Energy output system based on explicit and implicit state circulation of acting force

By using the technology of circulating the visible and hidden state of the action force in the energy output system, the problems of low efficiency and environmental pollution of traditional energy output methods are solved, efficient energy conversion and output are achieved, and sustainable energy utilization is supported.

CN120090428APending Publication Date: 2025-06-03黄仟中
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Patent Information

Application Number
CN202510333267.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-06-03

AI Technical Summary

Technical Problem

Traditional energy output methods face problems such as low energy efficiency and environmental pollution, and are difficult to meet the growing energy demand and the requirements of sustainable development.

Method used

The energy output system based on the cycle of the visible and hidden state of the action force is adopted, and the circular movement of matter is realized and energy output is generated through the control of the apparent and hidden forces such as electromagnetic force and universal gravity. The system includes permanent magnets, one-way valves, magnetoflow controllers, electrolytic devices, reaction force output devices and other components. Through the synergy of these components, efficient energy conversion and output are achieved.

Benefits of technology

It realizes the innovation and efficiency of energy output, breaks through the limitations of traditional energy conversion, improves energy utilization efficiency, supports sustainable energy utilization, and is suitable for a variety of application scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an energy output system based on acting force explicit and implicit state circulation, and relates to the technical field of energy conversion and output. Comprising the steps that a system sequentially cooperates on substances through one or more acting forces to make the substances circularly move, and energy is generated; and the acting force is subjected to explicit-implicit control, so that the corresponding acting force in at least one circulation stage in the material circulation movement process is restrained or eliminated, and the kinetic energy of the material is subjected to energy conversion output in the circulation stage. The energy output device has innovativeness and high efficiency of energy output, and through explicit and implicit control over acting force such as electromagnetic force and universal gravitation, circulating motion of substances is achieved, and energy output is generated.
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Description

Technical Field

[0001] The present invention relates to the field of energy conversion and output, and particularly to an energy output system based on the cyclic on-off state of acting forces. Background Art

[0002] In the current energy field, traditional energy output methods face many challenges, such as limited energy efficiency and certain environmental pollution. Most existing energy conversion and output technologies rely on traditional physical processes and materials, making it difficult to meet the growing energy demand and the requirements of sustainable development. Therefore, there is an urgent need for an innovative energy output system to break through these bottlenecks. Summary of the Invention

[0003] In view of the deficiencies of the above-mentioned prior art, the present invention provides a magnetohydrodynamic energy output system based on the on-off state of acting forces, aiming to break the shackles of traditional energy conversion modes and construct a new energy output system. By precisely controlling the on-off or on-reverse of acting forces, the system can achieve efficient energy conversion and collaborative output under the cooperation of one or more acting forces, and fully improve the energy utilization efficiency, opening up a new path for addressing global energy challenges.

[0004] The specific technical solutions are as follows:

[0005] An energy output system based on the cyclic on-off state of acting forces, in which the system makes a substance circulate by the sequential cooperation of one or more acting forces on the substance and generates energy; the on-off control of the acting forces is performed so that at least one corresponding acting force is suppressed or eliminated in at least one cycle stage during the cyclic movement of the substance, and the kinetic energy of the substance is converted and output during the cycle stage.

[0006] Preferably, the acting forces include electromagnetic force and gravitational force.

[0007] Preferably, when the acting force is electromagnetic force, the system includes a permanent magnet, a one-way valve, a magnetic flow controller, and a magnetohydrodynamic fluid. A channel for the flow of the magnetohydrodynamic fluid is formed in the permanent magnet. A one-way valve is provided at one end of the permanent magnet channel, and a magnetic flow controller is provided at the other end. At least two permanent magnets are provided, and the one-way valve and the magnetic flow controller between the permanent magnets are correspondingly connected to allow the magnetohydrodynamic fluid to circulate between the permanent magnets. The one-way valve is used to control the one-way flow of the magnetohydrodynamic fluid, and the magnetic flow controller is used to control the flow state of the magnetohydrodynamic fluid. The permanent magnet can do work externally. By controlling the on-off of the magnetism of the magnetic material in the permanent magnet, the on-off control of the electromagnetic force is realized.

[0008] Preferably, a temperature control system is further included. The temperature control system is combined with the permanent magnet to control the on-off of the magnetism of the magnetic material in the permanent magnet. When the energy of the displayed polarity is greater than the energy required by the temperature control and regulation system, positive work is output.

