Wind, light and water integrated power generation device

By integrating hydropower, solar power, and wind power generation devices, the impact of hydropower on the ecological environment and the reliability issues of solar power generation have been resolved, achieving a stable and efficient integrated power generation effect.

CN115085634BActive Publication Date: 2025-12-16HANGZHOU HAOZHI EQUIP TECH CO LTD
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Patent Information

Application Number
CN202210785241.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-05
Publication Date
2025-12-16
Estimated Expiration
2042-07-05

AI Technical Summary

Technical Problem

Existing hydropower requires the construction of dams, which impacts the ecological environment; solar power generation is limited by weather conditions and has poor reliability; and wind power equipment is easily damaged by the natural environment.

Method used

Design an integrated wind, solar and hydropower generation device that combines hydropower, solar and wind power generation mechanisms. The hydropower generation mechanism does not require a dam, the solar panels can be stored to avoid environmental erosion, and the wind turbine blades can be retracted in bad weather. The various power generation methods complement each other.

Benefits of technology

It has achieved reliable integrated power generation, reduced the impact on the ecological environment, improved power generation efficiency and equipment lifespan, and enhanced the stability of power generation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of power generation equipment, in particular to a wind-solar-water integrated power generation device. The device comprises a floating body, a water power generation mechanism and a solar power generation mechanism. The water power generation mechanism comprises an underwater support frame, a water turbine and a flow guide plate. The water power generation support frame and the flow guide plate are fixedly connected to the floating body. The water turbine is provided with a plurality of water guide grooves. The flow guide plate guides water into the water guide grooves to drive the water turbine to rotate and generate power. The solar power generation mechanism comprises a solar support frame, a containing piece, a storage driving module and a photovoltaic module. The solar support frame is fixedly connected to the floating body. The containing piece is connected to the solar support frame. The photovoltaic module comprises a plurality of solar panels. The storage driving module is used for driving the plurality of solar panels to rotate and expand to generate photovoltaic power. The storage driving module is also used for driving the plurality of solar panels to rotate and store in the containing piece. The application can realize green and ecological comprehensive power generation.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of power generation equipment, and particularly relates to a wind-solar-water integrated power generation device. BACKGROUND

[0002] Thermal power generation is a power generation mode in which heat energy generated when combustible materials such as coal are burned is converted into electric energy by a power generation power device. Due to the shortage of fossil fuels, people gradually begin to use renewable energy power generation to replace the original thermal power generation.

[0003] Hydropower is a kind of renewable energy. Hydropower is a power generation mode in which the potential energy of water is converted into electric energy. The basic principle of hydropower is to use water head difference to cooperate with a water turbine generator to generate electric power. Hydropower can meet the demand for urban and industrial electricity. However, hydropower usually requires the construction of a dam, which requires huge investment; meanwhile, it also has an impact on the ecological environment.

[0004] Solar energy resources also belong to renewable energy, but due to the limitation of natural conditions, the use of solar energy can only realize intermittent power generation, so the reliability of power generation is difficult to guarantee. SUMMARY

[0005] The present application provides a wind-solar-water integrated power generation device to realize green ecological comprehensive power generation.

[0006] The wind-solar-water integrated power generation device provided by the present application adopts the following technical scheme:

[0007] A wind-solar-water integrated power generation device, comprising a floating body, a hydropower mechanism and a solar power generation mechanism; the floating body floats on the water surface; the hydropower mechanism comprises an underwater support frame, a water turbine and a guide plate; wherein the hydropower support frame and the guide plate are fixedly connected to the floating body; the water turbine has a plurality of water guide grooves, the guide plate guides water into the water guide grooves to drive the water turbine to rotate to generate power; the solar power generation mechanism comprises a solar support frame, a containing piece, a storage driving module and a photovoltaic module; wherein the solar support frame is fixedly connected to the floating body (100); the containing piece is connected to the solar support frame; the photovoltaic module comprises a plurality of solar panels, the storage driving module is used to drive the plurality of solar panels to rotate and unfold to generate photovoltaic power, and the storage driving module is also used to drive the plurality of solar panels to rotate and store in the containing piece.

