New energy power generation equipment
The new energy power generation equipment designed through the lever principle uses the meshing transmission between the central gear and the side gear to achieve power amplification, solving the high energy consumption and environmental pollution problems of traditional power generation equipment, and improving the power generation efficiency and resource utilization rate.
Patent Information
- Application Number
- CN202510691085.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2025-07-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing power generation equipment consumes a large amount of non-renewable resources, resulting in carbon emissions and environmental pollution.
The leverage principle is used to design new energy power generation equipment, and the power amplification is achieved through the specific proportion of the central gear and the side gear, and the power inputted by the motor is converted into exponentially increased electrical energy output.
Significantly improve power generation efficiency, reduce transportation and installation difficulties, reduce startup energy consumption, and achieve efficient power output.
Smart Images

Figure CN120332122A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power generation equipment, and more specifically, to a new energy power generation equipment. Background Art
[0002] Currently, power generation refers to the production process of converting water energy, thermal energy of fossil fuels (coal, oil, natural gas), nuclear energy, etc. into electrical energy by using power generation power devices. However, the existing methods have the following problems: When using the thermal energy of fossil fuels (coal, oil, natural gas) and nuclear energy for power generation, a large amount of non-renewable resources are usually consumed, resulting in a large amount of carbon emissions and environmental pollution. In view of this, the present application designs a new energy power generation equipment by the principle of leverage and the method of generating electricity with electricity. Summary of the Invention
[0003] The purpose of the present invention is to provide a new energy power generation equipment to solve the two major energy consumption problems existing in traditional power generation equipment: consuming a large amount of non-renewable resources, resulting in a large amount of carbon emissions and environmental pollution. Therefore, the present invention inputs through a motor at the middle-side gear and outputs at the input gear, enabling the generator to efficiently receive and utilize the amplified power, and realizing the conversion of the power input by the motor into a multiple increase in the electrical energy output of the generator.
[0004] To achieve the above object, the present invention provides a new energy power generation equipment, including a platform pillar. A support frame is fixedly connected to the top of the platform pillar. A primary drive assembly is arranged on the surface of the platform pillar. The primary drive assembly is divided into two groups, and each group of the primary drive assembly includes an input gear. An outer wall of the input gear is meshed with a power amplification and transfer assembly; The power amplification and transfer assembly is configured with a side gear with a diameter of 102 meters. The 102-meter diameter side gear forms a meshing connection relationship with the input gear for receiving and amplifying the input power from the input gear. At the same time, a central gear with a diameter of two meters is coaxially connected to the center position of the inner cavity of the 102-meter diameter side gear. The central gear is drivingly connected to four groups of power generation components for converting the electrical energy input by the receiving motor into a multiple increase in the electrical energy output through the lever principle; One of its purposes is to utilize the lever principle to optimize the power transmission path, realize the conversion of speed and torque, and help improve the efficiency of converting mechanical energy into electrical energy by the power generation components, thereby enhancing the energy conversion efficiency of the entire new energy power generation equipment.
[0005] As a further improvement of the technical solution, the primary drive assembly includes a motor fixedly connected to the bottom of the platform pillar. The output end of the motor is rotatably connected to a drive shaft. The end of the drive shaft away from the motor is fixedly connected to an input gear. The top of the platform pillar is fixedly connected to a first support rotator. The inner wall of the first support rotator is rotatably connected to the surface of the drive shaft; Through the fixed connection between the drive shaft and the input gear, a stable power transmission path is formed. The torque generated by the motor can be reliably transmitted to the input gear, providing stable initial power for the side gear in the drive power amplification and transfer component.