[0009] Preferably, the permanent magnet is made of a magnetic material with a specific Curie temperature; the magnetic material includes Inconel 601 alloy, 4J36 alloy, 1J38 soft magnetic alloy, and 1J30 permalloy.

[0010] Preferably, the positive work output by the permanent magnet is heat output, used to heat the alloy; and all the heat generated by heating the alloy is converted into electrical energy, and then the electrical energy is used to heat the alloy.

[0011] Preferably, the acting force is the universal gravitational force, and the system includes an electrolysis device, a reaction force output device, a combustion chamber, and a positive force output device. The electrolysis device is used to electrolyze water to generate hydrogen and oxygen. The reaction force output device is used to make hydrogen and oxygen combine to output energy in an environment where the universal gravitational force presents as a reaction force. The combustion chamber is used to make hydrogen and oxygen burn to release energy and generate water. The positive force output device is used to make water output energy in an environment where the universal gravitational force presents as a positive force.

[0012] Preferably, the reaction force output device is internally designed with an air flow guiding channel, and the main structure is constructed of a lightweight and high-strength composite material, and the combination of hydrogen and oxygen rises and releases energy under the universal gravitational force of the earth and the atmospheric environment.

[0013] Preferably, the acting force is the electromagnetic force and the universal gravitational force. The system includes a magnetohydrodynamic output device, a magnetohydrodynamic control device, and a gravity output device. The magnetohydrodynamic output device uses a permanent magnet to output a magnetic acting force to make the magnetohydrodynamic fluid flow and generate power, while hiding the influence of the universal gravitational force.

[0014] The control device controls the flow of the magnetohydrodynamic fluid by means of a magnetic seat or directly pushing the fluid; the gravity output device shows the universal gravitational force when the magnetohydrodynamic fluid arrives, and converts the gravitational potential energy of the magnetohydrodynamic fluid into other forms of energy for output.

[0015] Preferably, the gravity output device is a hydropower station.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] The present invention has the innovation and high efficiency of energy output. By explicitly and implicitly controlling acting forces such as electromagnetic force and universal gravitational force, the cyclic motion of substances is realized and energy output is generated. This innovative energy output method breaks through the limitations of traditional energy conversion and provides a new way to improve energy utilization efficiency. For example, in a system based on electromagnetic force, by using the interaction between a permanent magnet and a magnetohydrodynamic fluid, and controlling the explicit and implicit magnetization of the magnetic material, the conversion and output of energy are realized, which may have a higher energy conversion efficiency compared with traditional electromagnetic energy conversion methods.

[0018] The present invention features the diversification and sustainability of energy utilization. This system encompasses multiple energy conversion processes. When the acting force is the universal gravitational force, through the electrolysis of water, the combustion of hydrogen and oxygen, and the energy conversion of water under different gravitational states, the diversified utilization of energy is achieved. This method can effectively integrate and convert various forms of energy, contributing to the sustainable utilization of energy. For example, in industrial production, the waste heat in the production process can be used for the electrolysis of water, thereby initiating the energy conversion chain and realizing the recovery and reuse of energy.

[0019] The present invention has the flexibility and adaptability in system composition. The system is provided with multiple components according to different acting forces and can be flexibly combined. When the acting force is the electromagnetic force, there are components such as permanent magnets, one-way valves, and magnetic current controllers; when the universal gravitational force is involved, there are electrolysis devices, reaction force output devices, etc. These components can be adjusted and combined according to different application scenarios and requirements, making the system highly adaptable. For example, in energy demand scenarios of different scales, whether it is the power supply for small devices or the energy supplement for large factories, the requirements can be met by adjusting the system components and parameters. Description of the Drawings

[0020] Figure 1 It is a schematic diagram of the system architecture of Embodiment 1.

[0021] Figure 2 It is a schematic diagram of the system architecture of Embodiment 2.

[0022] Figure 3 It is a schematic diagram of the system architecture of Embodiment 3.

[0023] 1. Permanent magnet, 2. One-way valve, 3. Magnetic current controller, 4. Temperature control system, 5. Magnetic fluid output device, 6. Magnetic fluid control device, 7. Gravity output device, 8. Electrolysis device, 9. Reaction force output device, 10. Combustion chamber, 11. Positive acting force output device. Detailed Embodiments

[0024] The following further describes the embodiments of the invention in detail with reference to the accompanying drawings of the specification, so as to more clearly present the purpose, technical solution, and technical effect of the present invention.

