossbar I103 can also be rotated left and right, and the push switch I102 can control the opening and closing of the small water tank 105. Water discharge, so turning the water discharge touch bar I103 can realize the startup and shutdown of the entire lever gravity self-pressurized power generation equipment.
  • a water discharge hose I101 is connected to the bottom of the push switch port I102 in the small water storage tank 105.
  • the water discharge hose I101 should preferably be a high-pressure hose that can be contracted and bent. , which is also the channel for the water in the small storage tank 105 to lead to the automatic weighting and discharging bucket 3 .
  • the side wall of the water storage tank 1 is provided with a drain pipe II502 to prevent the water storage tank from being too much water to prevent the water storage tank 1 from being full, and the drain pipe II502 communicates with the water receiving tank II5.
  • an automatic weighting and discharging bucket 3 Below the water storage tank 1, there is an automatic weighting and discharging bucket 3. In this embodiment, only one set of automatic weighting and discharging buckets 3 is provided. Of course, two groups can be set according to the specific implementation, or several groups can be set, depending on the size of the generator. , which shall be included within the protection scope of the invention.
  • the self-weighting water discharge bucket 3 includes a bucket body 301, and the water outlet of the water discharge hose 101 extends into the bucket body 301. Of course, it may not extend into the bucket body 301.
  • the water outlet of the water discharge hose 101 is facing the barrel body 301.
  • the liquid splashes out of the barrel 301 when the water is discharged which is an equivalent replacement of the technical solution of the present invention, and should be included in the protection scope of the present invention;
  • the vertical touch bar I104 can press the water release and touch the horizontal bar I103 along with the up and down movement of the self-weighting water discharge bucket 3 .
  • a push switch II302 is also installed in the barrel 301 , and the push switch II302 has the same structure and performance as the push switch I102 in the small water storage tank 105 in the water storage tank 1 described above. Most of the internal structures of the push switch I102 and the push switch II302 are the same as in the prior art, and they are widely used in toilet flushing buckets.
  • the inventor has further adjusted the size and size of the structural components , reducing the large resistance of the push switch and the resistance of the push switch returning valve, using the lever principle, the lever is extended in size, and the upper and lower movable valves of the flat plate type are designed as semi-circular and semi-circular. When the body valve is lifted and returned underwater, the resistance of the water is less than that of the flat type, and the return is faster.
  • FIG. 7 it is a schematic diagram of the structure of the push switch I102 and the push switch II302, including the switch 1021, the spring 1022 installed under the switch 1021, the spring 1022 is installed on the fixed spring frame 1024, the lengthened pressure rod 1023, the upper and lower movable fulcrums 1025, lifting rod 1026, etc., all of the above have existing structures, and their structure and performance are all of the prior art.
  • the lengthened pressure rod 1023 is extended, and the flat valve is designed as a semi-circular ball valve 1027, which reduces the pressure on the push switch.
  • the large resistance received by pressing down and the resistance of the push switch return valve are a further technical solution of the technical solution of the present invention. Whether it is adopted in the implementation process or not does not affect the realization of the technical solution of the present invention.
  • the mouth of the barrel body 301 is equipped with a water discharge touch bar II303 that can press down the push switch II302.
  • the water discharge touch bar II303 can run up and down along the edge of the barrel body 301, that is, the water discharge touch bar II303 is hinged in the middle of the barrel body 301. Edge, its working principle and mechanism are similar to the above-mentioned water discharge touch crossbar I103, so as to realize pressing the push switch II302.
  • the bottom of the barrel 301 corresponds to the water discharge port of the push switch II302.
  • a water discharge hose II304 is installed, and the water discharge hose The II304 hose water outlet is connected to the water tank I2 box.
  • a movable joint 306 is also installed on the barrel body 301, and the barrel body 301 is rotated or hinged with a weighted lever 401 through the movable joint 306.
  • the movable joint 306 is arranged at the mouth of the upper edge of the barrel body 301, and its structure can be a weighted lever 401
  • other structures for realizing hinged or rotating connection such as directly using hinges, etc.; the former is installed in this way.
  • the barrel 301 is always kept vertically downward, and the water in the barrel is not skewed and seeps out.
  • the small pressure plate of the movable connection 306 of the aggravating lever 401 presses the edge of the barrel, so that the barrel is fixed and stressed downward.
  • the water discharge hose 101 is connected with the barrel body 301 through a connecting rod to ensure the up and down movement of the barrel body 301.
  • a slider can also be provided on the outer wall of the barrel body 301, and a corresponding vertical slide rail is provided. It moves along the slide rail to ensure the stability of the up-and-down movement of the barrel 301, and the barrel 301 has a better focus point, and the barrel 301 will not sway or tilt from side to side. It is a further technical solution of the technical solution of the present invention, and whether it is adopted in the implementation process does not affect the realization of the technical solution of the present invention.
  • the baffle cover 405 is provided with a rollable inertial iron ball 404 in the baffle cover 405 .
  • the weight of the inertial iron ball 404 must be such that the weighting mass 403 can lift the inertial iron ball 404 and the automatic weighting bucket 3 (empty bucket) and the accessories connected to it, and the weight of the automatic weighting bucket 3 must be able to rise after it is filled with water. Heavier weights and iron balls. to determine the weight of the inertial iron ball 404 .
