WO2012091467A2 - Appareil de génération d'énergie écologique - Google Patents
Appareil de génération d'énergie écologique Download PDFInfo
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- WO2012091467A2 WO2012091467A2 PCT/KR2011/010263 KR2011010263W WO2012091467A2 WO 2012091467 A2 WO2012091467 A2 WO 2012091467A2 KR 2011010263 W KR2011010263 W KR 2011010263W WO 2012091467 A2 WO2012091467 A2 WO 2012091467A2
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- Prior art keywords
- buoyancy
- tank
- buoyancy tank
- fluid
- pressure
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03B—MACHINES OR ENGINES FOR LIQUIDS
- F03B17/00—Other machines or engines
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03G—SPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
- F03G7/00—Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for
- F03G7/10—Alleged perpetua mobilia
- F03G7/104—Alleged perpetua mobilia continuously converting gravity into usable power
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03G—SPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
- F03G7/00—Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for
- F03G7/10—Alleged perpetua mobilia
- F03G7/104—Alleged perpetua mobilia continuously converting gravity into usable power
- F03G7/107—Alleged perpetua mobilia continuously converting gravity into usable power using an imbalance for increasing torque or saving energy
Definitions
- the technology of extracting the force of gravity and buoyancy by mechanical force to use power directly or operating power generator to produce electric power has simple structure, easy to manufacture and install, generates high efficiency energy and utilizes environmental pollution It is a clean energy, power generation device that can be useful in large-scale power generation facilities, agricultural power, ships and various means of transportation, warm heating, charging of mobile devices, remote areas where mountain transmission facilities are difficult, mountainous areas, deserts, cold or cold areas.
- buoyancy and gravity we want to develop and realize a system that operates with minimum force to generate and utilize maximum energy.
- the auxiliary pressure tank By adjusting the water level by moving the auxiliary pressure tank up and down and applying pressure, it reaches the top dead center without supplying a large amount of fluid, and the buoyancy tank is lowered by the weight installed outside the buoyancy tank and the linkage device installed on the buoyancy tank. It starts and reaches bottom dead center by the potential energy of buoyancy tank. And again induces a rise. The energy generated in this process is transferred to the chain, and one-way clutch is used as direct power or power generator is used to produce power.
- 1 is a cross-sectional view of the buoyancy tank rise of the up and down reciprocating environment-friendly energy generating device.
- FIG. 2 is a cross-sectional view of the buoyancy tank descent of the vertical reciprocating environment-friendly energy generator.
- FIG. 3 is a detailed view of the buoyancy tank descent of the up and down reciprocating environment-friendly energy generator.
- Figure 4 is a cross-sectional view of the rising of the variable buoyancy type eco-friendly energy generating device.
- variable buoyancy generation model eco-friendly energy generating device in descending.
- FIG. 6 is a cross-sectional view of the up and down reciprocating environment-friendly energy generator using an electromagnet.
- FIG. 7 is a cross-sectional view of the up and down reciprocating environment-friendly energy generating device using an electromagnet descending.
- FIG 8 is a perspective view of a part (generator) of the vertical reciprocating eco-friendly energy generator.
- FIG. 9 is a cross-sectional view of the buoyancy-type rotary eco-friendly energy generator.
- FIG. 10 is a side cross-sectional view of the buoyancy tank rotation type eco-friendly energy generating device.
- FIG. 12 is a front view and a partial side view of an environment-friendly energy generating device (cam) that rotates by gravity biasing the weight of the weight to one side.
- cam environment-friendly energy generating device
- FIG. 13 is a front view and a partial side view of an eco-friendly energy generator (rack and pinion) which rotates by gravity to be biased to one side by gravity.
- an eco-friendly energy generator rack and pinion
- buoyancy is the force generated because gravity acts on the fluid. In zero gravity, no buoyancy occurs. In addition, it must be able to continuously extract the energy, for this purpose it will be described in detail with the technical details.
