Method for generating power by adopting mechanical wheel system device
Through the power generation method of mechanical wheel system device, mechanical energy is generated by rotating the mechanical wheel, and converted into alternating current through gear transmission and generator, the stability and environmental pollution problems of existing power generation methods are solved, and all-weather power generation and large power energy are achieved.
Patent Information
- Application Number
- CN202510237139.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-01
- Publication Date
- 2025-05-23
AI Technical Summary
Existing power generation methods such as nuclear energy, hydropower, thermal power, wind power, and solar power generation have problems such as stability, environmental pollution and short effective light time, making it difficult to achieve all-weather power generation.
The mechanical wheel system device power generation method is adopted. The giant mechanical wheel rotates under the action of external force to generate mechanical energy, and converts the mechanical energy into alternating current through the gear transmission and generator, and incorporates it into the power supply network.
It has achieved all-weather power generation, overcome the shortcomings of existing power generation power source technology, provided large power energy, and provided a stable source of power for the construction of a new 100-megawatt medium-sized power plant generator set.
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Figure CN120033904A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clean energy power generation, and in particular to a power generation method using a mechanical wheel system device. Background Art
[0002] Electricity has developed the modern power industry and electronic technology. In real life, the mechanism of electricity produces many well-known effects; people widely use it to generate light and heat and drive mechanical rotation.
[0003] Existing power generation methods include nuclear, hydroelectric, thermal, wind, and solar power. These energy sources drive generators, cutting magnetic lines of force to generate electricity. However, these methods all have drawbacks. For example, nuclear and hydroelectric power are constrained by policies, technologies, conditions, and environmental constraints, hindering their expansion. Thermal power generation consumes large amounts of materials and pollutes the environment. Wind power generation is unstable, and solar power generation has a short effective sunlight period and cannot generate electricity around the clock. Therefore, the development of a power generation method using a mechanical wheel system is urgent.
[0004] For example, the inventor's utility model patent application number 202323000044.8 discloses a mechanical power generator set, which lays the foundation for solving the mechanical wheel power generation system device. Summary of the Invention
[0005] The purpose of this invention is to provide a method for generating electricity around the clock using a mechanical wheel system. A mains-powered starting motor activates the rotation of a massive, high-mass mechanical wheel. The mechanical wheel rotates under the action of an external force, generating constant potential and kinetic energy, thus generating mechanical energy. This mechanical energy is transmitted to a gearbox via the wheel axle, obtaining the required generator speed, providing power for the generator to generate alternating current (AC). This AC power is then controlled and transformed by an electrical system and then incorporated into the power supply network. This method completely resolves the generator power energy issue, optimizes existing power sources, and overcomes a number of drawbacks in existing power source technology. The method provides a significant amount of power for the generator sets of newly constructed medium-sized power stations with a capacity of 100 megawatts. In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0006] The present invention provides a method for generating electricity using a mechanical wheel system device, characterized in that the method comprises a complete process of a mechanical wheel, a starting electric system device, a gear transmission, an AC generator, and an electrical control system; the complete process of the system process comprises the following steps: S1. Manufacturing or purchasing mechanical wheels, starting motor system devices, gear transmissions, AC generators, electrical control devices and components in factories; S2. Excavate a groove in the ground with a length greater than 2.0 m in diameter, a width greater than 2.5 m in width, and a depth greater than 1.0 m in radius of the mechanical wheel. Install a starting electric system device base in the middle and at the ends of the groove. Construct a wheel groove for rotating the mechanical wheel, a support body, and the starting electric system device base using reinforced concrete. The support body is integrally formed with the gear transmission, the AC generator base, and the wheel groove for rotating the mechanical wheel. S3. Assemble the manufactured mechanical wheel assembly into a mechanical wheel; the mechanical wheel is composed of a bearing housing, a bearing, a wheel axle, a support rod, and a gear ring; the bearing housing, bearing or bushing, and wheel axle are mounted on the support body; the wheel axle and wheel ring are supported by support rods, and gear teeth are cast on the wheel ring to form a gear ring; assemble N support rods and gear rings into a mechanical wheel; S4. Install the starter motor on the starter motor seat; the starter wheel gear on the starter motor engages with the mechanical wheel gear; S5. Install the gearbox and AC generator on the support body and connect the electrical control system. S6. The frequency converter controls the starting motor to gradually accelerate its operation, and the gears on the starting motor engage with the mechanical wheel gear ring with the wheel axle as the center to rotate; when the large-mass mechanical wheel rotates, potential energy and kinetic energy are generated to form mechanical energy; this energy is transmitted to the gear transmission through the wheel axle to obtain the required speed of the generator, providing power energy for the generator to generate electricity; then the distribution and transformation equipment is connected to the power supply network; after the generator power is connected to the power supply network, the mains electricity or the energy generated by the generator itself is used to continuously replenish energy for the starting motor, forming a cyclical mechanical wheel power generation system.