[0006] As a further improvement of the technical solution, the side gear is composed of a plurality of first arc-shaped connecting plates and a plurality of second arc-shaped connecting plates spliced together. The first arc-shaped connecting plates and the second arc-shaped connecting plates cooperate with each other to form a complete ring structure by splicing. Two first fixing plates are fixedly connected to the inner wall of a single first arc-shaped connecting plate. The inner wall of the first fixing plate is fixedly connected to a connecting plate by bolts. A central gear is arranged at the end of the connecting plate away from the side gear. Two second fixing plates are fixedly connected to the outer edge of the central gear. There are multiple groups, with two second fixing plates in each group. Each group of second fixing plates fixes the connecting plate at the end away from the first fixing plate, also by means of bolt connection. A support shaft is fixedly connected to the inner cavity of the central gear. The surface of the support shaft is rotatably connected to a second support rotator by means of a bearing. The bottom of the second support rotator is fixedly connected to the top of the support frame; The side gear is composed of a plurality of first arc-shaped connecting plates and second arc-shaped connecting plates spliced together, decomposing the originally large overall structure into relatively small components, reducing the transportation difficulty and the dependence on special transportation equipment. Moreover, the first fixing plates on the inner wall of the first arc-shaped connecting plates and the second fixing plates on the outer edge of the central gear firmly fix the connecting plate by bolts, forming a stable connection structure among the side gear, the connecting plate, and the central gear.
[0007] As a further improvement of the technical solution, the power generation assembly includes four output gears meshed with the outer edge of the central gear. Rotating shafts are fixedly connected to the ends of the four output gears. A gearbox is fixedly connected to the end of the rotating shaft away from the output gear. A generator is fixedly connected to the end of the gearbox away from the rotating shaft. The bottom of the generator is fixedly connected to the top of the support frame. A third support rotator is fixedly connected to the top of the support frame. The inner cavity of the third support rotator is rotatably connected to the surface of the rotating shaft. Two output gears form a group, and there are two groups, symmetrically distributed at both ends of the drive power amplification and transfer component and located above the support frame; Through the output gear meshing with the outer edge of the central gear, the mechanical energy of the rotation of the central gear is transmitted to the rotating shaft, then transmitted to the generator through the gearbox, and finally the generator converts the mechanical energy into electrical energy, realizing the core function of the power generation equipment.
[0008] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. In this new energy power generation equipment, through the specific ratio design of the central gear with a diameter of two meters and the side gear with a diameter of 102 meters, a power amplification ratio of 1:51 is constructed based on the lever principle, achieving a significant torque amplification effect. In the primary drive assembly, the motor only requires a very small input power, and through gear transmission, the power can be transmitted to the side gear. In this process, the amplified powerful output power can effectively drive the central gear and its connected power generation components. With only 1 degree of electrical energy input, the power generation components can efficiently receive and utilize the amplified power and convert it into 10 degrees or even 100 degrees of electrical energy output. It can efficiently receive and utilize the amplified power and convert it into a large amount of electrical energy, thus significantly improving the power generation efficiency and providing a highly innovative and efficient solution for the power supply field.
[0009] 2. In this new energy power generation equipment, by splitting the side gear with a diameter of 102 meters into multiple first arc connecting plates and second arc connecting plates, the volume and weight of each component are significantly reduced, getting rid of the dependence on large special transportation equipment, and conventional transportation tools can be used for transportation, significantly reducing the transportation cost and difficulty. At the same time, the connecting plates are connected to the first fixing plate and the second fixing plate through bolts and can be disassembled during transportation, further reducing the transportation volume and improving the transportation efficiency. During on-site installation, only need to splice the first arc connecting plate and the second arc connecting plate in sequence according to the design requirements and fix them with bolts. Compared with the integral large gear, the installation operation is simpler, greatly reducing the installation difficulty. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is the overall structure assembly schematic diagram of the present invention; Figure 2 It is the side gear structure schematic diagram of the present invention; Figure 3 It is the generator structure schematic diagram of the present invention; Figure 4 For the present invention Figure 1 The enlarged structure diagram at A; Figure 5 For the present invention Figure 2 The enlarged structure schematic diagram at B; Figure 6 For the present invention Figure 2 The enlarged structure schematic diagram at C; Figure 7 For the present invention Figure 3A schematic diagram of the structure at D of FIG. Figure 8 It is a schematic diagram of the gear radius ratio structure of the present invention; Figure 9 It is a schematic diagram of the lever data structure of the present invention; The meaning of each number in the figure is: 100, platform pillar; 110, support frame; 200, primary drive assembly; 210, motor; 220, drive shaft; 2201, first support rotator; 230, input gear; 300, power amplification transfer assembly; 310, side gear; 3101, first arc-shaped connecting plate; 3102, second arc-shaped connecting plate; 320, first fixed plate; 330, connecting plate; 340, central gear; 3401, second fixed plate; 350, support shaft; 3501, second support rotator; 400, power generation assembly; 410, generator; 420, gearbox; 430, rotating shaft; 4301, third supporting rotator; 440, output gear. DETAILED DESCRIPTION
[0011] The following will be combined with the accompanying drawings in the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0012] Example See also Figures 1-9 As shown, this embodiment provides a new energy power generation device, including a platform pillar 100, the top of the platform pillar 100 is fixedly connected to a support frame 110, the surface of the platform pillar 100 is provided with a primary drive assembly 200, the primary drive assembly 200 is divided into two groups, each group of the primary drive assembly 200 includes an input gear 230, and the outer wall of the input gear 230 is meshed with a power amplification transfer assembly 300; The power amplification transfer component 300 is provided with a side gear 310 with a diameter of 102 meters. The side gear 310 with a diameter of 102 meters forms a meshing connection with the input gear 230, and is used for receiving the input power driven by the input gear 230 through the motor 210. At the same time, a central gear 340 with a diameter of two meters is coaxially connected to the center of the inner cavity of the side gear 310 with a diameter of 102 meters; the central gear 340 is transmission-connected to four groups of power generation components 400, which are used for converting the electric energy received from the motor into a multiple-increased electric energy output through the lever principle.
[0013] Currently, the lever principle achieves power gain through torque balance and torque amplification. Its core formula is: F1×L1=F2×L2 Where: F1 is the input force; L1 is the input force arm, which is the radius of the input gear, 1 meter; F2 is the tangential force received by the output force side gear 310; L2 is the radius of the output force arm side gear 310, 51 meters; For example, as Figure 9 shown, it shows a schematic diagram of two levers with a length of 51m. Specifically: Upper lever: At m1, 1m away from one end, "Input 10N" is marked, indicating that a force of 10N is applied here. At n1, 51m away from the other end of the lever, the force is amplified to 500N. Given that the input force F1 = 10N and the input force arm L1 = 50M, assuming the output force is at n1 and the output force arm L2 = 1m, according to the lever principle formula, F2 = 500N can be obtained; Lower lever: At m2, 10m away from one end, "Input 10N" is marked, that is, a force of 10N is applied here. At n1, 51m away from the other end of the lever, the force is 41N; It can be known that the input force F1 = 10N, the input force arm L1 = 41m, and the output force L2 = 10m; 10N × 41m = F2× 10m →F2 = 41N; Therefore, applying the above lever principle to this solution, based on the lever principle, through the central gear 340 with a diameter of 2m and a radius of 1m and the side gear 310 with a diameter of 102m and a radius of 51m: F2=F1×(L1 / L2)=F1×(1 / 51) Since torque T = F×R, the relationship between the output torque T2 and the input torque T1 is: T2=F2×R2=(F1 / 51)×51=F1×1=T1×51 That is: the output torque is amplified 51 times.
[0014] Without considering energy loss, according to the lever principle, the increase multiple of power is the same as the amplification multiple of torque, both are 51 times; because the central gear 340 and the side gear 310 have the same linear velocity. According to the power formula P = Fv, where P is power, F is power, and v is linear velocity. In the case of constant power and the same linear velocity, power is proportional to torque. Therefore, the amplification multiple of torque is the increase multiple of power.