[0008] By adopting the technical scheme, water flows into the water guide groove through the guide plate, and then drives the water turbine to rotate to generate electricity. The water power generation mechanism has compact structure, and does not need to build a dam, so the influence on the ecological environment is small. The solar panel in the solar power generation mechanism can be unfolded to generate photovoltaic power. When the weather condition is not suitable, the solar panel can be folded in the containing piece, so as to reduce the possibility that the solar panel is eroded by the environment. The water power generation mechanism and the solar power generation mechanism are combined in the same device. In sunny and windless weather, the solar power generation mechanism is used to generate electricity. In rainy weather, the water power generation mechanism is used to generate electricity. The natural environment is less restricted to the power generation device, and more reliable power generation is realized.

[0009] Optionally, the water turbine is provided with a plurality of water turbines, a positioning protrusion is formed on one end surface of the water turbine, and a positioning groove is formed on the other end surface. The positioning protrusion of the water turbine can be accommodated in the positioning groove of the adjacent water turbine to connect the plurality of water turbines.

[0010] By adopting the technical scheme, the plurality of water turbines are connected through the positioning protrusion and the positioning groove, the contact area of the water turbine and the water is increased, and the power generation efficiency is improved.

[0011] Optionally, the containing driving module comprises a first pulley, a belt, a second pulley and a photovoltaic rod. The first pulley and the second pulley are both rotationally connected to the containing piece. The belt is tensioned between the first pulley and the second pulley. The photovoltaic rod is fixedly connected to the second pulley. The plurality of solar panels are rotationally connected to the photovoltaic rod.

[0012] By adopting the technical scheme, when the weather is fine, the first pulley is driven to rotate, the belt tensioned between the first pulley and the second pulley drives the second pulley to rotate, the photovoltaic rod rotates, and the solar panel rotates to the outside of the containing piece to generate photovoltaic power. In rainy weather, the first pulley can be driven to rotate reversely, and the solar panel can be accommodated in the containing piece, so as to reduce the erosion of the solar panel by the wind and rain, and improve the service life of the solar panel.

[0013] Optionally, the solar power generation mechanism further comprises a turning driving module. The turning driving module drives the containing piece to move to adjust the orientation of the solar panel.

[0014] By adopting the technical scheme, the orientation of the solar panel is adjusted by the driving module, so that the solar panel can face the sunlight directly, and the power generation efficiency is improved.

[0015] Optionally, the turning driving module comprises a rotating frame rotationally connected to the solar support frame on a first plane. The rotating frame is rotationally connected to the containing piece on a second plane. The turning driving module further comprises a rotating positioning assembly.

[0016] By adopting the technical scheme, the solar panel can rotate in the first plane and the second plane, so that the solar panel is more flexible in turning, and the angle of the solar panel can be better adjusted to face the sunlight.

[0017] Optionally, the rotating positioning assembly comprises a first arc plate and a second arc plate, the first arc plate is fixedly connected with the rotating frame, and the second arc plate is fixedly connected with the containing member; the first arc plate or the second arc plate is provided with an arc-shaped groove along the circumferential side of the arc, and the second arc plate or the first arc plate moves in the arc-shaped groove.

[0018] By adopting the technical scheme, the rotating positioning assembly can play an auxiliary supporting role in the rotating process of the containing member, so that the solar panel is more stable in the angle adjustment process.

[0019] Optionally, the rotating positioning assembly comprises a first gear and a second gear that are engaged with each other; the first gear is fixedly connected with the rotating frame, and the second gear is fixedly connected with the containing member.

[0020] By adopting the technical scheme, the rotating positioning assembly can play an auxiliary supporting role in the rotating process of the containing member, so that the solar panel is more stable in the angle adjustment process.