[0025] The present invention discloses an energy output system based on the cyclic on-off state of acting forces. The system makes substances circulate through the cooperation of one or more acting forces in sequence and generates energy; the acting forces are manipulated to be on or off, so that in at least one cycle stage during the substance circulation movement, the corresponding acting force is suppressed or eliminated, and the kinetic energy of the substance is converted and output during the cycle stage.

[0026] Such as Figure 1As shown, it is embodiment 1, in which the acting force is electromagnetic force, and the system includes permanent magnet 1, one-way valve 2, magnetic flow controller 3, magnetic fluid and temperature control system 4. A channel for magnetic fluid flow is formed in the permanent magnet 1, and a one-way valve 2 is set at one end of the channel of the permanent magnet 1, and a magnetic flow controller 3 is set at the other end; at least two permanent magnets 1 are set, and the one-way valve 2 and the magnetic flow controller 3 between the permanent magnets 1 are correspondingly connected, so as to allow the magnetic fluid to circulate between the permanent magnets 1. The one-way valve 2 is used to control the one-way flow of the magnetic fluid, and the magnetic flow controller 3 is used to control the flow state of the magnetic fluid; the permanent magnet 1 can do work externally; by controlling the magnetic display and concealment of the magnetic material in the permanent magnet 1, the display and concealment of the electromagnetic force is realized. Here, the temperature control system 4 is combined with the permanent magnet 1 to control the magnetic display and concealment of the magnetic material in the permanent magnet 1; when the energy of the displayed polarity is greater than the energy required by the temperature control adjustment system; output positive work.

[0027] The permanent magnet 1 is made of magnetic material with a specific Curie temperature; the magnetic material includes Inconel601 alloy, 4J36 alloy, 1J38 soft magnetic alloy and 1J30 Permalloy. The positive work output by the permanent magnet 1 is output heat to heat the alloy; the heat generated by the heated alloy is converted into electrical energy, and the electrical energy is used to heat the alloy.

[0028] Inconel601 alloy has a Curie temperature of about 230°C. It is ferromagnetic below this temperature and becomes non-magnetic above this temperature. The alloy has good high temperature resistance and corrosion resistance and is suitable for working in high temperature environments.

[0029] 4J36 alloy (Invar alloy), the Curie point is about 230 ° C. Below this temperature, the alloy is ferromagnetic, and above this temperature, it is paramagnetic. It has a low expansion coefficient and can maintain a stable structure when the temperature changes.

[0030] 1J38 soft magnetic alloy, the Curie temperature range is 25℃-200℃. Below the Curie temperature, as the temperature increases, the magnetic induction intensity decreases sharply. This alloy has a high magnetic permeability, which is beneficial to energy conversion.

[0031] 1J30 Permalloy has a Curie temperature of about 400°C. When the temperature is lower than the Curie temperature, the alloy exhibits ferromagnetism. When the temperature exceeds the Curie temperature, it turns into paramagnetism. The alloy has high magnetic permeability and low coercive force, which can effectively improve the efficiency of magnetic energy conversion.

[0032] In this embodiment, the implementation process includes: First, install the permanent magnet 1, one-way valve 2, magnetic fluid controller 3, and magnetic fluid according to the design requirements. Place the permanent magnet 1 in an appropriate position to ensure that it can generate an effective magnetic field on the magnetic fluid. The one-way valve 2 is installed on the flow path of the magnetic fluid to ensure good sealing performance and achieve one-way conduction. The magnetic fluid controller 3 is connected to the corresponding pipeline and can control the flow of the magnetic fluid by electromagnetic control or mechanical control methods. The magnetic fluid is filled in the circulating pipeline of the device to ensure the tightness of the system.

[0033] After the device is started, the magnetic fluid begins to flow under the magnetic field of the permanent magnet 1, passes through the one-way valve 2 and the magnetic fluid controller 3 in sequence, and then enters another permanent magnet 1 through another one-way valve 2, and so on in a cycle. The temperature control system 4 controls the temperature of the magnetic material in the permanent magnet 1. When the magnetic material is at an appropriate temperature, it shows magnetism, provides a magnetic field force for the magnetic fluid, and promotes its flow. At the same time, the energy released by the flow of the magnetic fluid is greater than the energy consumed by the magnetic fluid controller 3. During the cycle, the output positive energy is used to heat the alloy. After the alloy is heated, the heat is converted into electrical energy through the corresponding energy conversion device, and then the electrical energy is used to heat the alloy to achieve continuous conversion and output of energy.