  • the movable space of the inertial iron ball 404 on the lever takes the lever fulcrum as the center point, and the length of the lever between the baffle of the blocking ball and the baffle cannot exceed 1/3 of the total length of the lever to install the baffle.
  • a semicircular cover is installed above between the baffle and the baffle.
  • the cover covers the inertial iron ball between the baffle and the baffle, the cover and the lever to prevent the inertial iron ball from falling off.
  • the inertial iron ball 404 has two main functions. , 1 to accelerate the take-off and landing speed 2 to increase the strength by inertia.
  • the water discharge hose II304 at the bottom of the automatic weighting and discharging bucket 3 is connected to the water receiving tank I2, and the water receiving vertical rod II203 is installed on the upper surface of the water receiving tank I2.
  • the automatic weighting and discharging bucket 3 descends, the water discharge touching vertical rod II203 can be pressed upward.
  • the water discharge touches the horizontal bar II303.
  • the water discharge touches the horizontal bar II303 to press the push switch II302, and the water discharge bucket 3 starts to discharge water automatically.
  • the water will enter the water receiving tank I2 along the water discharge hose II304.
  • One or more water hammer pumps 202 are also installed at the outer bottom of the water receiving tank I2, and the water hammer circulation pipeline 201 does not require power consumption to circulate the water to the water storage tank 1.
  • a drain pipe to prevent external diffusion is installed at 10 cm along the edge of the water receiving tank I2.
  • the main purpose of I204 is to prevent the water in the water tank I2 from being too full and seepage of water everywhere, and the drain pipe I204 is connected to the water tank II5.
  • the preferred design of the water receiving box II5 is below the water hammer pump 202 of the water receiving box I2, because the water hammer pump 202 will have residual water during use, and the residual water of the water hammer pump 202 can flow into the water hammer pump residual water receiving pipe 205 at this time. into the water tank II5.
  • the water receiving tank II5 is mainly used for buffering, but it can also be designed as a water pool.
  • One or more floating valve power supplies are installed in the water receiving tank II5 to touch the water pump 503, and the floating valve power supply touches the circulating water pipes 501 and storage of the water pump 503. Connect the water inlet 10 cm down from the edge of the water tank 1.
  • the float valve floats up, and the water pump is connected to the power switch to start pumping.
  • the water volume decreases, the float valve sinks, the power supply is disconnected, and the pumping stops.
  • a pressure rod 305 is also installed at the bottom of the barrel 301 of the self-weighting water discharge bucket 3.
  • the pressure rod 305 can move up and down with the self-weighting water discharge bucket 3, that is, it moves up and down.
  • the pressure rod 305 is correspondingly installed with a tilting rod assembly 6.
  • the tilting rod assembly 6 includes a tilting rod I601 located under the pressure rod 305, one end of the tilting rod I601 is located under the pressure rod 305, and a fulcrum 603 is provided near the other end, the pressure rod 305 can press the tilting rod I601 downward, so that the other end of the tilting rod I601 is tilted up,
  • the end of the rocking rod I601 is correspondingly provided with a rocking rod II602, that is, a rocking rod II602 is correspondingly set above the end of the rocking rod I601 close to the fulcrum 603, and the rocking rod I601 can be tilted upward to press the rocking rod II602 upward, and the pressure rod 305 is facing upwards.
  • the tilting bar I601 can be reset and lifted again after it is raised.
  • the eccentric design of the pivot point of the tilting bar I601 used here ensures that the tilting bar I601 can be reset and tilted again, that is, it ensures that the tilting bar I601 remains high on the left and low on the right.
  • a tension spring and other structures For example, a tension spring is installed on the lower side of the tilting rod I601 away from the pressure rod 305 to keep the tilting rod I601 in a state of high left and right low.
  • Rod I601 is tilted, which should be included in the scope of protection of the invention.
  • the rocker II602 is installed on the transmission gear box 701 through the rocker installation and fixed shaft 604, that is, a mounting hole can be opened on the outer wall of the transmission gear box 701, and the rocker II602 can be rotated and installed through the rocker installation fixed shaft 604; of course, it can also be tilted.
  • the lever II 602 extends into the transmission gear box 701 , and a mounting hole is opened on the inner wall of the transmission gear box 701 , and the lever II 602 can be rotatably installed through the lever mounting and fixing shaft 604 .
  • the shape design of the rocker bar it can be designed according to the design situation, as long as the labor-saving design of multi-style rocker bar is all possible, such as designing into a T shape, multiple groups of automatic water bucket devices can be used in this way, which is common knowledge in the art.
  • a semi-elliptical gear 606 is provided on one end of the rocker II602 close to the transmission gearbox 701, and a meshing gear 7021 is correspondingly provided on the transmission gearbox 701.
  • a meshing gear 7021 is installed at the input end of the outer transmission gear box 701.
  • the semi-elliptical gear 606 can mesh with the meshing gear 7021 and drive the meshing gear 7021 to rotate.
  • the meshing gear 7021 can drive the gear set in the transmission gear box 701
  • the inner speed change gear set 702 rotates, and the rotation is transmitted to the extension shaft 801 of the inertia extension shaft assembly 8 through the speed change of the large and small gears; it can also be designed that the rocker II602 extends into the speed change gear box 701, and the meshing gear 7021 is designed in the speed change gear.
