Generator set for solar equipment

By introducing pile foundations, floating components, and drive components into the floating photovoltaic panel system, and using transmission rings and blades to adjust the tilt angle and orientation of the photovoltaic panels, the problems of installation angle and wind force of floating photovoltaic panels are solved, achieving efficient lighting and safety protection.

CN121367441AActive Publication Date: 2026-01-20ZHEJIANG UNIVPOWER MACHINERY
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Patent Information

Application Number
CN202511802849.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-03
Publication Date
2026-01-20
Estimated Expiration
2045-12-03

AI Technical Summary

Technical Problem

Unlike terrestrial solar panels, floating solar panels cannot be installed at large tilt angles and cannot automatically adjust to changes in the direction of sunlight, resulting in poor lighting performance and a high risk of tipping over in strong winds.

Method used

A generator set for solar energy equipment was designed, comprising a pile foundation, a floating part, a drive component, and photovoltaic modules. Through the cooperation of a transmission ring and blades, the photovoltaic panels can automatically adjust their tilt angle and orientation on the water surface to adapt to changes in sunlight and wind conditions.

Benefits of technology

It improves the light-gathering efficiency and safety of photovoltaic panels, protects them from tipping over in strong winds, and ensures the stability of power generation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of solar power generation, in particular to a generator set for solar equipment, which comprises a pile foundation, a pipe fitting is rotatably connected to the outer side of the top of the pile foundation, a floating part is fixedly connected to the outer side of a transmission ring, and the floating part comprises a first floating plate and a second floating plate which are fixed to each other. A plurality of driving assemblies are annularly fixed to the bottom face of the second floating plate at equal angles, each driving assembly comprises a machine box, paddles are rotationally connected to the machine boxes, a photovoltaic assembly is arranged at the top of the second floating plate, and the photovoltaic assembly comprises a plurality of photovoltaic panels and an adjusting frame. In the invention, the plurality of photovoltaic panels are supported on the floating plate II according to a relatively large inclination angle to receive illumination, and the plurality of paddles at the bottom of the floating plate II can also rotate to drive the floating plate to drive the plurality of photovoltaic panels to rotate around the pile foundation, so that the photovoltaic panels can automatically adjust the illumination receiving direction along with the change of the illumination direction; and the power generation efficiency of the photovoltaic panel can be improved.
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Description

Technical Field

[0001] This invention relates to the field of solar power generation technology, specifically a generator set for solar energy equipment. Background Technology

[0002] Solar-powered generator sets use solar panels (also called photovoltaic panels) to absorb sunlight and then convert solar radiation into electrical energy through the photoelectric effect. The electrical energy is then transmitted to the power conversion controller, which in turn transmits the electrical energy to energy storage battery packs such as batteries and lithium batteries. Finally, the electrical equipment can be connected to the energy storage battery packs through an inverter to use the power. Depending on the installation location of the photovoltaic panels, solar-powered generator sets can be divided into floating solar-powered generator sets and land-based solar-powered generator sets.

[0003] Floating solar power generators mainly use floating platforms to install photovoltaic panels on the water surface to generate electricity. Currently, the photovoltaic panels on the floating platforms are generally installed at a fixed tilt angle of no more than 20 degrees. This is because strong winds blowing over photovoltaic panels installed at large tilt angles can cause them to tilt, creating upward or downward lift and potentially causing them to overturn. Therefore, most photovoltaic panels cannot be set at a large tilt angle of 30°-45° like ground-based photovoltaic panels to improve the light-gathering effect. Furthermore, most photovoltaic panels in water-based generator sets cannot automatically adjust the direction of sunlight reception to further improve the light-gathering effect as the direction of sunlight changes. Summary of the Invention

[0004] The purpose of this invention is to provide a generator set for solar energy equipment to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A generator set for solar power equipment includes:

[0007] A pile foundation is fixed to the riverbed, and a pipe is rotatably connected to the pile foundation. A circular plate and a transmission ring are slidably and rotatably connected to the outside of the pipe.