[0034] As Figure 2 shown, for Embodiment 2, where the acting forces are electromagnetic force and gravitational force. The system includes a magnetic fluid output device 5, a magnetic fluid control device 6, and a gravity output device 7. The magnetic fluid output device 5 uses the permanent magnet output magnetic acting force to make the magnetic fluid flow and generate power, while eliminating the influence of gravitational force. The control device 6 controls the flow of the magnetic fluid by means of a magnetic seat or directly pushing the fluid; the gravity output device 7 shows gravitational force when the magnetic fluid arrives and converts the gravitational potential energy of the magnetic fluid into other forms of energy for output. The gravity output device 7 is a hydroelectric power station.

[0035] In this embodiment, the implementation process includes: Connect the magnetic fluid output device 5, the magnetic fluid control device 6, and the gravity output device 7 according to the design requirements. A permanent magnet 1 is provided in the magnetic fluid output device 5 to generate a magnetic acting force on the magnetic fluid. The magnetic fluid control device 6 controls the flow of the magnetic fluid by means of a magnetic seat or directly pushing the fluid. The gravity output device 7 can adopt the basic structure of a hydroelectric power station to ensure that it can receive the energy input from the magnetic fluid.

[0036] The magnetofluid enters the magnetofluid output device 5. The permanent magnet 1 exerts a magnetic force on the magnetofluid. By corresponding technical means, the influence of the universal gravitational force is eliminated, so that the magnetofluid flows in the output device 5 to generate power. When the magnetofluid enters the magnetofluid control device 6, the permanent magnetic force is eliminated, and then it reaches the gravity output device 7. In the gravity output device 7, the acting force of the universal gravitational force is displayed, and the gravitational potential energy of the magnetofluid is used to drive the equipment of the hydropower station to operate, and the gravitational potential energy is converted into other forms of energy such as electrical energy for output. After the magnetofluid returns to the plane, it enters the magnetofluid output device 5 again, repeating the above cycle process to achieve the energy output of the substance under the explicit and implicit states of the acting force.

[0037] As Figure 3 shown, it is Embodiment 3, where the acting force is the universal gravitational force, including an electrolysis device 8, a reaction force output device 9, a combustion chamber 10, and a positive acting force output device 11. The electrolysis device 8 is used to electrolyze water to generate hydrogen and oxygen. The reaction force output device 9 is used to combine hydrogen and oxygen to output energy in an environment where the universal gravitational force presents as a reaction force. The combustion chamber 10 is used to burn hydrogen and oxygen to release energy and generate water. The positive acting force output device 11 is used to make water output energy in an environment where the universal gravitational force presents as a positive acting force. Here, the reaction force output device 9 is internally designed with an air flow guiding channel, and the main structure is constructed using a lightweight and high-strength composite material, and the energy is released by the combination and rise of hydrogen and oxygen under the universal gravitational force of the earth and the atmospheric environment.

[0038] In this embodiment, the implementation process includes: assembling the electrolysis device 8, using existing electrode materials and electrolyte formulations, and equipping with an intelligent temperature control system. The reaction force output device 9 is constructed with a lightweight and high-strength composite material for the main structure, and an air flow guiding channel is designed inside. The combustion chamber 10 uses a ceramic alloy material with high temperature resistance and corrosion resistance, and is equipped with an efficient burner and an energy recovery device. The positive acting force output device 11 adopts a composite structure of a turbine and piezoelectric materials.

[0039] Here, the electrolysis device 8 electrolyzes water to generate hydrogen and oxygen, and uses existing efficient electrode materials and temperature control systems to ensure high energy efficiency. The generated hydrogen and oxygen enter the reaction force output device 9, and in the universal gravitational force of the earth and the atmospheric environment, the gravitational force is presented as a reaction force through a special device structure to release energy. Then, hydrogen and oxygen enter the combustion chamber 10 to burn, generate energy, and at the same time, the energy recovery device is used to recover the combustion energy. The water generated by combustion enters the positive acting force output device 11, and under the action of the universal gravitational force, the gravitational potential energy of the water is converted into energy such as electrical energy through the composite structure of the turbine and piezoelectric materials for output. Finally, the generated water returns to the electrolysis device 8 to complete a cycle process of energy conversion and output.