- Buoyancy means the force that rises by the force of gravity of water as much as the volume of water pushed out of an object. The deeper the depth, the greater the buoyancy strength.The buoyancy of a certain size of buoyancy body receives the same buoyancy force regardless of the depth in the same medium. The advantage is that the pressures on the sides of the object cancel each other and the area of the upper and lower parts The buoyancy is generated by the difference in pressure. Therefore, if the depth is deep, the pressure is increased, but the pressure on the upper and lower areas of the buoyancy body increases at the same rate, and thus receives the same buoyancy.
- the strength of the buoyancy is changed. If the air space is formed on the upper and lower buoyancy body and the variable buoyancy generating tank is installed, the area of pressure applied to the upper and lower parts of the buoyancy body may be changed. After installing an adduct having a different area in the buoyancy body under water, applying a negative pressure between the buoyancy body and the adduct can change the area in which the hydraulic pressure acts.
- buoyancy Normally, buoyancy requires space for the buoyancy to continue to rise, and there must be a continuous supply of fluid to fill the lower part of the buoyancy as the buoyancy rises. At this time, there is no energy gain and only loss. It also causes problems that must be endlessly high.
- the up and down reciprocating environment-friendly energy generating device is preferably manufactured in a cylindrical shape or a square pillar shape, except in special cases.
- the outer cylinder 101 is composed of a device for directly using the power generated by buoyancy and gravity or by operating the generator 124 to convert into electrical energy.
- the bottom of the buoyancy tank 102 should be wider than the variable buoyancy generating tank 106, and the partition wall 103 should be narrower than the variable buoyancy generating tank 106. Between the partition wall 103 and the partition wall 103 The wider the gap, the more buoyancy occurs. The buoyancy generated at this time has a function of replacing the buoyancy body (107).
- the partition wall 103 When the packing 104 of the partition wall 103 is made larger than the thickness of the material constituting the partition wall 103, the partition wall 103 becomes a positive buoyancy (a state in which an object that floats in water floats) and the partition wall 103 is formed. It floats itself. Appropriate size is neutral buoyancy (still at any point in the water), and when small, voice buoyancy (buoyant but sinking). Therefore, it is preferable that the size of the packing 104 be manufactured so that the partition wall 103 can be sequentially enlarged or folded.
- the size of the fixed air space 135 and the variable buoyancy generating tank 106 affects the rising speed and the buoyancy intensity of the buoyancy tank 102 located on the upper side.
- Water is introduced into the variable buoyancy generating tank 106 to pressurize air, and the force acts to push up the entire upper area of the inner side of the variable buoyancy generating tank 106 to the pressure of the corresponding depth.
- the volume of air blows up, and when the water depth is 10.3M, it is subjected to 2 atmospheres of pressure combined with atmospheric pressure. The volume decreases to 1/2 and decreases to 1/3 at 20.6M. Therefore, the fixed air space 135 is installed to prevent the sudden rise of the buoyancy tank 102 and to facilitate the operation of the cylinder structure.
- the wire 139 which has been wound to a length limited to the spiral spring built-in drum 137, pulls the trigger structure to retract the cylinder structure by elasticity of the compression spring 132. It expands quickly and closes the valve 133 while a negative pressure is applied to the variable buoyancy generating tank 106. In the state in which the negative pressure is applied, the pressure pushing up in the variable buoyancy generating tank 106 disappears because the hydraulic pressure does not reach.
- the fixed air space 135, the variable buoyancy generating tank 106, and the partition wall 103 are integrated to descend by gravity along with the weight 105 of the buoyancy tank 102.
- the corrugated pipe for protecting the link chain 128 is installed on the buoyancy tank 102, and the air passage hole on the buoyancy tank 102 is sealed and the check valve 108, the packing 109, and the water level adjusting tank ( 116), the hose 127, the bellows type trimmer 112 may be removed and sealed, and then the device may be operated.
- the devices may be operated without removing them. If the height is continuously increased with a small amount of fluid between the buoyancy tank 102 and the outer cylinder 101, buoyancy can be continuously generated to a certain height.