[0021] Optionally, the solar panel is provided in a fan shape, and a plurality of the solar panels are unfolded to form a circle; the solar panel is fixedly connected with a guide arc plate along the arc-shaped side thereof, one end of the guide arc plate is flush with the linear side of the solar panel, and the other end protrudes from the other linear side of the solar panel.

[0022] By adopting the technical scheme, the length of the guide arc plate is greater than the length of the arc-shaped side of the solar panel, so that the adjacent solar panels do not overlap with each other when the plurality of solar panels are unfolded, so that the solar panel can be completely unfolded for photovoltaic power generation.

[0023] Optionally, one side of the guide arc plate is fixedly connected with a guide protrusion, and the other side is provided with a guide groove; when the plurality of solar panels are unfolded or folded, the guide protrusion slides in the guide groove of the adjacent guide arc plate.

[0024] By adopting the technical scheme, the guide protrusion and the guide groove are provided, so that the solar panel can move more stably when unfolded or folded.

[0025] Optionally, the wind power generation mechanism is further included; the wind power generation mechanism comprises a wind support frame and a wind blade module; the wind support frame is fixedly connected with the floating body; the wind blade module comprises two wind blades; the wind blade comprises a closed part and two enclosing parts; the closed parts of the two wind blades can be enclosed into a closed pattern; when the two wind blades are unfolded, the wind drives the wind blades to rotate to generate electricity.

[0026] By adopting the above technical scheme, in windy weather, the two wind blades are unfolded to generate electricity. In severe weather, the two wind blades can be folded to reduce the damage of the natural environment to the wind blades. By arranging the wind power generation mechanism, the restriction of the natural environment on the power generation device is further reduced, and reliable ecological comprehensive power generation is realized.

[0027] In summary, the present application has at least one of the following beneficial technical effects:

[0028] 1. The water power generation mechanism, the solar power generation mechanism and the wind power generation mechanism are integrated in the same device, which reduces the restriction of the natural environment on the power generation device and realizes relatively reliable power generation;

[0029] 2. The water power generation mechanism has a compact structure and does not need to build a dam, which has a smaller impact on the ecological environment;

[0030] 3. The solar panels in the solar power generation mechanism can be unfolded for photovoltaic power generation; when the weather conditions are not suitable, the solar panels can be folded in the containing member to reduce the possibility of environmental erosion of the solar panels;

[0031] 4. In windy weather, the two wind blades are unfolded to generate electricity. In severe weather, the two wind blades can be folded to reduce the damage of the natural environment to the wind blades. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is the overall structure schematic diagram of the wind-solar-water integrated power generation device in the embodiment of the present application.

[0033] Figure 2 It is the overall structure schematic diagram of the water power generation mechanism in the embodiment of the present application.

[0034] Figure 3 It is the installation structure schematic diagram of the plurality of water turbines in the embodiment of the present application.

[0035] Figure 4 It is the structure schematic diagram of the water turbine in the embodiment of the present application.

[0036] Figure 5 It is the overall structure schematic diagram of the solar power generation mechanism in the embodiment 1 of the present application.

[0037] Figure 6 It isFigure 5 Enlarged view of structure in part A.

[0038] Figure 7 is a partial structural schematic view of a photovoltaic module in the embodiment of the present application.

[0039] Figure 8 is Figure 7 Enlarged view of structure in part B.

[0040] Figure 9 is a whole structural schematic view of a wind power generation mechanism in the embodiment of the present application.

[0041] Figure 10 is a structural schematic view of a wind blade module in the embodiment of the present application.

[0042] Figure 11 is a whole structural schematic view of a solar power generation mechanism in the embodiment 2 of the present application.

[0043] Figure 12 is Figure 11 Enlarged view of structure in part C.