[0007] Another preferred embodiment of the present invention is that the mechanical wheel gear ring is manufactured in N pieces, and the splicing portion thereof is arranged in the recess between two teeth; the diameter of the gear ring is greater than 13 meters; and the number of teeth of the gear ring is greater than 1,700.
[0008] Another preferred solution of the present invention is that high-strength steel is used to support the outer ring of the mechanical wheel body and the axle, and the support is divided into N groups, with two support rods in each group. The two support rods are between the axles, and the inner angle of inclination between the support rods and the axle is less than 85 degrees.
[0009] Another preferred solution of the present invention is that a mechanical wheel axle bearing housing is placed in the mechanical wheel support body; the junction between the mechanical wheel gear and the starting gear is at the horizontal end or vertical end of the mechanical wheel gear ring; and the starting motor is installed at the end of the rotating wheel groove of the mechanical wheel body.
[0010] Another preferred solution of the present invention is that the power transmission and transformation adopts a 10,000-volt high-voltage distribution system.
[0011] In the technical solution of the present invention, the diameter of the mechanical wheel is greater than 13.0 meters and is driven by a driving wheel gear; the mechanical wheel axle is parallel to the ground and higher than the ground, and its mechanical wheel body rotates in the wheel groove; a support body for the mechanical wheel is set on both sides of the middle of the wheel groove; a fixing device and a mechanical wheel axle bearing housing are embedded in the support body; the AC motor drives the energy starting gear device, the driving wheel gear, which matches the gear cast on the mechanical wheel, and drives the mechanical wheel to rotate, driving the giant horizontal gearbox, whose gearbox input main shaft is directly connected to the mechanical wheel axle through a converter; when the speed of the mechanical wheel and the speed of the gearbox output main shaft are stable, power energy is provided to the generator; after the generator generates 50 Hz alternating current, it is transmitted and transformed through the electromechanical intelligent control and power generation metering control including the power generation system device to integrate the generated energy into the national power grid; when the generator generates electricity and is connected to the grid, it uses AC power or its own generated energy to replenish the electric energy to the starting motor, and the driving wheel gear continuously shifts the mechanical wheel gear, forming a cyclic mechanical wheel power generation cycle system. The mechanical wheel power generation system device provided by the present invention can be widely used in newly built 100-megawatt medium-sized power station generator sets to provide large power energy. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] In order to illustrate the technical solution of the present invention in detail, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described 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.
[0013] Figure 1 FIG1 is a system diagram of a mechanical wheel power generation system according to embodiment 1 of the present invention;
[0014] Figure 2 Embodiment 2 of the present invention is a schematic diagram of the mechanical wheel structure.