- the water of the water level control tank 116 outside the outer cylinder 101 between the outer cylinder 101 and the buoyancy tank 102 can be smoothly exchanged with each other through the hose-type connecting pipe 127. It is possible to raise the water level using the rack and pinion, the hoist or the pulley and the wire.
- the buoyancy tank ( 102 When the water level control tank 116 is positioned higher than the water level between the buoyancy tank 102 and the outer cylinder 101, the buoyancy tank ( 102 generates buoyancy in association with the fixed air space 135 and the variable buoyancy generator 106 and rises until the water level is the same.
- the quantity of the water level adjusting tank 116 should not be insufficient when the buoyancy tank 102 reaches the highest point, and should operate the valve 129 including the buoyancy sphere when the buoyancy tank 102 is located at the bottom dead center. do. It is useful to make the size of the water level control tank 116 variable.
- buoyancy tank 102 generates buoyancy overcome the weight of the buoyancy tank 102 structure itself in the fluid and the weight of the fluid or solid that acts as the weight 105 to generate gravity within the buoyancy tank 102. As much empty buoyancy space as possible is required. Therefore, although there is some difference depending on the weight 105 material, an empty space of about 60% of the total volume of the buoyancy tank 102 is required inside the buoyancy tank 102. Position change and the rising speed of the water level control tank 116 immediately acts on the buoyancy tank (102). At this time, the amount of water in the water level control tank 116 should not be insufficient even when the buoyancy tank 102 reaches the top dead center.
- the height of the water level control tank 116 should be maintained at a higher position by a certain distance when the buoyancy tank 102 reaches the top dead center so that the buoyancy generated in the buoyancy tank 102 can be generated uniformly without weakening to the top dead center. have.
- the force used for vertical movement of the buoyancy tank 102 may use electricity produced by self-generation, may use pulleys and wires, and may use a sensor to detect the top dead center and the bottom dead center of the buoyancy tank and The submotor can be operated using and pinions.
- the hoist to operate up and down to constitute a device for smooth power generation.
- the wire drum (114) is fixed to the trimming mechanism and the other end is embedded with a spiral spring (a spring installed inside a clockwork or a tape measure and attracting a tape measure).
- the wire 113 of the bellows-type trimming mechanism 112 is released by the wire 113 fixed to the side, and the water level adjustment tank is higher than the water level between the buoyancy tank 102 and the outer cylinder 101 by releasing the wire. Move quickly to induce an increase in buoyancy tank 102.
- a variable speed winch is installed on the upper side of the buoyancy tank and a wire drum is wound around the wire 117 to sense the top dead center and the bottom dead center of the buoyancy tank 102 through sensors. And accordingly, the water level control tank 116 can be operated at a desired speed up and down sequentially.
- the buoyancy tank 102 includes the weight of the structure itself and the weight of the water or various fluids (salts, antifreeze mixtures, various oils) or solids (metals, accumulators) and the bulkheads 103 to generate gravity therein. Power can be generated while descending by weight.
- the buoyancy tank 102, the fixed air space 135, and the variable buoyancy generator 106 are equal to or equal to the total weight of the fixed air space 135 and variable to generate a force.
- the size of the buoyancy generating tank 106 should be selected. And the water level between the buoyancy tank 102 and the outer cylinder 101 should be appropriately increased.
- the bulkhead 103 or the corrugated pipe is made of rubber, fiber, and polymer compound that can withstand the pressure and corrosion between the steel wire and the steel wire in a spiral steel wire structure like a bellows spring.
- the buoyancy tank 102 continues to ascend in conjunction with the fixed air space 135 and the variable buoyancy generating tank 106 to form an air space in place of the fluid at the bottom, thereby providing a small amount of fluid supply without a large amount of fluid input. Allow buoyancy to continue to occur.
- the magnitude of the force acting on the buoyancy tank 102 becomes larger as the depth to the buoyancy tank 102 increases.