  • the meshing gear 7021 can drive the transmission gear set 702 arranged in the transmission gear case 701 to rotate.
  • a pull-up spring 605 is also installed on the lower side of the semi-elliptical gear 606 of the rocker II602.
  • the other end of the pull-up spring 605 is fixed on the transmission gearbox 701.
  • the main purpose of the pull-up spring 605 is to keep the rocker II602 in a tilted state.
  • the lifter spring 605 arranged on the lower side of the semi-elliptical gear 606 is pulled up by the lifter I601 and the left end of the lifter II602 is lifted and returned to its original position. Compression deformation, after the lifter I601 returns to its original position, the restoring force of the lift spring 605 makes the lifter II602 return to its original position.
  • the lifter spring 605 can also be installed on the upper side of the semi-elliptical gear 606, which can also make the lifter II 602 return to its original position.
  • a pressure handle that can be retracted up and down and can be rotated.
  • This handle is a household mop. It is a dehydration mop. The mop is put into a special dehydration bucket that can be rotated. Press the bottom of the mop with your hand to start spinning and dehydration, so that the mop can be quickly separated from the water.
  • the output end of the transmission gear box 701 is connected with the extension shaft 801, the extension shaft 801 passes through the bearing 804 on the bracket 803, the inertia wheel 802 is fixedly connected to the extension shaft 801, and the transmission gear 805 is installed at the end of the extension shaft 801, and the transmission is large.
  • the gear 805 meshes with the transmission pinion 806 installed on the extension shaft 902 of the generator set 9 to drive the generator 901 to work.
  • the working process of the equipment is: when the water discharge touches the horizontal bar I103 to install or move it back to the working position, the push switch I102 can be pressed down, the water storage tank 1 starts to discharge water, and the water in the water storage tank 1 flows into the automatic recharger below through the water discharge hose I101.
  • the automatic weighting and discharging bucket 3 moves downward due to the increase in the inflow of water, and the pressure rod 305 at the bottom of the barrel 301 of the automatic weighting and discharging bucket 3 presses down the left end of the upturned rod I601, and the right end of the upturned rod I601 is upturned.