[0004] Explanation of the accompanying symbols: mechanical wheel power generation system device 1; mechanical wheel system 2; mechanical wheel main shaft 21; main bearing housing 22; support body 23; wheel groove 24; wheel groove side wall 241; wheel groove end 242; starting motor seat 25; support 26; support contact 261; support inner angle 27; mechanical wheel shaft force transmission joint 28; inter-tooth recess 29; starting motor 3; mechanical wheel gear 31; drive wheel gear 32; inverter 33; gearbox 4; gearbox output main shaft or clutch device 41; generator 5; electromechanical control 6; transmission and transformation 7. DETAILED DESCRIPTION
[0015] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0016] In the description of the present invention, it should be understood that the terms "length," "width," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. In the description of the present invention, "plurality" means two or more, unless otherwise specifically defined. The technical solutions provided by various embodiments of the present invention are described in detail below with reference to the accompanying drawings. Example 1
[0017] In order to solve the problem of generator power energy formation, such as Figure 1 Figure 2 As shown, the mechanical wheel power generation system device of this embodiment 1, Figure 1It is divided into system 1, mechanical wheel 2, starting motor 3, gearbox 4, generator 5, electromechanical control 6, and transmission and transformation 7; the wheel groove 24 for the rotation of the mechanical wheel is built with reinforced concrete structure; the wheel groove side wall 241, the two end heads 242 of the wheel groove side wall and the support body 23 and the starting motor base 25 are integrated; the support body 23 includes the gearbox 4 and the generator 5 base; the bearing shell 22 and the mechanical wheel axle 21 with bearings and the mechanical wheel axle force transmission joint 28 are installed on the support body on both sides of the middle of the groove; the mechanical wheel rim is fastened with bolts at the top of the support rod 6 to form a mechanical wheel rim with a large mass; the starting motor 3 is installed on the starting motor base 25, and the starting motor is controlled by the electromechanical control system using the frequency converter 33. ; The starting motor drive wheel gear 32 is engaged with the mechanical wheel gear 31; the mechanical wheel shaft force transmission joint 28 of the mechanical wheel main shaft 21 is directly connected to the input shaft of the gearbox 4 through a converter; the gearbox output main shaft 41 is connected to the generator 5; in order to start the starting motor with light load, the starting motor drive wheel gear 32 is engaged with the mechanical wheel gear 31 to drive the mechanical wheel to rotate until the gearbox runs at no load. After the inertia and kinetic energy are stabilized, the clutch device 41 is used to drive the generator to generate 50 Hz AC power; the AC power is controlled by the intelligent control 6 and power generation metering control of the power generation system device; the transmission and substation including high and low voltage network cables, transformers, and protection devices 7 form a mechanical wheel power generation system device 1. The power generation process: Mains electricity is used to start motor 3. Drive wheel gear 32 engages with mechanical wheel gear 31, driving the massive mechanical wheel 2 in uniform circular motion, creating inertia and generating significant potential and kinetic energy, which in turn generates mechanical energy. This energy is then converted through the mechanical wheel, using the new energy to drive the gearbox until its output speed stabilizes. Clutch 41 then operates, providing steady-speed power to the generator, which then generates AC electricity. This AC electricity is then metered and fed into the national grid through the substation network. To maintain the mechanical wheel's operation, the starter motor 3 is recharged with mains electricity or self-generated energy, completing a repetitive cycle of mechanical wheel power generation. Example 2
[0018] like Figure 1 Figure 2As shown, this embodiment 2 is a schematic diagram of the mechanical wheel structure; a groove with a length greater than 2.0m of the mechanical wheel diameter, a width greater than 2.5m, and a depth greater than 1.0m of the mechanical wheel radius is excavated and cast on the ground, and foundation piles are set in the middle and at both ends of the groove to form a support platform; N anchor rods are anchored in both sides of the groove, and a reinforced concrete structure is used to build a wheel groove 24 for the mechanical wheel to rotate; the wheel groove side walls 241, the end caps 242 of the wheel groove side walls and the bottom of the wheel groove; the bearing housing 22 and the mechanical bearing with the bearing are installed on the support bodies on both sides of the middle of the groove. The wheel main shaft 21 and the output end of the mechanical wheel main shaft; the mechanical wheel body weighing tens of tons is transported to the assembly site, and the support rods 261 are spliced on the mechanical wheel main shaft in sections according to the design. The internal angle 27 between the support rod 26 and the main shaft is less than 85 degrees; the top of the support rod 26 is fastened to the mechanical wheel gear ring with screws, and the connection point of the N-section gear ring is best selected in the inter-tooth recess 29 between the two teeth, forming a mechanical wheel ring with a large mass; the mechanical wheel generates kinetic energy after operation, which is provided to the generator and other machinery through the output end of the mechanical wheel main shaft; this is a breakthrough in new energy.