[0044] BRIEF DESCRIPTION OF THE DRAWINGS 100, floating body; 200, hydroelectric power generation mechanism; 210, underwater support frame; 220, water turbine; 221, water guide groove; 222, positioning protrusion; 223, positioning groove; 230, flow guide plate; 300, solar power generation mechanism; 310, solar support frame; 320, steering drive module; 321, rotating frame; 322, second driving member; 323, rotating positioning assembly; 3231, first arc plate; 3232, second arc plate; 3233, arc-shaped groove; 3234, first gear; 3235, second gear; 330, containing member; 340, storage drive module; 341, third driving member; 342, first pulley; 343, belt; 344, second pulley; 345, photovoltaic rod; 350, photovoltaic module; 351, solar panel; 352, guide arc plate; 353, guide protrusion; 354, guide groove; 400, wind power generation mechanism; 410, wind support frame; 420, wind blade module; 421, wind rod; 422, wind blade; 4221, closed part; 4222, enclosed part. DETAILED DESCRIPTION

[0045] The present application will be further described below in conjunction with the accompanying drawings. Figures 1-12 The present application will be further described below in conjunction with the accompanying drawings.

[0046] The embodiment of the present application discloses a wind-solar-water integrated power generation device.

[0047] Embodiment 1

[0048] Reference Figure 1The wind, light and water integrated power generation device comprises a floating body 100, a water power generation mechanism 200, a solar power generation mechanism 300 and a wind power generation mechanism 400.

[0049] The floating body 100 can float on the water surface, and can be fixed by an anchor for the stability of the whole power generation device. In use, the water power generation mechanism 200 is located underwater, and the solar power generation mechanism 300 and the wind power generation mechanism 400 are located above the water surface. In sunny, windless and waveless weather, the solar power generation mechanism 300 generates electricity by photovoltaic power generation; in windy and wavy weather, the solar power generation mechanism 300 is retracted, and electricity is generated by the water power generation mechanism 200 and the wind power generation mechanism 400 in cooperation; in breezy weather, electricity can also be generated by the water power generation mechanism 200, the solar power generation mechanism 300 and the wind power generation mechanism 400 in cooperation. The power generation device in the application integrates water power generation, solar power generation and wind power generation, and the water power generation mechanism 200, the solar power generation mechanism 300 and the wind power generation mechanism 400 are independent of each other and can generate electricity independently, or can generate electricity in cooperation according to different weather conditions.

[0050] Referring to Figure 1 and Figure 2 The water power generation mechanism 200 comprises an underwater support frame 210, a water turbine 220, a guide plate 230 and a first generator. In the embodiment, two floating bodies 100 are provided, and both are hollow structures. The underwater support frame 210 is fixedly connected between the two floating bodies 100, and the underwater support frame 210 is substantially a hollow triangular prism structure. The water turbine 220 is rotatably connected with the underwater support frame 210, and a plurality of water turbines 220 are provided, and the number of the water turbines 220 is five in the embodiment. The guide plate 230 is fixedly connected with the underwater support frame 210, and gradually inclines upward in the direction close to the water turbine 220.

[0051] The guide plate 230 guides water to the water turbine 220, the water flow drives the water turbine 220 to rotate, and the water turbine 220 drives the rotor of the first generator to rotate to generate electricity. Since the floating body 100 is a hollow structure, the first generator can be installed inside the floating body 100, thereby reducing the influence of the underwater environment on the first generator.

[0052] Referring to Figure 3 and Figure 4The water turbine 220 comprises two flat plates and three streamlined plates, the two flat plates and the three streamlined plates enclose the hollow water turbine 220, the inner concave arc-shaped part of the streamlined plate constitutes the water guide groove 221 of the water turbine 220, in the embodiment, the number of the water guide groove 221 is three. The positioning protrusion 222 is formed on one flat plate of the water turbine 220, and the positioning recess 223 is formed on the other flat plate. The central axis of the water turbine 220 is provided with a square through hole for the square rod to pass through, and the square rod is fixedly connected with the rotor of the first generator.

[0053] The square rod passes through the plurality of water turbines 220, at this time, the positioning protrusion 222 of the water turbine 220 is located in the positioning recess 223 of the adjacent water turbine 220, so that the plurality of water turbines 220 are conveniently and quickly connected.