- the spacing between the buoyancy tank 102 and the outer cylinder 101, the bulkhead tank 103 or the corrugated pipe and the outer cylinder 101 only needs to be maintained so as not to interfere with the rise and fall of the buoyancy tank 102. . This is illustrated by the fact that tens of thousands of tons of boats float only the same height, whether in a narrow dock or at sea.
- the size of the energy generating device can be made in the size of tens of thousands of tons for the large power plant, and can be produced in the small size of less than 1Kg.
- a fixed air space 135 and a variable buoyancy generating tank 106 are installed below the buoyancy tank 102 under a predetermined space from the buoyancy tank 102.
- This space is a space for towing and generating buoyancy while supporting the entire buoyancy tank 102 and the lower partition wall 103 or the corrugated pipe.
- the pressure of the fluid acts as a greater force toward the bottom, the pressure of the water level is applied to the whole fluid.
- the upper part of the partition tank 103 is the downward force and the side surface of the partition tank 103 is applied to the lateral pressure Receive.
- the force received by the upper portion of the partition wall 103 acts as a force to reduce the amount of weight in the buoyancy tank 102.
- the correlation between the structure and the force serves to cause the buoyancy tank 102 to rise without additional energy input.
- the sum of the total lengths must be longer than the buoyancy tank 102 stroke distance so that the buoyancy tank 102 can reach the top dead center.
- the packing grooves made of waterproof rubber, urethane, silicon, etc. by packing a portion of the bulkhead tank 103 and the bulkhead tank 102 and the packing groove 403 in the upper or lower portion of the packing groove ( 403).
- the packing 104 is embedded in the small roller 401 at a predetermined interval in the sliding portion to allow the packing 104 to slide smoothly. This is to reduce friction and maintain water tightness when sliding under pressure.
- the buoyancy body 107 can be attached to the buoyancy tank 102 so as to offset the weight of the partition tank 103 itself in the fluid, thereby making it possible to smoothly operate the buoyancy tank 102 up and down. This point can minimize the force that is applied when the buoyancy tank 102 to pull the partition wall 103. When the buoyancy and gravity in the fluid are equal, they remain stationary at any position in the fluid.
- the corrugated pipe may be used instead of the bulkhead tank 103.
- the corrugated pipe may be formed in a circular, square, or polygonal shape.
- the advantage is to be the same as the shape of the buoyancy tank 102, and the corrugated pipe and the outer tube 101 may be used. This is to minimize the amount of fluid injected into the system.
- the outer cylinder 101 should be manufactured in the same shape.
- the steel wire should be made to increase or decrease the diameter of the corrugated pipe gradually little by little, and spread the coated rubber, plastic, waterproof fiber, polymer compound, etc. between the steel wire and the wire. Use long structures when folded and minimal volume when folded.
- the role of the corrugated pipe is necessary for generating power in a narrow space, which is mainly required for mounting in a car engine room or moving equipment, etc. It can be useful for generating buoyancy and gravity in a limited space while reducing the weight of the vehicle.
- the fluid between the buoyancy tank 102 and the outer cylinder 101 to the fluid of the fluid tank 121 using a piston pump 120 or a high pressure pump to the pressure tank When stored as a compressed fluid and applied to 119, it is possible to obtain improved power with high speed buoyancy.
- the pressure applied to the fluid is about 10.3M in the case of water pressure, and the force received when the height of the water between the outer cylinder 101 and the lower portion of the buoyancy tank 102 is about 10.3M is about 2 atmospheres including atmospheric pressure. It is enough. Therefore, even though the buoyancy tank weighs tens of thousands of tons, the buoyancy force acts only on the bottom of the bulkhead.
- the outer cylinder 101 and buoyancy tank 102 Minimize the friction between the inserting the small roller 401 in the close contact portion of the packing 103 by reducing the frictional force due to excessive close even if the water pressure over a certain pressure to smooth the expansion and contraction of the partition wall 102 Even if there is a slight gap, if the hydraulic pressure is applied, the packing 104 is manufactured to be in close contact with the bulkhead tank.