[0040] In this embodiment, the phase change of matter is combined, specifically the electrolysis and combustion of water, as well as the change of gravitational state, to achieve multi-stage conversion and output of energy, and improve the comprehensive utilization efficiency of energy.

[0041] The above are only the preferred and feasible embodiments of the present invention, and are not intended to limit the scope of the patent application of the present invention. Any equivalent changes, equivalent substitutions or modified changes completed within the technical spirit and principles disclosed by the present invention shall be included within the scope of patent protection covered by the present invention.

Claims

1. An energy output system based on the cycle of force visibility and invisibility, characterized in that: The system uses one or more forces to cooperate in sequence to make the matter circulate and generate energy; the forces are manipulated explicitly or implicitly so that in at least one cycle stage during the material circulation process, the corresponding force is suppressed or eliminated, and the kinetic energy of the matter is converted and output in the cycle stage.

2. The energy output system based on the cycle of force visibility and invisibility according to claim 1, characterized in that: The acting forces include electromagnetic force and gravitational force.

3. The energy output system based on the cycle of force visibility and invisibility according to claim 2, characterized in that: When the acting force is electromagnetic force, the system includes a permanent magnet, a one-way valve, a magnetic flow controller and a magnetic fluid. A channel for the flow of the magnetic fluid is formed in the permanent magnet, a one-way valve is arranged at one end of the permanent magnet channel, and a magnetic flow controller is arranged at the other end; at least two permanent magnets are arranged, and the one-way valves and the magnetic flow controllers between the permanent magnets are correspondingly connected to each other so that the magnetic fluid circulates between the permanent magnets; the one-way valve is used to control the one-way flow of the magnetic fluid, and the magnetic flow controller is used to control the flow state of the magnetic fluid; the permanent magnet can do work externally; and the visible and invisible control of the electromagnetic force is achieved by controlling the magnetic visible and invisible control of the magnetic material in the permanent magnet.

4. The energy output system based on the cycle of force visibility and invisibility according to claim 3 is characterized in that: It also includes a temperature control system, which is combined with a permanent magnet to control the magnetic visibility of the magnetic material in the permanent magnet; when the energy of the displayed polarity is greater than the energy required by the temperature control adjustment system; positive power is output.

5. The energy output system based on the cycle of force visibility and invisibility according to claim 4, characterized in that: The permanent magnet is made of magnetic material with a specific Curie temperature; the magnetic material includes Inconel601 alloy, 4J36 alloy, 1J38 soft magnetic alloy and 1J30 Permalloy.

6. The energy output system based on the cycle of force visibility and invisibility according to claim 5, characterized in that: The positive work output by the permanent magnet is output as heat, which is used to heat the alloy; and the heat generated by the heated alloy is completely converted into electrical energy, which is then used to heat the alloy.

7. The energy output system based on the cycle of force visibility and invisibility according to claim 2 is characterized in that: The force is gravity, and the device includes an electrolysis device, a reaction force output device, a combustion chamber and a positive force output device. The electrolysis device is used to electrolyze water to generate hydrogen and oxygen. The reaction force output device is used to make the hydrogen and oxygen combine to output energy in an environment where gravity presents as a reaction force. The combustion chamber is used to make hydrogen and oxygen burn to release energy and generate water. The positive force output device is used to make water output energy in an environment where gravity presents as a positive force.

8. The energy output system based on the cycle of force visibility and invisibility according to claim 7 is characterized in that: The reaction force output device is designed with an airflow guiding channel inside, and a main structure is constructed using lightweight and high-strength composite materials. Hydrogen and oxygen are combined to rise and release energy under the earth's gravity and atmospheric environment.

9. The energy output system based on the cycle of force visibility and invisibility according to claim 2 is characterized in that: The acting force is electromagnetic force and universal gravitation. The system includes a magnetic fluid output device, a magnetic fluid control device and a gravity output device. The magnetic fluid output device uses permanent magnets to output magnetic acting force to make the magnetic fluid flow and generate power, while hiding the influence of universal gravitation. The control device controls the flow of the magnetic fluid by means of a magnetic seat or by directly pushing the fluid; the gravity output device displays universal gravitation when the magnetic fluid arrives, and converts the gravitational potential energy of the magnetic fluid into other forms of energy output.

10. The energy output system based on the cycle of force visibility and invisibility according to claim 9, characterized in that: The gravity output device is a hydroelectric power station.