  • the extension shaft 801 of the extension shaft assembly 8 drives the generator 901 to work.
  • the automatic weighting and discharging bucket 3 moves down to a certain position, the water discharge touches the vertical rod II203, and the water discharge touches the horizontal rod II303, and the water discharge touches the horizontal rod II303 to automatically increase the weight.
  • the bucket 3 starts to discharge water, the water will enter the water tank I2 along the water discharge hose II304.
  • the water volume of the automatic weighting bucket 3 decreases and starts to rise.
  • the water discharge touches the vertical rod I104 and moves upward with the automatic weighting of the water discharge bucket 3, and presses the water discharge bucket again to touch the horizontal bar I103, so that through the lever assembly and the automatic weighting of the water discharge bucket design, the water flow, Automatically increase the gravity and inertia of the bucket, etc., and apply force to one end of the rocker bar, so that the semi-elliptical gear at the other end of the rocker bar can easily drive the meshing gear to rotate, so as to achieve the purpose of energy storage and power generation.

Abstract

一种杠杆重力自加压式发电设备,包括发电机组(9),还包括存水箱(1),存水箱内(1)设置有小存水箱(105),存水箱(1)下方设置有自动加重放水桶(3),自动加重放水桶(3)的放水软管II(304)与接水箱I(2)箱连通,桶体(301)底部还安装有压力杆(305),压力杆(305)下方相对应安装有翘杆组件(6)。该杠杆重力自加压式发电设备采用杠杆结合重力原理,通过杠杆组件和自动加重放水桶的设计,实现通过水流、自动加重放水桶等的重力和惯性,对翘杆的一端施加力,使翘杠另一端的半椭圆形齿轮轻松带动啮合齿轮转动,达到储能并发电目的,解决现有新能源受环境影响和新能源设备运行自身耗电大的问题,并实现节能、环保的目的,可以减少自身耗电的损耗,向外输送的电量较大,且结构简单,体积不大,可靠性较好。

Description

一种杠杆重力自加压式发电设备 技术领域
本发明涉及电力发电、储能技术领域,具体涉及一种杠杆重力自加压式发电设备。
背景技术
随着新能源日新月异的发展,各种新能源开始大放光彩。如压缩空气储能(CAES)技术发电,光伏发电,静水浮力发电,风力发电,等等这些发电领域都已经逐步进入到生产生活实践中;虽然新能源节能,但也有很多地方不足。如现有的压缩空气储能,自身耗电量大,发电单一,占地大,噪音大;光伏发电。首先是占地大,所需前期投资较大,阴天,雨天发电量小;静水浮力发电:有些虽然也用到了压缩空气储能(CAES)技术,但自身耗电量大,浮阀的大小决定发电量的多少,占地大;风力发电:影响环境,投资大,还要有一定的风速环境,无风、狂风都能影响到发电的大小。如何解决以上新能源的不足,完善技术方案是发明人一直思考的问题。
发明内容
针对上述问题,本发明提供一种杠杆重力自加压式发电设备。
本发明的具体技术方案是:一种杠杆重力自加压式发电设备,包括发电机组,还包括存水箱,所述存水箱内设置有小存水箱,所述小存水箱壁上安装有能够让存水箱内的存水流入小存水箱的若干个进水浮阀开关,所述小存水箱中安装有按压式开关I,所述按压式开关I上面对应设置有能够转动,并按压按压式开关I的放水触碰横杆I,所述小存水箱的按压式开关口I的底部连通设置有放水软管I。
所述存水箱下方设置有自动加重放水桶,所述自动加重放水桶包括桶体,所述放水软管I出水口延伸入桶体内,所述桶体上竖直安装有放水触碰竖杆I,所述放水触碰竖杆I能够随着自动加重放水桶上下运动顶压放水触碰横杆I。
所述桶体内同样安装有按压式开关II,所述桶体口上转动安装有能够向下按压按压式开关II的放水触碰横杆II;桶体底部对应按压式开关II 的底部连通设置有放水软管II,所述放水软管II与接水箱I箱连通。
所述桶体上还安装有活动接,桶体通过活动接转动或铰接有加重杠杆,其另外一端安装有加重砣,加重杠杆架设在支撑点上。
所述接水箱I上表面安装有放水触碰竖杆II,自动加重放水桶下降时,放水触碰竖杆II能够向上顶压放水触碰横杆II。