[0008] The floating part is fixedly connected to the transmission ring, and the floating part includes a float plate one and a float plate two that are fixed to each other;

[0009] Multiple drive components are evenly installed on the bottom surface of the second floating plate. Each drive component includes a chassis, and blades are rotatably connected to the chassis.

[0010] A photovoltaic module, comprising multiple photovoltaic panels and an adjustment frame, wherein one end of each photovoltaic panel is rotatably connected to a floating plate, and the adjustment frame comprises two movable beams, each slidably connected to the floating plate, and multiple shafts for adjusting the tilt angle of the photovoltaic panels are rotatably connected between the two movable beams.

[0011] The fixed assembly comprises a fixed ring movably sleeved on the pipe, and a plurality of air cylinders capable of fixedly connecting the floating plate I and the pile foundation are arranged on the fixed ring.

[0012] Further, a circular cavity capable of accommodating the circular plate is arranged on the top surface of the floating plate I, and the floating plate II is fixedly connected with the transmission ring.

[0013] Further, the motor capable of driving the paddle to rotate is fixedly arranged in the case, and the protective cover is fixedly arranged on the outer side of the case.

[0014] Further, the plurality of clamping blocks are fixedly arranged on the middle part of the circular plate, the plurality of transmission blocks are uniformly rotatably connected with the inner side of the transmission ring, and the clamping blocks and the transmission blocks are slidably connected with the pipe.

[0015] Further, the plurality of accommodating grooves are uniformly arranged on the inner side of the transmission ring, and the transmission blocks are rotatably connected with one end of the accommodating grooves.

[0016] Further, the circular seat is fixedly arranged on the top surface of the pile foundation, and the plurality of connecting columns slidably connected with the circular seat are fixedly arranged on the fixed ring.

[0017] Further, the plurality of positioning holes for inserting the output end fixed column of the air cylinder are uniformly arranged on the top surface of the floating plate II, and the electromagnet capable of adsorbing and fixing the pipe is fixedly arranged on the bottom surface of the circular seat.

[0018] Further, the connecting ring slidably connected with the connecting column is fixedly arranged on the outer side of the circular seat, and the anemometer is fixedly arranged on the top of the circular seat.

[0019] Further, the adjusting rod rotatably connected with the corresponding position shaft rod is rotatably connected with one end of the photovoltaic panel, and the driving rod in transmission connection with the circular plate is rotatably connected with the outer side of the shaft rod.

[0020] Further, the annular groove is eccentrically arranged on the top surface of the circular plate, and the roller slidably connected with the annular groove is rotatably connected with one end of the driving rod.

[0021] Compared with the prior art, the beneficial effects of the present application are:

[0022] 1. The utility model discloses a photovoltaic module, which comprises a pile foundation, a floating plate one, a floating plate two, a plurality of photovoltaic panels, a plurality of shaft rods, a plurality of adjusting frames, a plurality of adjusting rods, a plurality of moving beams and a plurality of transmission rings.

[0023] When the anemograph detects strong wind, the plurality of paddles arranged on the bottom surface of the floating plate two rotate to drive the floating plate two, the floating plate one and the photovoltaic assembly to rotate counterclockwise around the pipe on the water surface. At this time, the pipe and the circular plate do not rotate, the driving rod is driven to push the shaft rod towards the photovoltaic panel on the eccentrically arranged annular groove, and the plurality of shaft rods simultaneously push the adjusting rod towards the photovoltaic panel under the linkage action of the driving beam, so that the plurality of photovoltaic panels simultaneously adjust the inclination angle, effectively preventing the photovoltaic panel from overturning in strong wind weather, so as to realize that the photovoltaic panel can efficiently receive light and generate electricity at a large inclination angle in normal use, improve the power generation efficiency, automatically reduce the inclination angle in strong wind weather to protect the photovoltaic panel, and improve the safety of the photovoltaic panel.