[0054] Referring to Figure 1 and Figure 5 , the solar power generation mechanism 300 comprises a solar support frame 310, a steering driving module 320, a containing piece 330, a storage driving module 340 and a photovoltaic module 350. The solar support frame 310 is fixedly connected with the floating body 100, the steering driving module 320 and the photovoltaic module 350 can be stored in the containing piece 330 through the driving of the storage driving module 340.

[0055] Referring to Figure 5 and Figure 6 , the steering driving module 320 comprises a first driving piece (not shown in the figure), a rotating frame 321, a second driving piece 322 and a rotating positioning assembly 323. The rotating frame 321 is rotatably connected with the solar support frame 310 in a first plane, and the rotating frame 321 is rotatably connected with the containing piece 330 in a second plane. In the embodiment, the first plane is perpendicular to the second plane, wherein the first plane is a horizontal plane, and the second plane is a vertical plane. The rotation of the rotating frame 321 can be driven by the first driving piece (not shown in the figure). The second driving piece 322 is a motor, which is fixedly arranged on the rotating frame 321, and the output shaft of the second driving piece 322 is connected with a transmission assembly for changing the rotation direction. The second driving piece 322 drives the containing piece 330 to rotate through the transmission of the transmission assembly. The rotating positioning assembly 323 is provided with two groups, which comprises a first arc plate 3231 and a second arc plate 3232. The first arc plate 3231 is a semicircular arc plate, and is fixedly connected with the rotating frame 321; the second arc plate 3232 is a semicircular arc plate, and is fixedly connected with the containing piece 330. In the embodiment, the second arc plate 3232 is provided with an arc-shaped groove 3233 along the circumferential side of the circular arc, and when the second driving piece 322 drives the containing piece 330 to rotate, the first arc plate 3231 moves in the arc-shaped groove 3233, so that the containing piece 330 moves more stably.

[0056] In other embodiments, an arc-shaped slot 3233 can also be formed on the first arc plate 3231, so that the second arc plate 3232 moves in the arc-shaped slot 3233 of the first arc plate 3231 when the second driving member 322 drives the containing member 330 to rotate.

[0057] With reference to Figure 5 In the embodiment, the containing member 330 is a rectangular frame structure enclosed by four plate members, which is hollow inside and used for accommodating the photovoltaic module 350. The containing driving module 340 and the photovoltaic module 350 are both provided in two groups and correspond to each other one by one.

[0058] With reference to Figure 5 The containing driving module 340 includes a third driving member 341, a first pulley 342, a belt 343, a second pulley 344, and a photovoltaic rod 345. The third driving member 341 is a motor, which is fixedly connected in the containing member 330. The first pulley 342 and the second pulley 344 are both rotatably connected to the containing member 330, and the belt 343 is tensioned between the first pulley 342 and the second pulley 344. The third driving member 341 drives the first pulley 342 to rotate. The photovoltaic rod 345 is fixedly connected to the second pulley 344, and the photovoltaic rod 345 is connected to the photovoltaic module 350.

[0059] The third driving member 341 drives the first pulley 342 to rotate, and the belt transmission mechanism composed of the first pulley 342, the belt 343, and the second pulley 344 drives the photovoltaic rod 345 to rotate, so that the photovoltaic module 350 can be accommodated in the containing member 330.

[0060] With reference to Figure 5 and Figure 7 The photovoltaic module 350 includes a fourth driving member (not shown in the figure) and a plurality of solar panels 351. The fourth driving member (not shown in the figure) is used for driving the plurality of solar panels 351 to unfold, and is fixedly connected to the photovoltaic rod 345. The solar panels 351 are rotatably connected to the photovoltaic rod 345.