- the buoyancy body 107 capable of offsetting the weight of the partition wall itself may be installed in each partition wall. The size of the buoyancy body 107 is gradually reduced in order to be towed to be towed in turn.
- the generator 601 will be described based on FIG. 8.
- the vertical movement of the buoyancy tank 102 is performed by using a chain 128, a belt, a hydraulic cylinder, a rack, and a pinion.
- a generator 124 By using the generator 124 to operate or to directly rotate the shaft 606 of the ship, vehicle, machinery is used as a power source to replace the engine.
- the one-way clutch 125 alternately rotates in a bandage direction as shown in the figure, and is located on both sides of the chain passing through the buoyancy chain passage 115 and the sprocket, respectively, and alternately reciprocates the link chain 128. It delivers to the generator so that it always turns in one direction.
- variable buoyancy type eco-friendly energy generator It will be described another embodiment applying the basic operating principle of the eco-friendly energy generating device. For convenience of explanation, it is called variable buoyancy type eco-friendly energy generator.
- variable buoyancy tank 803 The lower the pressure, the higher the external water pressure is, but the pressure difference between the valve remains the same, but the pressure difference is greater. The lower the pressure, the lower the output due to the increased buoyancy.
- the method of installing the pump and adding or subtracting the quantity of the weight 817 is also effective, and when the solenoid valve 804 is opened with precise control, buoyancy is generated and the sudden drop can be adjusted. Reverse closing can also give the opposite effect.
- Fig. 5 shows a state in which the device tries to ascend after reaching the bottom end, and the lower limit switch 802 operates the solenoid 807 and secures the inner cylinder in the received state by the stopper 815.
- all solenoid valves 804, 808, and 814 are opened and external water pressure is applied, water (non-compressibility, volume invariant) flows into the variable buoyancy generating tank 805 to supply air (compressibility, volume change) to the pressure of the corresponding depth. And the air pushes up the upper plate inside the variable buoyancy generator (805).
- the pressure of a large area inside the variable buoyancy generating tank 805 and the buoyancy force acting on the variable buoyancy tank 803 and the upper corrugated pipe 811 are overcome by the weight of the weight and rise with great force.
- the pressure pump 810 When the water pressure is applied to the non-compressible water by the pressure pump 810, a small amount of water can be applied with high pressure. For example, only 5 atm corresponds to the pressure of natural water of about 41M depth. This pressurization results in a significant speed increase and an increase in generated energy.
- the conditions that enable pressurization are when the strength of the corrugated pipe is secured or when it is manufactured with a bulkhead structure that withstands water pressure sufficiently.
- This rise and fall is converted to the reciprocating motion of the link chain 813, according to the power generation or power extraction method of the above-mentioned up and down reciprocating environment-friendly energy generator.
- variable buoyancy type eco-friendly energy generating device can be used as a substitute for the engine of a car that must exert great force in a narrow space. In other words, you can talk to the majority and replace the engine with the power storage device.
- This device is different from the external water pressure exclusion method using the solenoid valve of the variable buoyancy generation model eco-friendly energy generating device and gives air pressure to the upper or lower, and the upper and lower air pressure or the pressure through the water in and out
- the present invention relates to a method of maximizing, extracting and using buoyancy and gravitational force by expanding and reducing the cross-sectional area of a corrugated pipe.
- the pressure is the upper space 516
- the pressure is maintained at high pressure and the air pressure in the lower space 517 is lowered. Therefore, the weight of the weight 507 and the buoyancy loss due to sound pressure generation work together at the same time, so that the buoyancy tank 502 descends and transmits power to the link chain 508.
- a water gate is installed at the lower portion of the upper outer corrugated pipe 511 and the lower outer corrugated pipe 511 to freely flow in water, and the upper pipe of the upper solenoid valve 512 is extended to a hose and installed near the top.