[0024] 2. The utility model discloses a transmission ring arranged between the floating plate one and the pipe, a plurality of transmission blocks capable of being clamped with the sliding groove on the pipe are rotationally connected to the inner side of the transmission ring, when the floating plate one rotates clockwise around the pipe with the transmission ring, the transmission blocks are clamped in the sliding groove of the pipe to make the pipe and the circular plate rotate with the floating plate one and the floating plate two, at this time, the annular groove on the circular plate does not drive the adjusting frame on the photovoltaic assembly to adjust the inclination angle of the photovoltaic panel, when the floating plate one rotates counterclockwise around the pipe, the transmission blocks are rotationally accommodated in the accommodating grooves of the transmission ring, and the pipe and the circular plate no longer rotate with the floating plate one, at this time, the floating plate one rotates counterclockwise with the entire photovoltaic assembly, so that the annular groove on the circular plate drives the adjusting frame to adjust the inclination angle of the photovoltaic panel.

[0025] In the normal use of photovoltaic module, the paddle at the bottom of the floating plate two can be rotated to drive the floating plate one and the floating plate two with the photovoltaic module to rotate clockwise as a whole, so as to keep the photovoltaic plate at a large inclination angle, and automatically rotate and adjust the direction of receiving light with the change of the light direction of the sun in different time periods, thereby further improving the lighting effect and the power generation efficiency. When strong wind weather occurs, the paddle at the bottom of the floating plate two can be rotated to drive the floating plate one and the floating plate two with the photovoltaic module to rotate counterclockwise as a whole to lower the inclination angle, and then the floating plate one and the floating plate two with the photovoltaic module can be rotated clockwise as a whole to conform to the light direction, so that the photovoltaic plate with a small inclination angle can continue to automatically rotate and adjust the direction of receiving light with the change of the light direction of the sun in different time periods, thereby realizing that the photovoltaic plate can automatically adjust the direction of receiving light with the change of the light direction of the sun in different periods of large and small inclination angles. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is the overall structure of the present application Figure 1 ;

[0027] Figure 2 is the overall structure of the present application Figure 2 ;

[0028] Figure 3 is the inclination angle of the photovoltaic plate in the present application

[0029] Figure 4 is the internal structure of the floating plate one and the floating plate two in the present application

[0030] Figure 5 is the overall structure of the present application

[0031] Figure 6 is the overall structure of the present application

[0032] Figure 7 is the structure of the floating part and the driving assembly in the present application

[0033] Figure 8 is the structure of the photovoltaic module in the present application

[0034] Figure 9 is the structure of the fixed assembly in the present application.

[0035] In the figure: 100, pile foundation; 110, pipe; 120, round seat; 121, connecting ring; 122, anemograph; 130, round plate; 131, annular groove; 140, transmission ring; 141, transmission block; 142, containing groove; 200, floating part; 210, floating plate one; 211, round cavity; 220, floating plate two; 221, positioning hole; 300, driving assembly; 310, machine box; 311, protective cover; 320, paddle; 400, photovoltaic assembly; 410, photovoltaic panel; 411, adjusting rod; 412, fixing seat; 413, rotating seat one; 420, moving beam; 430, shaft rod; 440, driving rod; 441, roller; 500, fixing assembly; 510, fixing ring; 520, air cylinder; 530, connecting column. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0037] Embodiment one, please refer to Figure 1 - Figure 9 In the embodiments of the present application, a generator set for solar energy equipment includes a pile foundation 100 fixedly poured with the river bottom, a pipe 110 rotationally connected to the top outer side of the pile foundation 100, a round plate 130 and a transmission ring 140 slidingly and rotationally connected to the outer side of the pipe 110, a floating part 200 fixedly connected to the outer side of the transmission ring 140, the floating part 200 including floating plate one 210 and floating plate two 220 fixed to each other, a plurality of driving assemblies 300 fixedly arranged on the bottom surface of the floating plate two 220 in a ring shape at equal angles, the driving assembly 300 including a machine box 310, a paddle 320 rotationally connected to the machine box 310, a photovoltaic assembly 400 arranged on the top of the floating plate two 220, the photovoltaic assembly 400 including a plurality of photovoltaic panels 410 and an adjusting frame, one end of the photovoltaic panel 410 rotationally connected to the floating plate one 210, the adjusting frame including two moving beams 420 slidingly connected to the floating plate one 210, a plurality of shaft rods 430 rotationally connected between the two moving beams 420 and capable of respectively adjusting the inclination angles of the plurality of photovoltaic panels 410 at the corresponding positions, a fixing assembly 500 sleeved with the pipe 110, the fixing assembly 500 including a fixing ring 510 movably sleeved with the pipe 110, and a plurality of air cylinders 520 fixedly arranged on the fixing ring 510 and capable of fixedly connecting the floating plate one 210 and the pile foundation 100.