[0015] When the central gear 340 in the power amplification transfer component 300 rotates concentrically with the side gear 310, the central gear 340 with a diameter of 2 meters and the side gear 310 with a diameter of 102 meters form a gear ratio of 51:1. Based on the lever principle, the input torque is amplified by 51 times, T2 = 51×T1. Assuming that the traditional generator set requires input power for cold start, the system only needs 1 / 51 of the input torque of the traditional scheme to generate the same output torque (input 50,000, output: 50,000 * 51 times / 60 times = 2.55 million / 3 million. Even if the wind resistance and frictional resistance are deducted by 20%, 2.4 million of electricity can still be generated). Thus, it allows the use of a low-torque, high-speed motor, significantly reducing the motor specification requirements and manufacturing costs. Although the input power still needs to satisfy the power conservation principle of the load demand P1 = P2, by using a high-efficiency motor with an efficiency > 95% to replace the low-efficiency diesel generator set with an efficiency of 30 - 40%, and shortening the start-up time from the traditional 5 minutes to 30 seconds, a 90% reduction, a significant reduction in start-up energy consumption is achieved. Through this innovative torque amplification mechanism, while ensuring power output, it overcomes the inertial resistance of the large rotor system and realizes energy conservation and efficiency improvement through efficiency enhancement and time optimization, providing a practical technical solution for the start-up link of power generation equipment; Moreover, at the moment of start-up, the two groups of primary drive components 200 exert force simultaneously, providing the initial driving force to drive the rotation of the side gear 310 with a diameter of 102 meters. Through the meshing connection between the gears, the side gear 310 can effectively drive the central gear 340 with a diameter of 2 meters to operate, obtaining a powerful output power through gear transmission with a relatively small input power, that is, driving the four groups of power generation components 400 to convert the mechanical energy transmitted by the central gear 340 into electrical energy, achieving high-efficiency power generation; When the power generation is stable, those skilled in the art can think that it is not necessary for the two groups of primary drive components 200 to connect to other power inputs. The power generated by the four groups of power generation components 400 can be used to drive the primary drive components 200 to work, improving the energy utilization efficiency, that is, only one motor output is needed after stable operation, further improving the resource utilization rate.
[0016] Specifically, both the input gear 230 and the side gear 310 can be flexibly adjusted according to the actual situation to meet the function of driving the generator through the motor.
[0017] On the above basis, the specific structure is disclosed in detail: Considering that the primary drive component 200 needs to drive the input gear 230 to rotate, first, the specific parts in the primary drive component 200 need to be further disclosed. Therefore, the primary drive component 200 includes a motor 210 fixedly connected to the bottom of the platform support 100. The output end of the motor 210 is rotationally connected to a drive shaft 220, and the end of the drive shaft 220 away from the motor 210 is fixedly connected to the input gear 230; Among them: There are two sets of primary drive components 200. The power of the motor 210 in each set is 50,000 kilowatts. During the initial stage of operation, the two motors 210 drive the side gears 310 to rotate simultaneously by meshing. After the large gear 310 rotates to generate electricity, only one power generator 210 is required for driving, further saving resources; The motor 210 serves as the power source. After the power is turned on, the electromagnetic system inside it will generate electromagnetic force to drive the rotor of the motor to start rotating. Since the output end of the motor 210 is rotationally connected to the drive shaft 220, the torque generated by the rotation of the motor 210 will be transmitted to the drive shaft 220. One end of the drive shaft 220 away from the motor 210 is fixedly connected to the input gear 230. In this way, the rotation of the drive shaft 220 will drive the input gear 230 to rotate synchronously. Since the power of the motor 210 in each primary drive component 200 is 50,000 kilowatts, when the two motors 210 work simultaneously, a powerful initial driving torque will be provided. These two input gears 230 mesh with the side gears 310 in the power amplification and transfer component 300. As the input gears 230 rotate, they will transmit power to the side gears 310 through the meshing relationship between the gears, causing the side gears 310 to start rotating.
[0018] In order to enable the drive shaft 220 to stably transmit the driving force of the motor 210 to the input gear 230, therefore, a first support rotator 2201 is fixedly connected to the top of the platform support 100, and the inner wall of the first support rotator 2201 is rotationally connected to the surface of the drive shaft 220. By providing the first support rotator 2201 at the top of the platform support 100, the drive shaft 220 can be supported when it rotates.
