Combined device for implementing high-efficiency power generation by means of magnetic-wheel-driven potential energy acceleration
By utilizing the principle of accelerating potential energy through a magnetic wheel and the synergistic effect of a magnetic motor, a speed-up motor, and a flywheel integrated machine, the problem of complex structure and high maintenance cost of existing magnetic energy power generation devices is solved, achieving efficient energy conversion and stable power output, and has broad application prospects.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- CENG WEIDONG
- Filing Date
- 2025-01-23
- Publication Date
- 2026-04-23
AI Technical Summary
Existing magnetic energy power generation devices suffer from complex structures, high maintenance costs, and low power generation efficiency, making them difficult to apply widely.
It adopts the principle of accelerating potential energy driven by a magnetic wheel, and achieves efficient energy conversion and storage through the synergistic effect of a magnetic motor, a speed-up motor, a flywheel integrated machine, and inverter and voltage stabilization technologies.
It improves energy efficiency, reduces power generation costs, outputs stable and reliable electrical energy, and has a simple structure, is easy to operate, and is easy to promote and apply.
Smart Images

Figure CN2025074443_23042026_PF_FP_ABST
Abstract
Description
Magnetic wheel driven potential energy acceleration high-efficiency power generation combined device Technical Field
[0001] This utility model relates to the field of power generation equipment technology, specifically a combined device that utilizes the principle of accelerating potential energy driven by a magnetic wheel to achieve efficient power generation. Background Technology
[0002] With the continuous growth of global energy demand and the increasing awareness of environmental protection, finding efficient and environmentally friendly power generation methods has become an important direction for current scientific and technological research. Traditional power generation methods, such as coal-fired and oil-fired power generation from fossil fuels, suffer from problems such as low energy utilization efficiency and serious environmental pollution, and can no longer meet the needs of modern society for clean energy and sustainable development.
[0003] In recent years, magnetic power generation, as an emerging power generation technology, has attracted much attention due to its high efficiency, environmental friendliness, and renewable nature. Magnetic power generation utilizes the interaction of magnetic fields and forces to convert mechanical energy into electrical energy, offering advantages such as high energy efficiency, zero pollution, and low noise. However, most magnetic power generation devices currently on the market suffer from complex structures, high maintenance costs, and low power generation efficiency, limiting their widespread application. To address these issues, a magnetic wheel-driven potential energy acceleration high-efficiency power generation combination device is proposed. This device utilizes the principle of magnetic wheel-driven potential energy acceleration, achieving efficient energy conversion and storage through the synergistic action of a magnetic motor, a speed-boosting motor, a speed booster, a flywheel integrated machine, or a two-stage generator. Simultaneously, the device employs advanced inverter and voltage stabilization technologies to ensure stable power output and a wide range of applicability.
[0004] The purpose of this utility model is to provide a magnetic wheel-driven potential energy acceleration high-efficiency power generation combined device, which includes a magnetoelectric combined machine, a potential energy combined machine, a two-stage generator, and an inverter combined machine. It achieves high-efficiency power generation through the principle of magnetic wheel-driven potential energy acceleration.
[0005] This utility model is achieved through the following technical solution.
[0006] A magnetic wheel driven potential energy acceleration high-efficiency power generation combined device is composed of a magnetoelectric combined machine, a potential energy combined machine, a two-stage generator and an inverter combined machine in sequence.
[0007] The magneto-electric combination machine comprises a magnetic motor, a speed-up motor, and a separator located between the magnetic motor and the speed-up motor. The magnetic motor further includes a magnetic core, a magnetic coupling bridge, a speed controller, and a braking controller. The magnetic core generates a magnetic field, the magnetic coupling bridge adjusts the magnetic field strength between the magnetic cores, the speed controller controls the rotational speed of the magnetic motor, and the braking controller stops the operation of the magnetic motor when necessary.
[0008] The potential energy combination machine is connected to the speed-up motor and consists of a speed-up unit and a flywheel combination machine. The speed-up unit is used to receive the mechanical energy transmitted by the speed-up motor to increase the rotational speed and convert it into the potential energy of the flywheel combination machine.