[0038] Specifically, by fixing the pile foundation 100 in water, the outer side of the pile foundation 100 is rotationally connected with a pipe 110, the outer side of the pipe 110 is rotationally connected with a floating plate one 210 and a floating plate two 220 through a transmission ring 140, a plurality of photovoltaic panels 410 are installed on the floating plate two 220, so that the pile foundation 100 can stably install the plurality of photovoltaic panels 410 on the water surface by positioning and fixing the floating plate (including the floating plate one 210 and the floating plate two 220), in the initial state, the plurality of photovoltaic panels 410 can be supported on the floating plate two 220 at a large inclination angle to receive light, when the sun position changes, the plurality of oars 320 at the bottom of the floating plate two 220 can be rotated to drive the floating plate with the plurality of photovoltaic panels 410 to rotate around the pile foundation 100, so that the photovoltaic panels 410 can automatically adjust the direction of receiving light with the change of the light position, which helps to improve the efficiency of the photovoltaic panels 410, when strong wind weather occurs, the oars 320 are reversely rotated to drive the floating plate with the photovoltaic panels 410 to reversely rotate around the pile foundation 100, so that the inclination angle of the photovoltaic panels 410 is adjusted to be lower by the adjusting frame on the photovoltaic assembly 400 in the reverse rotation process, which can effectively prevent the photovoltaic panels 410 from being blown over by the wind, and improves the safety of the photovoltaic panels 410 on the water surface.

[0039] As shown in Figure 1 , Figure 3 and Figure 7 , in the embodiment, a motor capable of driving the oars 320 to rotate is fixed inside the case 310, a protective cover 311 is fixed outside the case 310, a longitudinal beam is fixedly connected between the case 310 and the floating plate one 210, and the plurality of oars 320 are arranged at equal angles in a ring shape.

[0040] In the embodiment, when the motor inside the case 310 drives the oars 320 to rotate, the floating plate one 210 and the floating plate two 220 can float on the water surface with the entire photovoltaic assembly 400 and rotate clockwise around the pile foundation 100 under the action of the rotation of the plurality of oars 320, which facilitates the photovoltaic panels 410 to automatically adjust the position of receiving light after the sun position changes at different times, when the motor output end reversely rotates with the oars 320, the floating plate one 210 and the floating plate two 220 can also float on the water surface with the entire photovoltaic assembly 400 and rotate counterclockwise around the pile foundation 100, wherein the motor is a waterproof motor of the prior art, in addition, the mesh protective cover 311 can be sleeved outside the oars 320 to prevent debris from hitting and damaging the oars 320.

[0041] As shown in Figure 5 and Figure 6As shown, in the embodiment, the outer side of the pipe 110 is annularly and equiangularly provided with a plurality of sliding grooves distributed along the axial direction of the pipe 110, the middle part of the circular plate 130 is annularly and equiangularly fixed with a plurality of clamping blocks, the inner side of the transmission ring 140 is annularly and equiangularly rotatably connected with a plurality of transmission blocks 141, the clamping blocks and the transmission blocks 141 are all slidably clamped with the sliding grooves, and the clamping blocks and the transmission blocks 141 can also be clamped with the sliding grooves, wherein the clamping blocks and the sliding grooves are clamped with the transmission ring 140, which is convenient for the pipe 110 to rotate synchronously with the circular plate 130, and the transmission blocks 141 and the sliding grooves are clamped with the transmission ring 140, which is convenient for the floating plate two 220 to drive the pipe 110 to rotate through the transmission ring 140.

