A thermal radiation focused gravity power generation energy storage system
By designing a heat radiation energy-concentrating gravity power generation and storage system, the gravity difference generated by the phase transition of liquid substances is used to achieve efficient energy conversion and storage, solving the problem of insufficient utilization of heat radiation energy in the prior art, and is suitable for various thermal radiation sources.
Patent Information
- Application Number
- CN202010294398.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-04-15
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2040-04-15
AI Technical Summary
The prior art is difficult to effectively utilize the thermal radiation energy of nature for gravity generation and storage, and lacks efficient energy conversion and storage solutions.
A heat radiation energy-concentrating gravity energy storage system is designed to utilize the gravity difference generated by phase change of liquid substances at different temperatures, and generate electricity through hollow ropes and traction wheel systems. Combined with the heat radiation energy-concentrating reflection device and vacuum container, energy conversion and storage is used for temperature differences.
It realizes efficient gravity power generation and energy storage using thermal radiation energy, which is suitable for thermal radiation sources in nature and production activities, and improves energy utilization and environmental protection.
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Figure CN111287920B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a power generation and energy storage system, and in particular to a technical solution of a thermal radiation energy concentration type gravity power generation and energy storage system. Background Art
[0002] Energy and environmental issues have become major issues facing global sustainable development, increasingly attracting widespread attention from the international community and seeking active countermeasures. At present, improving energy utilization, developing and utilizing renewable resources, protecting the ecological environment, and achieving sustainable development have become common actions of the international community. Natural energy such as wind energy, solar energy, and tides are being used to generate electricity. In addition to the known gravity power generation modes such as reservoir energy storage power generation, this patent provides a novel thermal radiation energy-concentrating gravity power generation storage system that can utilize thermal radiation energy generated by nature, such as solar energy, and production activities. Summary of the Invention
[0003] The purpose of the present invention is to invent a thermal radiation-focused gravity power generation and energy storage system. When a liquid substance is at a low position, the temperature of the liquid substance receptor is raised by gathering and absorbing thermal radiation energy. By utilizing the property of an object transforming from a liquid to a gas at its boiling point, the temperature difference between high and low positions causes the object's position and gravity to change, thereby achieving gravity power generation and energy storage. The container of this gravity power generation and energy storage system utilizes a coating that facilitates the absorption of thermal radiation, and the energy focusing device increases the energy of the concentrated and reflected thermal radiation. The thermal radiation-focused gravity power generation and energy storage system of the present invention is suitable for use in situations where various thermal radiation sources occur in nature and production activities.
[0004] In order to achieve the above-mentioned purpose, the technology adopted by the present invention is: a thermal radiation energy-gathering gravity power generation and energy storage system, the power generation and energy storage system includes a tower, a platform, a support frame, a generator, a power feedback unit, a transmission wheel 1, a transmission wheel 2, a transmission belt, a rope clamp 1, a rope clamp 2, a buffer device 1, a buffer device 2, a traction wheel, a hollow rope, a container 1, a container 2, a counterweight object, a battery, and a thermal radiation energy-gathering reflection device; the platform is fixed on the tower; the support frame, the generator, the rope clamp 1, the rope clamp 2, the power feedback unit and the battery are fixed on the platform; the traction wheel is installed on the support frame, and the traction wheel and the transmission wheel 1 are axially connected and fixed; the transmission wheel 2 is fixedly installed on the generator; the transmission belt is annularly installed on the transmission wheel 1 and the transmission wheel 2; the generator is connected to the power feedback unit ; The power feedback unit is connected to the battery; the buffer device 1 and the buffer device 2 are respectively installed at the bottom position below the container 1 and the container 2; the heat radiation energy focusing and reflecting device surrounds the buffer device 1 and the buffer device 2; the rope clamp 1 and the rope clamp 2 are respectively fixedly placed on both sides of the radial direction of the traction wheel to clamp or loosen the hollow rope wrapped around the tooth groove of the traction wheel; the hollow rope is wrapped around the tooth groove of the traction wheel; the two ends of the hollow rope are respectively fixedly connected to the container 1 and the container 2, and the hollow rope and the container 1 and the container 2 form a mutually connected space, which is a vacuum; the material, volume, shape and weight of the container 1 and the container 2 are the same, and the shells of the container 1 and the container 2 are coated with a coating that absorbs heat radiation; the counterweight object is a liquid substance;In the initial state, the container one is at the bottom and the container two is at the top. The counterweight object exists in the liquid state in the container one. The container one receives the heat radiation reflected by the heat radiation focusing and reflecting device and the heat radiation from the surrounding environment, so that the temperature of the counterweight object inside the container one exceeds its own boiling point, and the counterweight object in the container one changes from liquid to gas and then enters the container two through the hollow rope. The external space environment temperature of the container two is lower than the boiling point of the counterweight object inside the container two, so that the counterweight object inside the container two changes from gas