[0019] In order to enable the power amplification and transfer component 300 to transmit power to the power generation component 400, first, the parts of the power amplification and transfer component 300 need to be further disclosed. Therefore, a plurality of connecting plates 330 are arranged in the inner cavity of the side gear 310, and a central gear 340 is arranged at one end of the plurality of connecting plates 330 away from the side gear 310. The inner cavity of the central gear 340 meshes with the power generation component 400. After the primary drive component 200 starts to work, the input gear 230 rotates and drives the meshing side gear 310 to rotate. Since a plurality of connecting plates 330 are arranged in the inner cavity of the side gear 310, these connecting plates 330 play a role in connecting and transmitting power. When the side gear 310 rotates, the power is transmitted to the central gear 340 arranged at the other end of the connecting plates 330 through the connecting plates 330, causing the central gear 340 to rotate together with the side gear 310. The inner cavity of the central gear 340 meshes with the power generation component 400. This gear meshing structure enables the rotation of the central gear 340 to directly drive the power generation component 400 to work; Such as Figure 8As shown in the figure, first, two input gears 230 drive the side gear 310 with a diameter of 102 meters to rotate. When the side gear with a radius of 51 meters rotates, it will drive the central gear 340 to rotate synchronously through the connecting plate 330. The radius of the central gear 340 is 1 meter. Using the lever principle, the radius of the side gear 310 can be regarded as the power arm, and the radius of the central gear 340 can be regarded as the resistance arm. Since the power arm of 51 meters is much larger than the resistance arm of 1 meter, according to the lever principle "power × power arm = resistance × resistance arm", during the rotation process, when a relatively small driving force is applied to the side gear 310, a relatively large resistance effect can be generated on the central gear 340, thus realizing the function of driving a relatively large load with a relatively small power. The ratio of the input rate to the output rate is 1:60 as a schematic ratio value, showing a multiple increase in utilization rate; Considering that the side gear 310 has a diameter of 102 meters and is extremely large in size. If it is in an integral form, when installing the equipment, large transportation equipment needs to be used for handling. This not only requires extremely high transportation equipment, but also has great operation difficulty and high cost during the on-site installation process. Therefore, the side gear 310 is jointly spliced by a plurality of first arc-shaped connecting plates 3101 and a plurality of second arc-shaped connecting plates 3102. The first arc-shaped connecting plates 3101 and the second arc-shaped connecting plates 3102 cooperate with each other to form a complete ring structure in a splicing manner, thus constituting the side gear 310. In the transportation link, the volume and weight of each arc-shaped connecting plate are relatively small, and conventional transportation tools can be used to transport them to the installation site separately. During installation, then splice and install a plurality of first arc-shaped connecting plates 3101 and second arc-shaped connecting plates 3102 in sequence according to the design requirements, and use bolts to fix the first arc-shaped connecting plates 3101 and the second arc-shaped connecting plates 3102, greatly reducing the installation difficulty, improving the installation efficiency, and at the same time reducing the cost of the entire installation process and the dependence on special transportation equipment.
[0020] In order to make the plurality of connecting plates 330 stable during rotation and cooperate with the transportation of the side gear 310 to facilitate transportation. Therefore, two first fixing plates 320 are fixedly connected to the inner wall of a single first arc-shaped connecting plate 3101, and the connecting plate 330 is fixed to the inner wall of the first fixing plates 320 by bolts; Two second fixing plates 3401 are fixedly connected to the outer edge of the central gear 340. There are two second fixing plates 3401 in each group, and there are multiple groups in total. Each group of second fixing plates 3401 fixes the connecting plate 330 at the end far from the first fixing plate 320, also using the bolt connection method; During transportation, due to the use of bolt connections, it is convenient for disassembly and assembly. The connecting plate 330 can be removed from the first fixing plate 320 and the second fixing plate 3401, and the side gear 310, the central gear 340 and the connecting plate 330 can be transported separately, greatly reducing the transportation volume and difficulty and improving the transportation convenience. After arriving at the installation site, the components can be reassembled using bolts according to the corresponding installation sequence.