[0042] In the embodiment, the inner side of the transmission ring 140 is annularly and equiangularly provided with a plurality of accommodating grooves 142, one end of the accommodating groove 142 is fixed with a connecting shaft, the transmission block 141 is rotatably inserted with the connecting shaft, and the torsional spring is sleeved between the connecting shaft and the transmission block 141. In the initial state, the transmission block 141 can be rotated out of the accommodating groove 142 under the elastic force of the torsional spring, wherein the accommodating groove 142 can accommodate the transmission block 141.

[0043] In the embodiment, when the floating plate two 220 rotates clockwise with the transmission ring 140, the transmission blocks 141 on the transmission ring 140 cannot be accommodated inside the accommodating grooves 142, and the pipe 110 rotates clockwise outside the pile foundation 100 with the transmission ring 140, and the pipe 110 rotates clockwise with the circular plate 130, so that the floating part 200, the photovoltaic module 400 and the circular plate 130 rotate clockwise around the pile foundation 100 with the pipe 110, when the floating plate two 220 rotates counterclockwise with the transmission ring 140, the transmission blocks 141 on the transmission ring 140 are accommodated in the accommodating grooves 142, at this time, the transmission ring 140 does not rotate with the pipe 110 through the transmission ring 140, the pipe 110 is fixed outside the pile foundation 100 with the circular seat 120 and the circular plate 130, at this time, the floating part 200 and the photovoltaic module 400 rotate counterclockwise around the pile foundation 100, and the stationary circular plate 130 is convenient for driving the adjusting frame of the photovoltaic module 400 to drive the photovoltaic plate 410 to adjust the inclination angle.

[0044] In the embodiment, when the water level rises, the floating plate one 210 and the floating plate two 220 move upward with the photovoltaic module 400 as a whole, at this time, the transmission blocks 141 on the transmission ring 140 and the clamping blocks in the middle part of the circular plate 130 can simultaneously move upward along the sliding grooves outside the pipe 110 by the height of the floating plate, on the contrary, when the water level drops, the floating plate one 210 and the floating plate two 220 move downward with the photovoltaic module 400 as a whole, at this time, the transmission blocks 141 on the transmission ring 140 and the clamping blocks in the middle part of the circular plate 130 can simultaneously move downward along the sliding grooves outside the pipe 110 by the height of the floating plate, so that the entire floating part 200 can still support the photovoltaic module 400 in the case of change of water level height, and can drive the photovoltaic module 400 to adjust the inclination angle.

[0045] As Figure 4 and Figure 7 shown in the present embodiment, the top surface of the floating plate one 210 is provided with a circular cavity 211 capable of accommodating the circular plate 130, and the floating plate two 220 is embedded and fixed with the transmission ring 140, so that the floating plate one 210 and the floating plate two 220 as a whole can move up and down with the transmission ring 140 and the circular plate 130. When the circular plate 130 does not rotate synchronously with the floating plate one 210 and the floating plate two 220, the circular plate 130 rotates inside the circular cavity 211 as the floating plate one 210 rotates.

[0046] As Figure 1 and Figure 5 shown in the present embodiment, the top surface of the pile foundation 100 is fixed with a circular seat 120, and the bottom surface of the circular seat 120 is embedded and fixed with a ring-shaped electromagnet which is an existing component. When the floating part 200 drives the photovoltaic assembly 400 to rotate counterclockwise, the electromagnet is powered to attract and fix the top surface of the pipe fitting 110, so that the pipe fitting 110 can be stably fixed with the circular plate 130 on the outside of the pile foundation 100 without rotating.