所述桶体底部还安装有压力杆,压力杆下方相对应安装有翘杆组件,所述翘杆组件包括位于压力杆下方的翘杆I,压力杆能够下压翘杆I,使翘杆I另外一端翘起,该端翘杆I上方则对应设置有翘杠II,压力杆向上升起后所述翘杆I能够复位重新翘起,翘杠II通过翘杆安装固定轴转动安装在变速齿轮箱上,翘杠II靠近变速齿轮箱一端设置有半椭圆形齿轮,而在变速齿轮箱上则对应设置有啮合齿轮,半椭圆形齿轮能够与啮合齿轮啮合,并带动啮合齿轮转动从而将动力传输给变速齿轮箱,变速齿轮箱带动所述发电机组。
进一步,优选的是,所述翘杆I下方设置有支点。
进一步,优选的是,还包括拉升弹簧,翘杠II的半椭圆形齿轮下侧或上侧还安装有拉升弹簧,拉升弹簧另外一端则固定在变速齿轮箱上,从而实现翘杆I能够复位重新翘起。
进一步,优选的是,还包括惯性加长轴组件,所述变速齿轮箱通过惯性加长轴组件与发电机组连接,所述惯性加长轴组件包括与变速齿轮箱输出端连接的加长轴,所述加长轴另外一端安装有传动大齿轮,所述发电机组包括发电机,所述发电机转轴端安装有发电机组加长轴,所述发电机组加长轴上安装有能够与传动大齿轮啮合的传动小齿轮。
进一步,优选的是,所述接水箱I通过水锤循环管道与存水箱连通,所述水锤循环管道上安装有水锤泵,所述水锤泵下方安装有与接水箱II连通的水锤泵余水接水管,所述水锤泵的余水通过水锤泵余水接水管流入接水箱II内。
进一步,优选的是,在所述加重杠杆中部位置上表面设置有挡板罩,挡板罩内设置可滚动的惯性铁球。
进一步,优选的是,所述加长轴上还安装有惯性轮。
进一步,优选的是,所述加长轴穿过支架上的轴承。
进一步,优选的是,还包括接水箱II,所述接水箱II箱内还安装有一个或多个浮阀电源触碰水泵,浮阀电源触碰水泵的循环水用管道和存水箱1连通。
进一步,优选的是,所接水箱I沿边口处安装有防外漫的排水管I,排水管I则与接水箱II连通。
本发明的有益效果是:采用杠杆结合重力原理,通过杠杆组件和自动加重放水桶设计,实现通过水流、自动加重放水桶等的重力和惯性,对翘杆的一端施加力,使翘杠另一端的半椭圆形齿轮轻松带动啮合齿轮转动,达到储能并发电目的。解决现有新能源受环境影响和新能源设备运行自身耗电大的问题,并实现节能、环保的目的,可以减少自身耗电量大的损耗,向外输送的电量较大,且结构简单,体积不大,可靠性较好等。
附图说明
图1为本发明杠杆重力自加压式发电设备的结构示意图一。
图2为本发明杠杆重力自加压式发电设备的结构示意图二。
图3为本发明杠杆重力自加压式发电设备的变速齿轮箱一侧的翘杆组件与变速齿轮箱上的啮合齿轮啮合时的结构示意图。
图4为本发明杠杆重力自加压式发电设备的惯性加长轴组件与发电机组安装结构示意图。
图5为本发明杠杆重力自加压式发电设备的自动加重放水桶局部结构示意图。
图6为本发明杠杆重力自加压式发电设备的存水箱内设置小存水箱的结构示意图。
图7为本发明杠杆重力自加压式发电设备的按压式开关结构示意图。
上图中:1-存水箱,101-放水软管I,102-按压式开关I,103-放水触碰横杆I,104-放水触碰竖杆I,105-小存水箱,106-进水浮阀开关;
1021-开关;1022-弹簧,1023-加长压杆,1024-固定弹簧架,1025-上下活动支点,1026-提升杆,1027-半圆球阀;
2-接水箱I,201-水锤循环管道,202-水锤泵,203-放水触碰竖杆II,204-排水管I,205-水锤泵余水接水管;
3-自动加重放水桶,301-桶体,302-按压式开关II,303-放水触碰横 杆II,304-放水软管II,305-压力杆,306-活动接;
401-加重杠杆,402-支撑点,403-加重砣,404-惯性铁球;405-挡板罩;
5-接水箱II,501-循环水用管道,502-排水管II,503-浮阀电源触碰水泵;
6-翘杆组件,601-翘杆I,602-翘杠II,603-支点,604-翘杆安装固定轴,605-拉升弹簧,606-半椭圆形齿轮;
701-变速齿轮箱,702-变速齿轮组,7021-啮合齿轮;
8-惯性加长轴组件,801-加长轴,802-惯性轮,803-支架,804-轴承,805-传动大齿轮,806-传动小齿轮;
9-发电机组,901-发电机,902-发电机组加长轴。
具体实施方式
为了使本发明所解决的技术问题、技术方案更加清楚明白,以下结合附图及实施例,对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用于解释本发明,并不用于限定本发明。
在本发明的描述中,需要理解的是,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
如图1至图7所示,一种杠杆重力自加压式发电设备,包括发电机组9,发电机组9包括发电机901和发电机组加长轴902,发电机901转轴连接有发电机组加长轴902,该结构为现有发电设备常用手段,当然也可以设置多根长轴与发电机901转轴连接,以上结构为现有结构。
还包括存水箱1,其为顶部敞开式的箱体结构,在本实施例中为方形结构,当然也可以是其他形状的箱体,如桶形等均在本发明的技术方案范围内,存水箱1内应提前预存好一定量的液体,本发明采用的液体可以是自然水或稀释油液或防冻稀释液等,是根据当地的环境而定,在本实施例中,发明人优选了水为动力介质。
在存水箱1内部中间位置安装有小存水箱105,小存水箱105具有独 立的空间,小存水箱105将存水箱1内的水隔开,小存水箱105顶边的高度需要同存水箱1顶边的高度一样高或超过,从而防止存水箱1内存水从小存水箱105顶边高位漫入到小存水箱105内。