- the upper and lower reciprocating type, variable buoyancy generating mold, the upper and lower reciprocating type eco-friendly energy generating device using electromagnets the generator is installed in the upper part, and the pipe is connected to the bulkhead tank or the corrugated pipe so that sufficient air is intake and exhaust in the lower part, After forming the link chain passage part to make it watertight, that is, it can be obtained even if it is installed in a somewhat deep sea, lake or other water without an outer cylinder.
- the buoyancy body 202 can be continuously generated.
- the buoyancy tank starts to rise when the bottom portion (6 o'clock) is raised, and the fluid on the upper side of the buoyancy body 202 moves to the fluid passage.
- the solenoid valve 212 installed on the right side is the pressure sensor 213.
- the solenoid valve 212 opened by the left side and the left side of the solenoid valve 212 is released by the pressure sensor 123.
- the locked state serves to prevent the retraction of the buoyancy body 202.
- the freely moving sensor weight 214 pressurizes the solenoid valve 212.
- the buoyant fluid is interlocked sequentially through the pipe 206.
- the buoyant fluid is a pressure pump 314. Pressure by To increase the rotation of the device and to increase the buoyancy of the buoyancy tank 202.
- an appropriate air space 215 is formed in the fluid passage 305, so that the pressure is lower than that of the buoyancy tank.
- the solenoid valve 212 is properly interlocked with the proximity sensor or the water level sensor, the efficiency of the device can be increased.
- an appropriate air space is formed in the fluid passage to lower the pressure than the lower portion of the buoyancy body 202 and the buoyancy tank rises rapidly when the air is reduced in volume.
- the pressurizing device is a piston pump or a hydraulic pump operated by a motor whose rotational speed is controlled, and when the pressure is applied to the fluid, the ascending speed of the cylinder increases or decreases depending on the degree of pressure.
- the increase and decrease of the ascending speed of the cylinder is directly related to the amount of energy generated while determining the rotational speed of the shaft. This feature allows the driver to smoothly adjust the driving speed in connection with the accelerator of equipment that requires the reduction of the driving speed.
- a spiral spring (a spring installed inside a clockwork or a tape measure) is installed and wound on the central axis of the one-way clutch 208 ( When the 210 is towed by the buoyancy body 202, the one-way clutch 208 rotates to transmit the force to the shaft 307 by rotating the sprocket 207 is installed on the central axis.
- the power generating device acts as a force to turn the entire power generator clockwise by the principle of the lever.
- the bulkhead tank 205 is empty and easily rises.
- the entire apparatus continues to generate power by continuous rotational movement.
- This device has the advantage of installing the sprocket on the shaft 207 and applying the load directly to the load, as shown in Figure 9 the rotational force of the entire device is transmitted to the chain 313 by the gear 310 to the fluid clutch ( After 318 is used as a generator 316 or other power source.
- the outer cylinders 214 can avoid the interference with each other, and a large outer cylinder 201 can be installed in a limited space, thereby obtaining a large force.
- the generated power is divided into the rotational force of the shaft 307 and the rotational force of the entire outer cylinder 201.
- the rotational force of the shaft 307 is a link chain connecting the gear 310 and the generator 316.
- the generator 316 is driven by the 313.
- the rotational force of the entire outer cylinder 201 is transmitted to the generator 316 by linking the link chain 313 with the fluid clutch 318 via the gear 310.
- the oil in the hydraulic oil tank 315 is operated by the hydraulic pump 314 to apply pressure to the inside of the apparatus through the pipe 311.
- an energization device for operating the hydraulic pump is installed to prevent twisting of the wire.
- FIG. 11 is referred to as another configuration device of the rotation type eco-friendly energy generating device as an air space expansion and reduction type eco-friendly energy generating device.
- the corrugated pipe 710 is filled with a circular structure (side cross section is rectangular), that is, the airtight buoyant body 704 that contains air in the gravity generating chamber 702 and slightly At least eight corrugated pipes 710 and an air space 703 enlargement and reduction device (hereinafter, referred to as a cylinder for convenience of description) in which a weight 706 is installed at one side of the corrugated pipe 710 and the corrugated pipe 710 are provided at intervals.
- the radially symmetrical radial installation constitutes a gravity generating chamber 702.