[0009] The flywheel integrated machine consists of a flywheel rotor, a flywheel integrated machine stator, and a flywheel integrated machine input / output integrator. The flywheel potential energy of the flywheel rotor and the magnetic field generated by the flywheel integrated machine stator simultaneously generate electrical energy. The electrical energy generated by the flywheel rotor and the flywheel integrated machine stator is integrated by the input / output integrator and supplied to the inverter combination unit.
[0010] The inverter converter supplies power to the flywheel integrated machine's input / output power integrator, which integrates the power input to the flywheel integrated machine, which then becomes a high-torque motor.
[0011] The secondary generator is connected to the flywheel integrated machine and is used to convert the large torque potential energy released by the flywheel integrated machine into electrical energy;
[0012] The inverter combination unit consists of an inverter and a voltage regulator. The inverter is connected to the flywheel generator and the secondary generator via wires, and is used to convert the electrical energy generated by the flywheel generator and the secondary generator into electricity suitable for use by the power grid or equipment. The output electrical section of the inverter combination unit is connected via wires to power the speed-up motor or the flywheel generator. The voltage regulator is used to stabilize the voltage output by the inverter.
[0013] Furthermore, the magnetic core is made of high-performance rare-earth permanent magnet material to improve the strength and stability of the magnetic field.
[0014] Furthermore, the speed-up motor is a brushless DC motor to reduce energy loss and improve operating efficiency.
[0015] Furthermore, the inverter employs high-frequency PWM control technology to improve power conversion efficiency and output voltage stability.
[0016] Furthermore, the flywheel of the flywheel integrated machine utilizes inertia to increase its rotational speed, and then supplies power to the flywheel integrated machine, thus making the flywheel integrated machine a high-torque motor, thereby making the secondary generator more efficient.
[0017] Furthermore, the flywheel integrated machine utilizes the flywheel rotor's inertia to increase its rotational speed, thereby improving power generation efficiency. The flywheel integrated machine functions as both a generator and an electric motor.
[0018] The beneficial effects of this utility model are:
[0019] 1. By utilizing the principle of accelerating the engine using the potential energy of a magnetic wheel, energy utilization efficiency is improved and power generation costs are reduced;
[0020] 2. Through the synergistic effect of the magnetomechanical unit, the speed-up motor, and the flywheel integrated unit, efficient energy conversion and storage are achieved;
[0021] 3. The flywheel integrated machine is both a high-torque electric motor and promotes efficient power generation of the secondary generator;
[0022] 4. The speed booster coaxially drives the flywheel, and the inertial force of the flywheel rotor rotates at high speed. Together with the stator of the flywheel integrated machine, they generate a strong magnetic field, making the flywheel integrated machine an independent generator.
[0023] 5. The inverter combination unit enables this device to output stable and reliable electrical energy, making it suitable for various power grids and equipment;
[0024] 6. It has the advantages of simple structure, convenient operation and low maintenance cost, and is easy to promote and apply. Attached Figure Description
[0025] Figure 1 in the specification is a structural diagram of a magnetic wheel-driven potential energy acceleration and high-efficiency power generation combined device of this utility model. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0027] In the description of the embodiments of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances. Example: A magnetic wheel-driven potential energy acceleration high-efficiency power generation combination device, its main structure includes:
[0028] The magnetic wheel-driven high-efficiency power generation combination device of this embodiment mainly includes a magnetoelectric combination machine 10, a potential energy combination machine 20, a two-stage generator 30, an inverter combination unit 40, and a wire 50.
[0029] Magnetoelectric combination machine 10
[0030] The magnetoelectric combination machine 10 consists of a magnetomechanical unit 11, a speed-up motor 12, and a separator 13 located between the magnetomechanical unit 11 and the speed-up motor 12. The magnetomechanical unit 11 includes a magnetomechanical core 111, a magnetic coupling bridge 112, a speed controller 113, and a brake controller 114. The magnetomechanical core 111 is made of high-performance rare-earth permanent magnet material to generate a strong magnetic field. The magnetic coupling bridge 112 is used to adjust the magnetic field strength between the magnetomechanical cores 111 to achieve effective transmission and regulation of magnetic force. The speed controller 113 is used to control the speed of the magnetomechanical unit 11 to ensure its stable operation. The brake controller 114 is used to stop the operation of the magnetomechanical unit 11 when necessary to ensure safety.