在小存水箱105中、下部位的内壁上设置有一个或多个进水浮阀开关106,进水浮阀开关106为现有技术,如其广泛使用于马桶冲水桶中,自动加重放水桶3升降的快慢是由进水浮阀开关106安装的数量决定的,进水浮阀开关106的浮球要设置在小存水箱105中,存水箱1的内存水是通过进水浮阀开关106进入到小存水箱105的,即小存水箱105通过进水浮阀开关106向其内补充水,从而实现向下流量的控制。
小存水箱105内部设置安装有按压式开关I102,按压式开关I102上面对应设置有能够转动,并按压按压式开关I102的放水触碰横杆I103,放水触碰横杆I103中部铰接在存水箱1边,也可以单独设置铰接支杆,放水触碰横杆I103通过上下摆动能够按压按压式开关I102,同时放水触碰横杆I103也可以左右转动,按压式开关I102能够控制小存水箱105开闭放水,因此转动放水触碰横杆I103能够实现整个杠杆重力自加压式发电设备的起动和关闭,在实践使用将放水触碰横杆I103转动移开时,整个设备处于停止状态,当需要将储存的水体势能转化为电能时,仅需将放水触碰横杆I103转动回工作位置,即能下压按压式开关I102,设备开始放水,通过水的重力和惯性,对翘杠的上下顶压撬动,带动椭圆型齿轮来回弧形运动,使其他变速齿轮等转动,从而实现能量转化的目的。
在小存水箱105内的按压式开关口I102的底部连通设置有放水软管I101,放水软管I101应优选能收缩并折弯的高压软管,其需要能满足配合自动加重放水桶3上下起落,同时也是小存水箱105的水通往自动加重放水桶3的通道。
存水箱1侧壁上设置有防止存水箱水过多的排水管II502,防止存水箱1满出,排水管II502与接水箱II5连通。
存水箱1下方设置有自动加重放水桶3,本实施例中只设置了一组自动加重放水桶3,当然根据具体实施情况可设2组,也可设置若干组,根据发电机的大小而定,其均应包含在发明的保护范围之内。
自动加重放水桶3包括桶体301,放水软管101出水口延伸入桶体301 内,当然也可以不延伸入桶体301内,放水软管101出水口正对桶体301口,但其容易导致放水时液体飞溅出桶体301外,其为本发明技术方案的等同替换,均应包含在本发明的保护范围之内;桶体301上竖直安装有放水触碰竖杆I104,放水触碰竖杆I104能够随着自动加重放水桶3上下运动顶压放水触碰横杆I103。
桶体301内同样安装有按压式开关II302,按压式开关II302与上述的存水箱1中的小存水箱105内的按压式开关I102结构、性能一样。按压式开关I102和按压式开关II302其内部的大部分结构和现有技术相同,都广泛使用于马桶冲水桶中,在本发明实施例中,发明人对结构部件的尺寸和大小做了进一步调整,减轻了按压式开关向下按所受到的大阻力和按压式开关回位阀门的阻力,利用杠杆原理,对杠杆做了尺寸上的延长,对平板型的上下活动阀设计为半圆体型,半圆体型阀在水下提升回位时比平板型所受到水的阻力小,回位更快。
如图7所示,为按压式开关I102和按压式开关II302的结构示意图,包括开关1021,开关1021下方安装的弹簧1022,弹簧1022安装在固定弹簧架1024上,加长压杆1023、上下活动支点1025、提升杆1026等,以上均有现有结构,其结构、性能均为现有技术,其中对加长压杆1023进行了延长,将平板型阀门设计为半圆球阀1027,减轻了按压式开关向下按所受到的大阻力和按压式开关回位阀门的阻力,其为本发明技术方案的进一步技术方案,其是否在实施过程采用,并不影响本发明技术方案的实现。
桶体301口上安装有可向下按压按压式开关II302的放水触碰横杆II303,放水触碰横杆II303可以沿桶体301边缘上下运行,即放水触碰横杆II303中部铰接在桶体301边缘,其工作原理和机构与上述的放水触碰横杆I103类似,从而实现下压按压式开关II302,桶体301底部对应按压式开关II302的放水口处安装有放水软管II304,放水软管II304软管出水口与接水箱I2箱连接。
桶体301上还安装有活动接306,桶体301通过活动接306转动或铰接有加重杠杆401,优选的活动接306设置在桶体301的上边缘桶口处,其结构可以是加重杠杆401端带有两孔的轴孔,用圆轴卡把桶体301连接 在一起,组成一个活动接306,当然也可是其他实现铰接或转动连接结构,如直接使用铰链等;前者这样安装的好处是,桶体301始终保持垂直朝下,桶内水不歪斜外渗水,当桶向下沉时加重杠杆401的活动接306的小压板压住桶体边沿,使桶体固定向下受力。
当然,进一步,放水软管101通过连接杆与桶体301连接,保证桶体301上下运动,也可以在桶体301外壁设置滑块,而对应的设置有竖直方向的滑轨,滑块能够沿滑轨运动,从而保证桶体301上下运动的稳定,及桶体301有较好的着力点,桶体301不会左右晃动或倾斜。其为本发明技术方案的进一步技术方案,其是否在实施过程采用,并不影响本发明技术方案的实现。
加重杠杆401的一端与桶体301相连接的,其另外一端安装有加重砣403,加重杠杆401中心架设在支撑点402上,实现一个简单的杠杆设计,在加重杠杆401中部位置上表面设置有挡板罩405,挡板罩405内设置可滚动的惯性铁球404。
惯性铁球404的重量大小必须是加重砣403能翘起惯性铁球404和自动加重放水桶3(空桶)和它所连接的配件,也必须是自动加重放水桶3装水后能翘起加重砣和铁球重量。来确定惯性铁球404重量大小。惯性铁球404在杠杆上的活动空间,以杠杆支点为中心点,挡球的挡板与档板之间杠杆的长度,不能超过杠杆总长度的1/3的位置安装档板。档板与挡板之间的上方安装有半圆形罩子,罩子把惯性铁球罩在挡板与档板、罩子与杠杆之间,防止惯性铁球脱落,惯性铁球404主要有两种作用,①加速起落速度②靠惯性增加力度。
自动加重放水桶3的底部的放水软管II304与接水箱I2连通,接水箱I2上表面安装有放水触碰竖杆II203,自动加重放水桶3下降时,放水触碰竖杆II203能够向上顶压放水触碰横杆II303,利用杠杆原理,放水触碰横杆II303实现下压按压式开关II302,自动加重放水桶3开始放水,水会顺着放水软管II304进入接水箱I2中。