to liquid and condenses, and then the weight of the counterweight object in the container two gradually becomes greater than the weight of the counterweight object in the container one. When the container two and the counterweight object inside it and the When the gravity exerted by the Earth's gravitational pull on the hollow rope connected to the top of container 2 is greater than the torque required for the generator's operation and the lifting force required to lift container 1, the counterweight object within it, and the hollow rope connected to the top of container 1, container 1 rises and container 2 descends. The friction generated by the hollow rope and the teeth of the traction sheave drives the traction sheave to rotate. The traction sheave is fixed to the first drive sheave, and the transmission belt causes the second drive sheave and the generator to rotate to generate electricity. The electricity generated by the generator is inverted, voltage-regulated, frequency-regulated, and rectified by the power feedback unit, and then stored in the battery, completing one generation and energy storage process. Under the same conditions, the positions of container 1 and container 2 are repeatedly swapped up and down to complete subsequent generation and energy storage. BRIEF DESCRIPTION OF THE DRAWINGS
[0005] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings used in the embodiments. Obviously, the drawings listed below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0006] Attachment Figure 1 This is a structural diagram of a thermal radiation energy-concentrating gravity power generation energy storage system of the present invention;
[0007] In the accompanying drawings, the components represented by the reference numerals are listed as follows:
[0008] Attachment Figure 1 Middle: 11 tower, 12 platform, 13 support frame, 14 generator, 15 power feedback unit, 16 transmission wheel 1, 17 transmission wheel 2
[0009] 18 transmission belt, 19 rope clamp 1, 20 rope clamp 2, 21 buffer device 1, 22 buffer device 2, 23 traction wheel, 24 hollow rope, 25 container 1, 26 container 2, 27 counterweight, 28 battery, 29 thermal radiation energy focusing and reflecting device. DETAILED DESCRIPTION
[0010] To make the objectives, technical solutions and advantages of the present invention more clear, the embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.
[0011] See attached Figure 1A thermal radiation energy-gathering gravity power generation and energy storage system, the power generation and energy storage system includes a tower 11, a platform 12, a support frame 13, a generator 14, a power feedback unit 15, a transmission wheel 16, a transmission wheel 2 17, a transmission belt 18, a rope clamp 19, a rope clamp 20, a buffer device 1 21, a buffer device 22, a traction wheel 23, a hollow rope 24, a container 1 25, a container 2 26, a counterweight 27, a battery 28, and a thermal radiation energy-gathering reflector 29; the platform 12 is fixed to the tower The support frame 13, the generator 14, the rope clamp 19, the rope clamp 20, the power feedback unit 15 and the battery 28 are fixed on the platform 12; the traction wheel 23 is installed on the support frame 13, and the traction wheel 23 is axially connected and fixed to the transmission wheel 16; the transmission wheel 2 17 is fixedly installed on the generator 14; the transmission belt 18 is annularly installed on the transmission wheel 16 and the transmission wheel 2 17; the generator 14 and the power feedback unit 15 is connected; the power feedback unit 15 is connected to the battery 28; the buffer device 1 21 and the buffer device 2 22 are respectively installed at the bottom position below the container 1 25 and the container 2 26; the heat radiation focusing and reflecting device 29 surrounds the buffer device 1 21 and the buffer device 2 22; the rope clamp 1 19 and the rope clamp 20 are respectively fixed on both sides of the radial direction of the traction wheel 23 to clamp or loosen the hollow rope 2 wound on the tooth groove of the traction wheel 23 4; the hollow rope 24 is wound around the tooth grooves of the traction sheave 23; the two ends of the hollow rope 24 are fixedly connected to the container 1 25 and the container 2 26, respectively, and the hollow rope 24, the container 1 25, and the container 2 26 form a mutually connected space, which is a vacuum space; the container 1 25 and the container 2 26 have the same material, volume, shape, and weight; the shells of the container 1 25 and the container 2 26 are coated with a coating that absorbs heat radiation; the counterweight 27 is a liquid substance;In the initial state, the container 1 25 is at the bottom and the container 2 26 is at the top. The container 1 25 receives the heat radiation reflected by the heat radiation focusing and reflecting device 29 and the heat radiation from the surrounding environment, so that the temperature inside the container 1 25 increases, and the water in the counterweight object 27 in the container 1 25 changes from liquid to gas and then enters the container 2 26 through the hollow rope 24. The external space environment temperature of the container 2 26 is lower than the boiling point of the counterweight object in the container 2 26, so that the water in the counterweight object 27 in the container 2 26 changes from gas to liquid and condenses, and then the weight of the water in the counterweight object 27 in the container 2 26 gradually becomes greater than the weight of the water in the counterweight object 27 in the container 1 25. When the container 2 26 and the water in the counterweight object 27 therein and the hollow rope connected to the top of the container 2 26 When the gravity generated by the Earth's gravitational pull 24 is greater than the torque required for the generator 14 to operate and the lifting force required to lift container 1 25, the counterweight 27 inside it, and the hollow rope 24 connected to the top of container 1 25, container 1 25 rises and container 2 26 descends. The friction generated by the hollow rope 24 with the teeth and grooves of the traction sheave 23 drives the traction sheave 23 to rotate. The traction sheave 23 is fixed to the drive sheave 16, and the transmission belt 18 causes the drive sheave 2 17 and the generator 14 to rotate and generate electricity. The electrical energy generated by the generator 14 is inverted, voltage-regulated, frequency-regulated, and rectified by the power feedback unit 15, and then stored in the battery 28, completing one generation and energy storage process. Under the same conditions, the positions of container 1 25 and container 2 26 are repeatedly swapped up and down to complete subsequent generation and energy storage.