[0047] As Figure 4 , Figure 5 Figure 8 shown in the present embodiment, one end of the photovoltaic plate 410 is fixedly connected with a rotating seat one 413, the rotating seat one 413 is rotatably connected with an adjusting rod 411 which is rotatably connected with a corresponding position shaft rod 430, the other end of the photovoltaic plate 410 is fixedly connected with two rotating seats two, the rotating seats two are rotatably connected with a fixed seat 412, and the fixed seat 412 is fixedly connected with the floating plate two 220. One of the shaft rods 430 is rotatably connected with a driving rod 440, one end of the driving rod 440 is rotatably connected with a roller 441, and the top surface of the circular plate 130 is eccentrically provided with an annular groove 131, and the roller 441 is rollingly connected with the annular groove 131.

[0048] In the initial state, refer to Figure 2 At this time, a plurality of photovoltaic plates 410 are arranged on the surface of the floating plate two 220 at a large inclination angle. When it is necessary to reduce the inclination angle of the photovoltaic plate 410, the driving assembly 300 drives the floating part 200 to rotate counterclockwise, and the floating part 200 drives the entire photovoltaic assembly 400 to rotate counterclockwise on the circular plate 130. When the roller 441 on the driving rod 440 rotates by 180 degrees, i.e. rotates to a position away from the pile foundation 100 on the annular groove 131, the eccentrically arranged annular groove 131 drives the driving rod 440 to move outward during this process, so that the driving rod 440 drives the shaft rod 430 to move towards the photovoltaic plate 410. Under the linkage action of the two moving beams 420, a plurality of shaft rods 430 simultaneously move towards the photovoltaic plate 410, so as to incline the adjusting rod 411 and reduce the inclination angle of the photovoltaic plate 410.

[0049] When the effect of the wind on the inclination of the photovoltaic panel 410 can be ignored, the floating part 200 can continue to rotate counterclockwise with the photovoltaic assembly 400, at this time, the roller 441 of the adjusting frame on the driving rod 440 moves to the initial annular groove 131 close to the pile foundation 100, the driving rod 440 drives the plurality of shaft rods 430 to move away from the photovoltaic panel 410, and then the inclination of the photovoltaic panel 410 is increased.

[0050] As shown in the drawings, Figure 4 , Figure 5 Figure 9 In the embodiment, a plurality of connecting columns 530 are fixed on the fixed ring 510, and the outer side of the circular seat 120 is fixed with a connecting ring 121 in sliding connection with the connecting columns 530, and the top surface of the floating plate two 220 is annular and equiangular and is provided with a plurality of positioning holes 221 for the fixed columns of the output ends of the air cylinders 520.

[0051] In the embodiment, when the entire floating part 200 is rotated and stopped at a certain position, the output end of the air cylinder 520 is elongated to insert the positioning column between the fixed ring 510 and the positioning hole 221, so that the floating plate two 220 is positioned and fixed on the circular seat 120, and then the floating plate two 220 is positioned and fixed on the pile foundation 100, realizing the fixation of the entire floating part 200 in the water, when the water level changes, the fixed ring 510 moves up and down with the floating plate two 220, which makes the connecting column 530 slide up and down on the connecting ring 121, realizing the function of the entire fixed assembly 500 fixing the floating plate two 220 without being affected by the fluctuation of the water level.

[0052] In the embodiment, the top of the circular seat 120 is fixed with an anemometer 122, which is a prior art component capable of detecting wind speed and direction, and an existing controller can be externally connected to the application, the controller is connected with the anemometer 122, and the controller can also receive weather information from weather forecasts, when the controller detects strong wind weather, the driving assembly 300 can be driven to work to complete the adjustment of the inclination of the photovoltaic panel 410.