[0019] The embodiments described above are merely descriptions of preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Without departing from the spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by persons skilled in the art should fall within the scope of protection defined by the claims of the present invention.
Claims
1. A method for generating electricity using a mechanical wheel system, characterized in that: A method for generating electricity using a mechanical wheel system device is a whole process of a mechanical wheel, a starting electric system device, a gear box, an AC generator, and an electrical control system flow; the whole process of the system flow includes the following steps: S1. Manufacturing or purchasing mechanical wheels, starting motor system devices, gearboxes, alternators, electrical control devices and components in factories; S2. Dig a slot on the ground with a length greater than 2.0m of the mechanical wheel diameter, a width greater than 2.5m, and a depth greater than 1.0m of the mechanical wheel radius, and set a starting electric system device base in the middle and at the end of the slot; use reinforced concrete structure to build a wheel groove and a support body for the mechanical wheel rotation and a starting electric system device base; the support body is built as a whole with the gear box, the AC generator base, and the wheel groove for the mechanical wheel rotation; S3, assembling the manufactured mechanical wheel assembly into a mechanical wheel; the mechanical wheel is composed of a bearing shell, a bearing, a wheel shaft, a support rod, and a gear ring; the bearing shell, the bearing or the bearing shaft, and the wheel shaft are installed on the support body; the wheel shaft and the wheel ring are supported by the support rod, and the wheel ring is cast with gear teeth to form a gear ring; assembling N support rods and gear rings into a mechanical wheel; S4. Install the starter motor on the starter motor seat; the starter wheel gear on the starter motor meshes with the mechanical wheel gear; S5. Install the gearbox and AC generator on the support body and connect the electrical control system. S6. The inverter controls the starting motor to gradually accelerate its operation. The gears on the starting motor drive the mechanical wheel gear ring that engages with the wheel axle as the center to rotate. When the large-mass mechanical wheel rotates, potential energy and kinetic energy are generated to form mechanical energy. This energy is transmitted to the gear transmission through the wheel axle to obtain the required speed of the generator, providing power energy for the generator to generate electricity. The generator is then connected to the power distribution and transformation equipment and integrated into the power supply network. After the generator power is integrated into the power supply network, the starting motor is continuously replenished with energy from the city electricity or its own power generation, forming a repetitive mechanical wheel power generation cycle system.
2. A method for generating electricity using a mechanical wheel system according to claim 1, characterized in that: The mechanical wheel gear ring is made of N pieces, and the splicing part is arranged in the depression between two teeth; the diameter of the gear ring is greater than 13 meters; the number of teeth of the gear ring is greater than 1700.
3. A method for generating electricity using a mechanical wheel system according to claim 1, characterized in that: The outer ring of the mechanical wheel body and the wheel axle are supported by high-strength steel, and the support is divided into N groups, each group has two support rods, the two support rods are between the wheel axles, and the inner angle of inclination of the support rods and the wheel axle is less than 85 degrees.
4. A method for generating electricity using a mechanical wheel system according to claim 1, characterized in that: The mechanical wheel support body is provided with a mechanical wheel axle bearing housing; the junction of the mechanical wheel gear and the starting gear is at the horizontal end or the vertical end of the mechanical wheel gear ring; the starting motor is installed at the end of the rotating wheel groove of the mechanical wheel body.
5. The method for generating electricity using a mechanical wheel system according to claim 1, characterized in that: The transmission and transformation adopts a 10,000-volt high-voltage distribution system.
Citation Information
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