- the weight 706 is located at the top and the buoyancy body 704 at the bottom so that the buoyancy and gravity act as a force to reduce the volume of the cylinder with each other link 708 draws the buoyancy body 704, the wrinkle pipe 710, the weight 706 toward the inner cylinder 711.
- the outer cylinder 701 is pushed to the opposite side. This operation is to move away from the center when there is a lot of fluid-free air space 703 and to move to the center when the air space 703 is small to bias the distribution of the total amount of fluid to continue to rotate.
- the entire fluid is newly divided into the central axis so that the amount of the left fluid is reduced and the amount of the right fluid is increased. Therefore, the fluid has a force that rotates clockwise due to the difference in weight between the two sides.
- a diaphragm plate 705 is installed in the outer cylinder 702, and the hinge spring is provided in addition to the inner end. 716) and the auxiliary diaphragm 718 having a length exceeding the shortest distance between the end of the diaphragm 705 and the inner cylinder 711 is installed so that the corrugated pipe 710 is enlarged and the fluid is raised only in the 12 o'clock direction.
- This structure has a function of passing the fluid clockwise only when the cylinder is contracted or enlarged, thereby increasing the left and right weight difference of the entire apparatus to improve the rotational force. It also maximizes the friction between the fluid and the circular structure to achieve greater rotational force.
- the fluid inside the pipe bracket 714 may flow to both sides and may be operated. At this time, the fluid in the pipe bracket does not affect the buoyancy and gravity.
- the eco-friendly energy generator can be used as a power generation or power source by producing large and small air spaces.
- a large number of empty spaces can be used in a long space, such as a bus or a large truck. It is a device capable of sustained energy acquisition.
- the outer cylinder 701 is produced in a rectangular, circular shape, but the outer cylinder 701 corrugated pipe 701 and the buoyancy body 704 is preferably produced in the same form.
- FIG. 12 is another configuration device of the rotary eco-friendly energy generating device, which will be referred to and described as an eco-friendly energy generating device which rotates by weighting the weight of the weight to one side by the cam by gravity.
- the weight is attached to the end of the cylinder rod, the bearing is mounted, and the center of the rotating hydraulic cylinder 902 is accurately fixed and Allow oil to run smoothly and install weights 903.
- the end area of the rotary hydraulic cylinder 901 is smaller than the fixed hydraulic cylinder 902 and the length is long, so that the two cylinders have the same volume.
- a soft hose is connected between the two cylinders, and the small piston of the rotary hydraulic cylinder 902 pushes the large piston of the fixed hydraulic cylinder 901 to exert a large force and prevents backflow of the fluid.
- the weight 903 of the rotary hydraulic cylinder 902 pushes or sucks the fluid by gravity and always causes the same operation in that position.
- Rotating the rotating hydraulic cylinder 902 with a small force by rolling motion of the roller cam 905 along the cam guide while rotating clockwise causes the weight of the end of the cylinder rod 906 to move away from the center of the rotor on the right side. On the contrary, on the left side, the weight is pulled toward the center to cause continuous rotation due to the difference in the weight point of action.
- FIG. 13 is referred to and described as an eco-friendly energy generating device which rotates by weighting the weight of the weight by circular gravity to one side by a circular leggear and pinion by another component of the eco-friendly energy generating device.
- This device is similar to the eco-friendly energy generating device that rotates by being biased to one side by the cam, but is a device that operates in place of the circular rack gear 909 and the pinion 908 to rotate the rotating hydraulic cylinder 902.