[0053] In the application, the photovoltaic panel 410 is connected with an electric energy conversion controller through wires, the conversion controller transmits electric energy to energy storage battery groups such as storage batteries and lithium batteries through wires, and finally the electric equipment can be connected with the energy storage battery groups through an inverter for power consumption, which is related to the existing technology of power storage and power consumption, and the specific working principle will not be described in detail.

[0054] It will be obvious to a person skilled in the art that the application is not limited to the details of the foregoing exemplary embodiments and can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims to the identity of the reference signs therein.

[0055] Furthermore, it should be understood that although the description is made on the basis of the embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A power generator set for a solar energy device, characterized by, The utility model relates to a kind of floating solar energy system, including: Pile foundation (100) is fixed with river bottom, and pipe fitting (110) is rotatably connected on pile foundation (100), and circular plate (130) and transmission ring (140) are rotatably connected with the outside of pipe fitting (110); Floating part (200) is fixedly connected with transmission ring (140), and floating part (200) includes mutually fixed floating plate one (210) and floating plate two (220); Multiple drive assemblies (300) are evenly installed at the bottom of floating plate two (220), and drive assembly (300) includes machine case (310), and paddle (320) is rotatably connected on machine case (310); Photovoltaic assembly (400) includes multiple photovoltaic panels (410) and adjusting frame, one end of photovoltaic panel (410) is rotatably connected with floating plate one (210), and adjusting frame includes two movable beams (420) slidably connected with floating plate one (210), and multiple shaft rods (430) for adjusting the inclination of photovoltaic panel (410) are rotatably connected between the two movable beams (420); Fixed assembly (500) includes fixed ring (510) movably sleeved on pipe fitting (110), and multiple air cylinders (520) for fixedly connecting floating plate one (210) with pile foundation (100) are fixed on fixed ring (510).

2. The power generating set for solar energy equipment according to claim 1, characterized in that, The top surface of floating plate one (210) is provided with a circular cavity (211) capable of accommodating the circular plate (130), and the floating plate two (220) is fixedly connected with the transmission ring (140).

3. The power generating set for solar energy equipment according to claim 1, characterized by The inside of machine case (310) is fixed with motor capable of driving paddle (320) to rotate, and the outside of machine case (310) is fixed with protective cover (311).

4. The power generating set for solar energy equipment according to claim 1, characterized by The middle part of circular plate (130) is fixed with multiple clamping blocks, and the inside of transmission ring (140) is rotatably connected with multiple transmission blocks (141), and the clamping blocks and transmission blocks (141) are slidably connected with pipe fitting (110).

5. The power generating set for solar energy equipment according to claim 4, characterized by The inside of transmission ring (140) is uniformly provided with multiple accommodating grooves (142), and transmission blocks (141) are rotatably connected at one end of accommodating grooves (142).

6. The power generating set for solar energy equipment according to claim 1, characterized by The top surface of pile foundation (100) is fixed with circular seat (120), and multiple connecting columns (530) slidably connected with circular seat (120) are fixed on fixed ring (510).

7. The power generating set for solar energy equipment according to claim 6, characterized by The top surface of floating plate two (220) is uniformly provided with multiple positioning holes (221) for inserting the output end fixing column of air cylinder (520), and the bottom surface of circular seat (120) is fixed with electromagnet capable of adsorbing and fixing pipe fitting (110).

8. The power generating set for solar energy equipment according to claim 7, characterized by The outside of circular seat (120) is fixed with connecting ring (121) slidably connected with connecting column (530), and the top of circular seat (120) is fixed with anemorumbometer (122).

9. The power generating set for solar energy equipment according to claim 1, characterized by One end of photovoltaic panel (410) is rotatably connected with adjusting rod (411) rotatably connected with corresponding position shaft rod (430), and one shaft rod (430) is rotatably connected with driving rod (440) drivingly connected with circular plate (130) outside.

10. The power generating set for solar energy equipment according to claim 9, characterized by The top surface of circular plate (130) is eccentrically provided with annular groove (131), and one end of driving rod (440) is rotatably connected with roller (441) slidably connected with annular groove (131).

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