[0031] Potential energy combination machine 20
[0032] The potential energy combiner 20 is connected to the speed-up motor 12 and consists of a speed-up unit 21 and a flywheel combiner 22. The speed-up unit 21 receives the mechanical energy transmitted by the speed-up motor 12 and converts it into the potential energy of the flywheel combiner 22. The flywheel combiner 22 consists of a flywheel rotor 221, a flywheel combiner stator 223, and a flywheel combiner input / output integrator 225. When the flywheel combiner 22 rotates at high speed, the magnetic field of the flywheel rotor 221 and the flywheel combiner stator 223 generates electrical energy. The electricity generated by the flywheel combiner 22 is output to the inverter combiner 40 through the flywheel combiner input / output integrator. When it is necessary to improve the efficiency of the secondary generator 30, the power transmitted to the flywheel combiner 22, which also functions as a motor, releases greater potential energy and a large torque force to drive the coaxial secondary generator 30 to operate and generate electricity efficiently.
[0033] 30 Secondary generator
[0034] The secondary generator 30 is connected to the flywheel integrated machine 22 and is used to convert the potential energy released by the flywheel integrated machine 22 into electrical energy. The secondary generator 30 adopts efficient and stable power generation technology to ensure stable output of electrical energy.
[0035] Inverter Combiner 40
[0036] The inverter combination unit 40 consists of an inverter 41 and a voltage regulator 42. The inverter 41 is connected to the flywheel integrated machine 22 and the secondary generator 30 via wire 50, and is used to convert the electrical energy generated by the flywheel integrated machine 22 and the secondary generator 30 into electricity suitable for use by the power grid or equipment. The inverter combination unit 40 outputs a small amount of electricity, which is connected to the flywheel integrated machine 22 and the speed-up motor 12 via wire 50, and is used to power the mechanical drive of the flywheel integrated machine 22 and the speed-up motor 12. The inverter 41 adopts high-frequency PWM control technology to improve the power conversion efficiency and the stability of the output voltage. The voltage regulator 42 is used to stabilize the output voltage of the inverter 41 to ensure the stability and reliability of the output voltage.
[0037] Wire 50
[0038] Wire 50 runs from the flywheel integrated machine power integrator 225 and from the secondary generator 30 to the inverter combination unit 40; wire 50 runs from the inverter combination unit 40 to the flywheel integrated machine power integrator 225 and the speed-up motor 12.
[0039] Working principle
[0040] During operation, the magnetomechanical unit 11 generates a strong magnetic field. The magnetic field strength is adjusted by the magnetic coupling bridge 112, causing magnetic coupling between the magnetomechanical unit 11 and the speed-up motor 12 via the separator 13. The speed-up motor 12 receives the kinetic energy transmitted by the magnetomechanical unit 11 and converts it into mechanical energy, driving the speed-up unit 21. The speed-up unit 21 converts the mechanical energy into the potential energy of the flywheel integrated machine 22. The magnetic field between the flywheel rotor and stator within the flywheel integrated machine 22 generates electrical energy, which is then output to the inverter combination unit 40. Alternatively, when a secondary generator is required, the flywheel integrated machine 22 releases its potential energy to drive the coaxial secondary generator 30, which converts the potential energy into electrical energy. The inverter 41 converts the electrical energy into power suitable for the power grid or equipment, and stabilizes the output voltage through the voltage regulator 42. The inverter combination unit 40 outputs a small amount of electricity to the speed-up motor 12 and the flywheel integrated machine 22 as power to drive rapid operation and increase torque.
[0041] Implementation effect
[0042] This embodiment of the magnetic wheel-driven potential energy acceleration high-efficiency power generation combined device utilizes the principle of magnetic wheel-driven potential energy acceleration to improve energy utilization efficiency and reduce power generation costs. Through the synergistic action of the magnetic motor, acceleration motor, and flywheel integrated machine, efficient energy conversion and storage are achieved. The inverter combination unit enables the device to output stable and reliable electrical energy, making it suitable for various power grids and equipment. Furthermore, the device in this embodiment has advantages such as simple structure, convenient operation, and low maintenance costs, making it easy to promote and apply.