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Abstract
La présente invention porte sur un appareil qui génère de l'énergie à l'aide de la force de flottaison d'un fluide et de la force de gravité, et qui fonctionne à l'aide de l'énergie pour générer du courant. Un vaisseau externe, un vaisseau flottant, un vaisseau pour générer une force de flottaison variable et un réservoir d'eau pour régler le niveau d'eau sont disposés. Un électroaimant, un cylindre à air, et une structure de type adsorbeur à verre, sont employés pour permettre aux parties supérieure et inférieure de l'appareil, dans lesquelles agit la pression du fluide, d'avoir des surfaces différentes, de façon à générer ainsi une pression négative et à induire ainsi le mouvement vers le haut et vers le bas de l'appareil. Ensuite, des espaces prédéterminés sont formés dans les parties supérieure et inférieure du vaisseau flottant et du vaisseau pour générer une force de flottaison variable, et des parois de séparation constituées par des tuyaux ondulés sont disposées de façon à permettre aux espaces de se dilater ou de se contracter librement. Le vaisseau externe est rempli par de l'eau ou un autre fluide, de sorte que l'appareil puisse répéter le mouvement vers le haut de celui-ci à l'aide de la force de flottaison, et le mouvement vers le bas de celui-ci à l'aide de la gravité, afin de générer de l'énergie. Deux ou plusieurs groupes des appareils selon la présente invention peuvent être installés de façon à générer du courant, et le réservoir d'eau pour régler le niveau d'eau fonctionne de façon à générer de façon continue du courant. L'appareil selon la présente invention peut être utilisé comme source d'alimentation pour faire fonctionner directement ou indirectement un navire, une automobile, des machines industrielles, et analogues, qui nécessitent du courant.
Applications Claiming Priority (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR10-2010-0136450 | 2010-12-28 | ||
| KR20100136450 | 2010-12-28 | ||
| KR1020110035241A KR20120075318A (ko) | 2010-12-28 | 2011-04-15 | 친환경 에너지 발생장치 |
| KR10-2011-0035241 | 2011-04-15 | ||
| KR1020110145002A KR20120075436A (ko) | 2010-12-28 | 2011-12-28 | 친환경 에너지 발생장치 |
| KR10-2011-0145002 | 2011-12-28 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2012091467A2 true WO2012091467A2 (fr) | 2012-07-05 |
| WO2012091467A3 WO2012091467A3 (fr) | 2012-11-29 |
Family
ID=46383734
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/KR2011/010263 Ceased WO2012091467A2 (fr) | 2010-12-28 | 2011-12-28 | Appareil de génération d'énergie écologique |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2012091467A2 (fr) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2016150229A1 (fr) * | 2015-03-20 | 2016-09-29 | 王贺清 | Système de génération d'énergie verte sans consommation d'énergie ni pollution |
| WO2018025102A1 (fr) * | 2016-08-05 | 2018-02-08 | More Swapnil Annasaheb | Machine de génération de combustible |
| WO2024256857A1 (fr) * | 2023-06-12 | 2024-12-19 | Jeyakumar T | Structure d'un moteur d'entraînement permettant de produire de l'énergie en utilisant la force de flottabilité d'un liquide |
Family Cites Families (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR100389064B1 (ko) * | 2001-08-10 | 2003-06-25 | 김정기 | 부력과 중력을 이용한 발전시스템 |
| KR20070007729A (ko) * | 2005-07-11 | 2007-01-16 | 김종인 | 중력과 부력을 이용한 발전장치 |
| JP2007023797A (ja) * | 2005-07-12 | 2007-02-01 | Motoyo Hakoda | 浮力と重力と空気を利用した動力装置 |
-
2011
- 2011-12-28 WO PCT/KR2011/010263 patent/WO2012091467A2/fr not_active Ceased
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2016150229A1 (fr) * | 2015-03-20 | 2016-09-29 | 王贺清 | Système de génération d'énergie verte sans consommation d'énergie ni pollution |
| WO2018025102A1 (fr) * | 2016-08-05 | 2018-02-08 | More Swapnil Annasaheb | Machine de génération de combustible |
| WO2024256857A1 (fr) * | 2023-06-12 | 2024-12-19 | Jeyakumar T | Structure d'un moteur d'entraînement permettant de produire de l'énergie en utilisant la force de flottabilité d'un liquide |
Also Published As
| Publication number | Publication date |
|---|---|
| WO2012091467A3 (fr) | 2012-11-29 |
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