接水箱I2外底部还安装一个或多个水锤泵202,无需耗电用水锤循环管道201把水循环运送到存水箱1内,同时在接水箱I2沿边口10厘米处安装防外漫的排水管I204,其主要目的是防止接水箱I2箱内水太满, 往外到处渗水,排水管I204则与接水箱II5连通。
接水箱II5优选的设计,在接水箱I2的水锤泵202下方,因为水锤泵202使用过程中会有余水,此时水锤泵202的余水能够通过水锤泵余水接水管205流入到接水箱II5内。
接水箱II5主要为缓存作用,但是也可以设计为水池,接水箱II5箱内还安装有一个或多个浮阀电源触碰水泵503,浮阀电源触碰水泵503的循环水用管道501和存水箱1边沿口向下10厘米处的进水口连接。当接水箱II5箱内水达到一定的高度,浮阀上浮,连接电源开关水泵起动抽水。当水抽到一定程度时,水量减少,浮阀下沉,电源脱离,停止抽水。接水箱II5箱内最好多安装几个高度不一样的浮阀电源触碰水泵。这样就能保正接水箱因故障影响循环水的运行,也为后期检修留多余的时间。
自动加重放水桶3的桶体301底部还安装有压力杆305,压力杆305能够随着自动加重放水桶3升降,即上下运动,压力杆305下方相对应安装有翘杆组件6,翘杆组件6包括位于压力杆305下方的翘杆I601,翘杆I601一端位于压力杆305下方,靠近另外一端处设置有支点603,压力杆305能够下压翘杆I601,使翘杆I601另外一端翘起,该端翘杆I601上方则对应设置有翘杠II602,即靠近支点603则的翘杆I601端上方对应设置有翘杠II602,翘杆I601向上翘起能够向上翘压翘杠II602,压力杆305向上升起后翘杆I601能够复位重新翘起,此处采用的翘杆I601支点的偏心设计,保证了翘杆I601能够复位重新翘起,即保证了翘杆I601保持左高右低的状态,当然也可采用加装拉簧等结构实现,如在翘杆I601远离压力杆305端下侧加装拉簧,使翘杆I601保持左高右低的状态,当然还可以通过重量坨也能使翘杆I601翘起,其均应包含在发明的保护范围之内。
翘杠II602通过翘杆安装固定轴604安装在变速齿轮箱701上,即可以在变速齿轮箱701外壁上开有安装孔,通过翘杆安装固定轴604能够转动安装翘杠II602;当然也可以翘杠II602延伸入变速齿轮箱701内,在变速齿轮箱701内壁上开有安装孔,通过翘杆安装固定轴604能够转动安装翘杠II602。
对于翘杆的外形设计,可以根据设计情况进行设计,只要省力设计多 样式翘杠都可以的,如设计成T形,这样可以用多组自动放水桶装置,其为本领域的公知常识。
翘杠II602靠近变速齿轮箱701一端设置有半椭圆形齿轮606,而在变速齿轮箱701上则对应设置有啮合齿轮7021,针对上述翘杠II602设计,即可以在变速齿轮箱701输入端对应安装有啮合齿轮7021,即在外侧变速齿轮箱701输入端安装啮合齿轮7021,半椭圆形齿轮606能够与啮合齿轮7021啮合,并带动啮合齿轮7021转动,啮合齿轮7021则能带动设置在变速齿轮箱701内的变速齿轮组702转动,经过大小齿轮的变速,将转动传输给惯性加长轴组件8的加长轴801;也可以设计为翘杠II602延伸入变速齿轮箱701内,啮合齿轮7021设计在变速齿轮箱701内,啮合齿轮7021则能带动设置在变速齿轮箱701内的变速齿轮组702转动。
翘杠II602的半椭圆形齿轮606下侧还安装有拉升弹簧605,拉升弹簧605另外一端则固定在变速齿轮箱701上,拉升弹簧605其主要目的是让翘杠II602保持翘起状态和被翘杆I601翘起后回复原位,即当翘杆I601向上翘压翘杠II602左端,导致翘杠II602右端向下运动后,设置在半椭圆形齿轮606下侧的拉升弹簧605被压缩变形,在翘杆I601回位后,拉升弹簧605的回复力让翘杠II602回复原位,当然拉升弹簧605也可以安装在半椭圆形齿轮606上侧,其也能实现让翘杠II602保持翘起状态和被翘杆I601翘起后回复原位技术效果。
当然,也可以通过另一种技术方案,即也可以不用半椭圆形齿轮606,直接采用现有技术,如能上下收缩并能旋转的压力手把,此手把为家用的拖把,该种拖把是脱水拖把,拖把放入到专用能旋转的脱水桶里,手向下一按拖把下方就能开始旋转脱水,使拖把很快与水分离。只要把拖把上手把与上述的翘杠II602(去掉半椭圆形齿轮606)连接,把翘杠II602和拖把上端焊接在一起(角度为90度),把拖把下端焊接齿轮,变速齿轮箱平放,使齿轮平行运作,再把焊有拖把齿轮的一端与变速齿轮箱啮合齿轮7021啮合,其余不变。
变速齿轮箱701输出端与加长轴801连接,加长轴801穿过支架803上的轴承804,在加长轴801上固定连接有惯性轮802,加长轴801端则安装有传动大齿轮805,传动大齿轮805与安装在发电机组9的发电机组 加长轴902上的传动小齿轮806啮合传动,从而带动发电机901工作。
设备工作流程为:当放水触碰横杆I103安装或移动回工作位置,即能下压按压式开关I102,存水箱1开始放水,存水箱1的水通过放水软管I101流入下方的自动加重放水桶3中,自动加重放水桶3因流入的水量增多从而向下运动,自动加重放水桶3的桶体301底部的压力杆305下压翘杆I601翘起的左端,翘杆I601右端则向上翘起,该端向上翘起后能够压翘杠II602左端,导致翘杠II602右端向下转动,该端设置的半椭圆形齿轮606带动啮合齿轮7021转动,经过大小齿轮的变速,将转动传输给惯性加长轴组件8的加长轴801,从而带动发电机901工作,当自动加重放水桶3向下运动到一定位置时,放水触碰竖杆II203能够向上顶压放水触碰横杆II303,自动加重放水桶3开始放水,水会顺着放水软管II304进入接水箱I2中,因为加重杠杆401和加重砣403设计,自动加重放水桶3水量减少开始上升,翘杆I601和翘杠II602复位,自动加重放水桶3上升到一定高度时,放水触碰竖杆I104随着自动加重放水桶3向上运动,再次顶压放水触碰横杆I103,从而通过杠杆组件和自动加重放水桶设计,实现通过水流、自动加重放水桶等的重力和惯性,对翘杆的一端施加力,使翘杠另一端的半椭圆形齿轮轻松带动啮合齿轮转动,达到储能并发电目的。