[0043] In summary, this embodiment provides a specific implementation of a magnetic wheel-driven potential energy acceleration high-efficiency power generation combination device, which has advantages such as high efficiency, environmental friendliness, and simple structure, and has broad market prospects and application value. In practical applications, the structure and parameters of the device can be adjusted and optimized according to specific needs to achieve better power generation performance and economic benefits.
[0044] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A magnetic wheel-driven potential energy acceleration and high-efficiency power generation combined device, characterized in that: It consists of a magnetoelectric combination machine, a potential energy combination machine, a two-stage generator, an inverter combination unit, and wires in sequence; The magnetoelectric combination machine consists of a magnetomechanical unit, a speed-up motor, and a separator located between the magnetomechanical unit and the speed-up motor. The magnetomechanical unit further includes a magnetomechanical core, a magnetic coupling bridge, a speed controller, and a braking controller. The magnetomechanical core is used to generate a magnetic field, the magnetic coupling bridge is used to adjust the magnetic field strength between the magnetomechanical cores, the speed controller is used to control the speed of the magnetomechanical unit, and the braking controller is used to stop the operation of the magnetomechanical unit when necessary. The potential energy combination machine is connected to the speed-up motor and consists of a speed-up unit and a flywheel combination machine. The speed-up unit is used to receive the mechanical energy transmitted by the speed-up motor and convert it into the potential energy of the flywheel combination machine. The flywheel integrated machine consists of a flywheel rotor, a flywheel integrated machine stator, and a flywheel integrated machine input / output integrator. The flywheel potential energy of the flywheel rotor and the magnetic field generated by the flywheel integrated machine stator simultaneously generate electrical energy. The flywheel rotor and the flywheel integrated machine stator generate electrical energy, which is then integrated and supplied to the inverter combination unit via the flywheel integrated machine input / output integrator. The inverter combiner supplies power back to the flywheel integrated machine's input and output power integrator, and the power integrator inputs to the flywheel integrated machine, which then becomes a high-torque motor. The secondary generator is connected to the flywheel integrated machine and is used to convert the potential energy released by the flywheel integrated machine into electrical energy; The inverter combination unit consists of an inverter and a voltage regulator. The inverter combination unit is connected to the flywheel generator and the secondary generator via wires, and is used to convert the electrical energy generated by the flywheel generator and the secondary generator into electricity suitable for use by the power grid or equipment. The output of the inverter combination unit is connected by wires to power the speed-up motor and the flywheel integrated machine to drive them to operate at high speed. The voltage regulator is used to stabilize the voltage output by the inverter; The wires include those from the flywheel integrated machine input / output integrator and those from the secondary generator to the inverter integrator; The power lines run from the inverter to the flywheel integrated power inlet / outlet inlet unit and the speed-up motor.
2. The magnetic wheel driven potential energy acceleration high-efficiency power generation combined device according to claim 1, characterized in that: The magnetic core is made of high-performance rare-earth permanent magnet material to improve the strength and stability of the magnetic field.
3. The magnetic wheel driven potential energy acceleration high-efficiency power generation combined device according to claim 1, characterized in that: The speed-up motor is a brushless motor to reduce energy loss and improve operating efficiency.
4. The magnetic wheel driven potential energy acceleration high-efficiency power generation combined device according to claim 1, characterized in that: The inverter employs high-frequency PWM control technology to improve power conversion efficiency and output voltage stability.
5. The magnetic wheel driven potential energy acceleration high-efficiency power generation combined device according to claim 1, characterized in that: When the inverter combination unit supplies power, the flywheel integrated machine is both a high-torque motor and promotes efficient power generation of the coaxial secondary generator; the flywheel integrated machine is driven by the rapid mechanical operation of the coaxial speed booster, and the high-speed rotation of the inertial flywheel rotor and the strong magnetic field generated by the stator of the flywheel integrated machine generate electrical energy, making the flywheel integrated machine an independent generator.
Citation Information
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