[0021] Considering that the rotation of the power amplification and transfer component 300 is driven by two input gears 230, but in order to keep the power amplification and transfer component 300 stable during rotation, a support point needs to be set for the power amplification and transfer component 300. Therefore, a support shaft 350 is fixedly connected to the inner cavity of the central gear 340, and the surface of the support shaft 350 is rotatably connected to a second support rotator 3501 by means of a bearing. The bottom of the second support rotator 3501 is fixedly connected to the top of the support frame 110. When the input gear 230 drives the side gear 310 composed of a plurality of first arc-shaped connecting plates 3101 and second arc-shaped connecting plates 3102 to rotate, it will synchronously drive the connecting plate 330 to drive the central gear 340 to rotate. At this time, the rotation of the central gear 340 will drive the support shaft 350 on the inner wall to rotate, so that the support shaft 350 rotates in the inner cavity of the second support rotator 3501, enabling the second support rotator 3501 to support the support shaft 350 and synchronously support the side gear 310.
[0022] In order to enable the power generation component 400 to effectively receive the power transmitted by the central gear 340 when the central gear 340 rotates and achieve the purpose of converting mechanical energy into electrical energy, it is necessary to further disclose the parts of the power generation component 400. Therefore, the power generation component 400 includes four output gears 440 meshingly connected to the outer edge of the central gear 340. The ends of the four output gears 440 are fixedly connected to a rotating shaft 430, and one end of the rotating shaft 430 away from the output gear 440 is fixedly connected to a gearbox 420. One end of the gearbox 420 away from the rotating shaft 430 is fixedly connected to a generator 410; Two output gears 440 form a group, and there are two groups in total. Two output gears 440 form a group, and there are two groups in total, symmetrically distributed at both ends of the power amplification and transfer component 300; When the central gear 340 rotates, through meshing with the output gear 440, it can transmit power to the output gear 440. The rotation of the output gear 440 drives the rotating shaft 430 fixedly connected thereto to rotate, and the rotating shaft 430 then transmits the power to the gearbox 420. Finally, the gearbox 420 transmits the power to the generator 410 to ensure that the power of the central gear 340 can be smoothly transmitted to the generator 410; Among them: The rotation speed of the central gear 340 may not be suitable for directly driving the generator 410 to achieve the best power generation efficiency. The transmission 420 can adjust the rotation speed transmitted by the rotating shaft 430 according to the working requirements of the generator 410, so that the generator 410 can operate at an appropriate rotation speed, improving the power generation efficiency and power quality. The generator 410 is the core component for realizing energy conversion; After the generator 410 receives the power transmitted from the transmission 420, the rotor inside it rotates under the drive of the power, cutting the magnetic lines of force generated by the stator. According to the principle of electromagnetic induction, mechanical energy can be converted into electrical energy, thus achieving the purpose of power generation.
[0023] The bottom of the generator 410 is fixedly connected to the top of the support frame 110. The top of the support frame 110 is fixedly connected with a third support rotator 4301. The inner cavity of the third support rotator 4301 is rotationally connected to the surface of the rotating shaft 430. By setting the third support rotator 4301, the rotating shaft 430 can be supported.
[0024] In summary, the working process of the present invention is as follows: After the power is turned on, the motors 210 in the two primary drive assemblies 200 start simultaneously. The torque output by them is transmitted to the input gear 230 through the drive shaft 220. At this time, each motor 210 provides power, and the two work together to provide an initial driving torque. The input gear 230 with a diameter of 2 meters meshes with the side gear 310 with a diameter of 102 meters, driving the side gear 310 to rotate. During this process, the first support rotator 2201 at the top of the platform support 100 supports the drive shaft 220 to ensure stable power transmission. The side gear 310 transmits the power to the central gear 340 through multiple connecting plates 330 in its inner cavity. When the central gear 340 rotates, it transmits the power to the output gears 440 by meshing with the two output gears 440 symmetrically distributed along its outer edge in the power generation assembly 400. Each group of two output gears 440 drives the corresponding rotating shaft 430 to rotate respectively. The rotating shaft 430 then transmits the power to the transmission 420, and finally the transmission 420 transmits it to the generator 410. During this process, the third support rotator 4301 at the top of the support frame 110 supports the rotating shaft 430 to ensure stable power transmission.