[0061] With reference to Figure 7 and Figure 8 The solar panels 351 are provided in a fan shape, and the solar panels 351 can rotate around the center of the fan shape. The plurality of solar panels 351 can be unfolded to form a circle by the driving of the fourth driving member (not shown in the figure), or can be closed and placed in overlap by the driving of the fourth driving member (not shown in the figure). The solar panels 351 are fixedly connected with a guide arc plate 352 along the arc-shaped side edges thereof. One end of the guide arc plate 352 is flush with the linear side edges of the solar panels 351, and the other end of the guide arc plate 352 protrudes from the other linear side edges of the solar panels 351, i.e., the length of the guide arc plate 352 is slightly greater than the length of the arc-shaped side edges of the solar panels 351.

[0062] Due to the long length of the guide arc plate 352, when the plurality of solar panels 351 are unfolded, the solar panels 351 can not overlap each other, thereby increasing the illumination area and improving the utilization rate of the solar panels 351.

[0063] With reference to Figure 7 and Figure 8 , the guide arc plate 352 is fixedly connected with a guide protrusion 353 on one side and is provided with a guide groove 354 on the other side; in this embodiment, two guide protrusions 353 are arranged at the two ends of the guide arc plate 352. When the plurality of solar panels 351 are unfolded or folded, the guide protrusion 353 slides in the guide groove 354 of the adjacent guide arc plate 352, thereby guiding and limiting the solar panel 351, so that the solar panel 351 moves more stably. The thickness of the guide arc plate 352 is greater than the thickness of the solar panel 351, so that when the plurality of solar panels 351 are overlapped, there is a gap between the adjacent solar panels, thereby reducing the friction damage of the solar panels 351.

[0064] One solar panel 351 is driven to rotate by a fourth driving member (not shown in the figure), and after the solar panel 351 rotates to a certain position, the adjacent solar panel 351 is driven to rotate, and so on, so that the plurality of solar panels 351 are unfolded to form a circle. The sunlight is irradiated on the solar panel 351 to generate photovoltaic power.

[0065] With reference to Figure 1 and Figure 9 , the wind power generation mechanism 400 is arranged between the hydraulic power generation mechanism 200 and the solar power generation mechanism 300. The wind power generation mechanism 400 comprises a wind power support frame 410 and a wind blade module 420. The wind power support frame 410 is fixedly connected with the floating body 100. The wind blade module 420 is rotationally connected with the wind power support frame 410; in this embodiment, six wind blade modules 420 are arranged, three wind blade modules 420 form a group, and two groups of wind blade modules 420 are arranged above the two floating bodies 100.

[0066] With reference to Figure 9 and Figure 10 , the wind blade module 420 comprises a wind rod 421, two wind blades 422 and a second generator. The wind rod 421 is vertically arranged and rotationally connected with the wind power support frame 410, and the rotation of the wind rod drives the rotor of the second generator to rotate to generate power. The wind blade 422 can rotate relative to the wind rod 421. The wind blade 422 comprises a closed part 4221 and two enclosing parts 4222, the closed part 4221 is fixedly connected between the two enclosing parts 4222, and the closed parts 4221 of the two wind blades 422 can be enclosed into a closed figure.

[0067] The driving fan blades 422 rotate relative to the wind rod 421, so that the two fan blades 422 are opened, and the wind can drive the wind rod 421 and the fan blades 422 to rotate synchronously to generate electricity. The driving fan blades 422 rotate reversely relative to the wind rod 421, so that the two fan blades 422 are closed to reduce damage of the fan blades 422 in extremely severe weather.

[0068] The implementation principle of the wind-solar-water integrated power generation device in the embodiment of the present application is as follows: the guide plate 230 guides water to the water turbine 220, the water flow drives the water turbine 220 to rotate, and the water turbine 220 drives the rotor of the first generator to rotate, so that the water power generation mechanism 200 generates electricity. The photovoltaic module 350 is rotated out of the containing member 330 by the accommodation driving module 340, the plurality of solar panels 351 are unfolded to generate photovoltaic power, and in the process, the orientation of the solar panels 351 can be adjusted by the steering driving module 320, so that the solar panels 351 face the sunlight. The fan blades 422 are unfolded, the wind drives the fan blade module 420 to rotate, and the wind power generation mechanism 400 generates electricity.