以上通过具体的和优选的实施例详细的描述了本发明,但本领域技术人员应该明白,本发明并不局限于以上所述实施例,凡在本发明的精神和原则之内,所作的任何修改、等同替换等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种杠杆重力自加压式发电设备,包括发电机组(9),其特征在于:还包括存水箱(1),所述存水箱(1)内设置有小存水箱(105),所述小存水箱(105)壁上安装有能够让存水箱(1)内的存水流入小存水箱(105)的若干个进水浮阀开关(106),所述小存水箱(105)中安装有按压式开关I(102),所述按压式开关I(102)上面对应设置有能够转动,并按压按压式开关I(102)的放水触碰横杆I(103),所述小存水箱(105)的按压式开关口I(102)的底部连通设置有放水软管I(101);
    所述存水箱(1)下方设置有自动加重放水桶(3),所述自动加重放水桶(3)包括桶体(301),所述放水软管I(101)出水口延伸入桶体(301)内,所述桶体(301)上竖直安装有放水触碰竖杆I(104),所述放水触碰竖杆I(104)能够随着自动加重放水桶(3)上下运动顶压放水触碰横杆I(103);
    所述桶体(301)内同样安装有按压式开关II(302),所述桶体(301)口上转动安装有能够向下按压按压式开关II(302)的放水触碰横杆II(303);桶体(301)底部对应按压式开关II(302)的底部连通设置有放水软管II(304),所述放水软管II(304)与接水箱I(2)箱连通;
    所述桶体(301)上还安装有活动接(306),桶体(301)通过活动接(306)转动或铰接有加重杠杆(401),其另外一端安装有加重砣(403),加重杠杆(401)架设在支撑点(402)上;
    所述接水箱I(2)上表面安装有放水触碰竖杆II(203),自动加重放水桶(3)下降时,放水触碰竖杆II(203)能够向上顶压放水触碰横杆II(303);
    所述桶体(301)底部还安装有压力杆(305),压力杆(305)下方相对应安装有翘杆组件(6),所述翘杆组件(6)包括位于压力杆(305)下方的翘杆I(601),压力杆(305)能够下压翘杆I(601),使翘杆I(601)另外一端翘起,该端翘杆I(601)上方则对应设置有翘杠II(602),压力杆(305)向上升起后所述翘杆I(601)能够复位重新翘起;翘杠II(602)通过翘杆安装固定轴(604)转动安装在变速齿轮箱(701)上,翘杠II(602)靠近变速齿轮箱(701)一端设置有半椭圆形齿轮(606),而在变 速齿轮箱(701)上则对应设置有啮合齿轮(7021),半椭圆形齿轮(606)能够与啮合齿轮(7021)啮合,并带动啮合齿轮(7021)转动从而将动力传输给变速齿轮箱(701),变速齿轮箱(701)带动所述发电机组(9)。
  2. 根据权利要求1所述的一种杠杆重力自加压式发电设备,其特征在于:所述翘杆I(601)下方设置有支点(603)。
  3. 根据权利要求1或2所述的一种杠杆重力自加压式发电设备,其特征在于:还包括拉升弹簧(605),翘杠II(602)的半椭圆形齿轮(606)下侧或上侧还安装有拉升弹簧(605),拉升弹簧(605)另外一端则固定在变速齿轮箱(701)上,从而实现翘杆I(601)能够复位重新翘起。
  4. 根据权利要求1所述的一种杠杆重力自加压式发电设备,其特征在于:还包括惯性加长轴组件(8),所述变速齿轮箱(701)通过惯性加长轴组件(8)与发电机组(9)连接,所述惯性加长轴组件(8)包括与变速齿轮箱(701)输出端连接的加长轴(801),所述加长轴(801)另外一端安装有传动大齿轮(805),所述发电机组(9)包括发电机(901),所述发电机(901)转轴端安装有发电机组加长轴(902),所述发电机组加长轴(902)上安装有能够与传动大齿轮(805)啮合的传动小齿轮(806)。
  5. 根据权利要求1所述的一种杠杆重力自加压式发电设备,其特征在于:所述接水箱I(2)通过水锤循环管道(201)与存水箱(1)连通,所述水锤循环管道(201)上安装有水锤泵(202),所述水锤泵(202)下方安装有与接水箱II(5)连通的水锤泵余水接水管(205),所述水锤泵(202)的余水通过水锤泵余水接水管(205)流入接水箱II(5)内。
  6. 根据权利要求1所述的一种杠杆重力自加压式发电设备,其特征在于:在所述加重杠杆(401)中部位置上表面设置有挡板罩(405),挡板罩(405)内设置可滚动的惯性铁球(404)。
  7. 根据权利要求4所述的一种杠杆重力自加压式发电设备,其特征在于:所述加长轴(801)上还安装有惯性轮(802)。
  8. 根据权利要求4或7所述的一种杠杆重力自加压式发电设备,其特征在于:所述加长轴(801)穿过支架(803)上的轴承(804)。
  9. 根据权利要求1所述的一种杠杆重力自加压式发电设备,其特征在于:还包括接水箱II(5),所述接水箱II(5)箱内还安装有一个或多个 浮阀电源触碰水泵(503),浮阀电源触碰水泵(503)的循环水用管道(501)和存水箱1连通。
  10. 根据权利要求9所述的一种杠杆重力自加压式发电设备,其特征在于:所接水箱I(2)沿边口处安装有防外漫的排水管I(204),排水管I(204)则与接水箱II(5)连通。
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