[0025] The above shows and describes the basic principle, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A new energy power generation device, including a platform pillar (100), the top of the platform pillar (100) is fixedly connected with a support frame (110), and it is characterized in that: The surface of the platform pillar (100) is provided with a primary drive assembly (200). Each group of the primary drive assemblies (200) includes an input gear (230), and a power amplification and transfer assembly (300) is meshed with the outer wall of the input gear (230). The power amplification and transfer assembly (300) is configured with a rim gear (310) with a diameter of 102 meters. The 102-meter-diameter rim gear (310) is in meshing connection with the input gear (230) for receiving the input power driven by the motor (210) of the input gear (230). A central gear (340) with a diameter of two meters is coaxially connected to the center position of the inner cavity of the rim gear (310). The central gear (340) is in transmission connection with four groups of power generation assemblies (400) for converting the electric energy received by the motor into electric energy output with a multiple increase through the lever principle.
2. The new energy power generation equipment according to claim 1, characterized in that: There are two platform pillars (100) and support frames (110), which are symmetrically distributed with the power amplification and transfer assembly (300) as the center, and support the power amplification and transfer assembly (300) and the power generation assemblies (400) at the same time. Among them: every two of the four groups of power generation assemblies (400) are installed on the top of one support frame (110).
3. The new energy power generation equipment according to claim 1, characterized in that: The primary drive assembly (200) includes a motor (210) fixedly connected to the bottom of the platform pillar (100). The output end of the motor (210) is rotatably connected to a drive shaft (220), and the end of the drive shaft (220) away from the motor (210) is fixedly connected to the input gear (230).
4. The new energy power generation equipment according to claim 1, characterized in that: A first support rotator (2201) is fixedly connected to the top of the platform pillar (100), and the inner wall of the first support rotator (2201) is rotatably connected to the surface of the drive shaft (220).
5. The new energy power generation equipment according to claim 1, characterized in that: A plurality of connecting plates (330) are arranged in the inner cavity of the rim gear (310). A central gear (340) is arranged at one end of the plurality of connecting plates (330) away from the rim gear (310), and the inner cavity of the central gear (340) is meshed with the power generation assembly (400).
6. The new energy power generation device according to claim 5, characterized in that: The rim gear (310) is jointly spliced by a plurality of first arc connecting plates (3101) and a plurality of second arc connecting plates (3102). The first arc connecting plates (3101) and the second arc connecting plates (3102) cooperate with each other to form a complete ring structure in a splicing manner.
7. The new energy power generation equipment according to claim 6, characterized in that: Two first fixing plates (320) are fixedly connected to the inner wall of a single first arc connecting plate (3101), and the connecting plate (330) is fixed to the inner wall of the first fixing plate (320) by bolts. Two second fixing plates (3401) are fixedly connected to the outer edge of the central gear (340). Every two second fixing plates (3401) form a group, and there are multiple groups. Each group of the second fixing plates (3401) fixes the connecting plate (330) at one end away from the first fixing plate (320), also by means of bolt connection.
8. The new energy power generation equipment according to claim 7, characterized in that: A support shaft (350) is fixedly connected to the inner cavity of the central gear (340). A second support rotator (3501) is rotatably connected to the surface of the support shaft (350) by means of a bearing, and the bottom of the second support rotator (3501) is fixedly connected to the top of the support frame (110).
9. The new energy power generation equipment according to claim 8, wherein: The power generation assembly (400) includes four output gears (440) meshed with the outer edge of the central gear (340). A rotating shaft (430) is fixedly connected to the end of each of the four output gears (440). A transmission (420) is fixedly connected to the end of the rotating shaft (430) away from the output gear (440), and a generator (410) is fixedly connected to the end of the transmission (420) away from the rotating shaft (430). Two of the output gears (440) form a group, and there are two groups in total, symmetrically distributed at both ends of the power amplification and transfer assembly (300).
10. The new energy power generation equipment according to claim 9, characterized in that: The bottom of the generator (410) is fixedly connected to the top of the support frame (110). A third support rotator (4301) is fixedly connected to the top of the support frame (110), and the inner cavity of the third support rotator (4301) is rotatably connected to the surface of the rotating shaft (430).