[0012] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A thermal radiation focused gravity power generation energy storage system, characterized in that: The power generation and energy storage system includes a tower, a platform, a support frame, a generator, a power feedback unit, a transmission wheel 1, a transmission wheel 2, a transmission belt, a rope clamp 1, a rope clamp 2, a buffer device 1, a buffer device 2, a traction wheel, a hollow rope, a container 1, a container 2, a counterweight, a battery, and a thermal radiation energy focusing and reflecting device; the platform is fixed on the tower; the support frame, the generator, the rope clamp 1, the rope clamp 2, the power feedback unit and the battery are fixed on the platform; the traction wheel is mounted on the support frame, and the traction wheel is axially connected and fixed to the transmission wheel 1; the transmission wheel 2 is fixedly mounted on the generator; the transmission belt is annularly mounted on the transmission wheel 1 and the transmission wheel 2; the generator is connected to the power feedback unit; the power feedback unit is connected to the battery; The buffer device 1 and the buffer device 2 are respectively installed at the bottom position below the container 1 and the container 2; the heat radiation focusing and reflecting device surrounds the buffer device 1 and the buffer device 2; the rope clamp 1 and the rope clamp 2 are respectively fixedly placed on both sides of the radial direction of the traction wheel to clamp or loosen the hollow rope wrapped around the tooth groove of the traction wheel; the hollow rope is wrapped around the tooth groove of the traction wheel; the two ends of the hollow rope are respectively fixedly connected to the container 1 and the container 2, and the hollow rope and the container 1 and the container 2 form a mutually connected space, which is a vacuum space; the material, volume, shape and weight of the container 1 and the container 2 are the same, and the shells of the container 1 and the container 2 are coated with a coating that absorbs heat radiation; the counterweight object is a liquid substance;In the initial state, the container one is at the bottom and the container two is at the top. The counterweight object exists in the liquid state in the container one. The container one receives the heat radiation reflected by the heat radiation focusing and reflecting device and the heat radiation from the surrounding environment, so that the temperature of the counterweight object inside the container one exceeds its own boiling point, and the counterweight object in the container one changes from liquid to gas and then enters the container two through the hollow rope. The external space environment temperature of the container two is lower than the boiling point of the counterweight object inside the container two, so that the counterweight object inside the container two changes from gas to liquid and condenses, and then the weight of the counterweight object in the container two gradually becomes greater than the weight of the counterweight object in the container one. When the container two and the counterweight object inside it and the When the gravity of the hollow rope connected to the top of the second container due to the earth's gravity is greater than the force required for the generator's operating torque and the lifting force required to lift the first container and the counterweight object inside it and the hollow rope connected to the top of the first container, the first container rises and the second container falls. The hollow rope drives the traction wheel to rotate through the friction force generated by the teeth and grooves of the traction wheel. The traction wheel and the first transmission wheel are fixed together, and the transmission belt causes the second transmission wheel and the generator to rotate to generate electricity. The electric energy generated by the generator is inverted, voltage-regulated, frequency-regulated, and rectified by the power feedback unit and then stored in the battery, completing a power generation and energy storage process. Under the same conditions, the positions of the first container and the second container are repeatedly exchanged up and down to complete continuous power generation and energy storage. There is no limit to the number of thermal radiation focusing and reflecting devices that can be placed.
Citation Information
Patent Citations
Traction type gravity power generation energy storage system
CN111287919A
Thermal radiation energy-gathering type gravity power generation and energy storage system
CN211900890U