[0069] Embodiment 2

[0070] With reference to Figure 11 and Figure 12 The difference between the embodiment and the embodiment 1 is that the rotating positioning assembly 323 comprises a first gear 3234 and a second gear 3235 which are engaged with each other. The first gear 3234 is a semicircular gear and is fixedly connected with the rotating frame 321, and the second gear 3235 is a semicircular gear and is fixedly connected with the containing member 330.

[0071] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: any equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.

Claims

1. A wind-solar-water integrated power generation device, characterized in that: Including floating body (100), water power generation mechanism (200) and solar power generation mechanism (300), the floating body (100) floats on the water surface, the water power generation mechanism (200) includes underwater support frame (210), water turbine (220) and guide vane (230), wherein underwater support frame (210) is fixedly connected between two floating bodies (100), the underwater support frame (210) is fixedly connected to the floating body (100) with guide vane (230), underwater support frame (210) is hollow three-prism structure, water turbine (220) is rotatably connected with underwater support frame (210), water turbine (220) is provided with multiple, guide vane (230) is fixedly connected with underwater support frame (210), and it gradually inclines upward in the direction close to water turbine (220); the water turbine (220) has multiple water guide grooves (221), the guide vane (230) guides water into the water guide groove (221) and drives the water turbine (220) to rotate to generate electricity, the solar power generation mechanism (300) includes solar support frame (310), steering drive module (320), containing piece (330), storage drive module (340) and photovoltaic module (350), the photovoltaic module (350) includes multiple solar panels (351), wherein the solar support frame (310) is fixedly connected with the floating body (100), the steering drive module (320) and the photovoltaic module (350) can be stored in the containing piece (330) by the driving of the storage drive module (340), the wind power generation mechanism (400) is arranged between the water power generation mechanism (200) and the solar power generation mechanism (300), the wind power generation mechanism (400) includes wind power support frame (410) and blade module (420), the wind power support frame (410) is vertically arranged and fixed on the floating body (100), further including wind power generation mechanism (400), the wind power generation mechanism (400) includes wind power support frame (410) and blade module (420), the blade module (420) includes two blades (422), the blade (422) includes closed part (4221) and two enclosing parts (4222), the closed part (4221) is fixedly connected between the two enclosing parts (4222), the closed parts (4221) of the two blades (422) can be enclosed into closed figure, when the two blades (422) are unfolded, wind drives the blade (422) to rotate and generate electricity.

2. The wind-solar-water integrated power generation device according to claim 1, characterized in that: The water turbine (220) is provided with multiple, the positioning protrusion (222) is formed on one end face of the water turbine (220), the positioning recess (223) is formed on the other end face, the positioning protrusion (222) of the water turbine (220) can be accommodated in the positioning recess (223) of adjacent water turbine (220), to connect multiple water turbine (220).

3. The wind-solar-water integrated power generation device according to claim 1, characterized in that: The accommodation driving module (340) comprises a first pulley (342), a belt (343), a second pulley (344) and a photovoltaic rod (345); the first pulley (342) and the second pulley (344) are both rotationally connected to the accommodating member (330), the belt (343) is tensioned between the first pulley (342) and the second pulley (344), the photovoltaic rod (345) is fixedly connected with the second pulley (344), and a plurality of the solar panels (351) are all rotationally connected with the photovoltaic rod (345).

4. The wind-solar-water integrated power generation device according to claim 1 or 3, characterized in that: The solar power generation mechanism (300) further comprises a steering driving module (320), which drives the accommodating member (330) to move to adjust the orientation of the solar panel (351).

5. The wind-solar-water integrated power generation device according to claim 4, characterized in that: The steering driving module (320) comprises a rotating frame (321) rotationally connected with the solar support frame (310) in a first plane, and the rotating frame (321) is rotationally connected with the accommodating member (330) in a second plane; the steering driving module (320) further comprises a rotating positioning assembly (323).

6. The wind-solar-water integrated power generation device according to claim 5, characterized in that: The rotating positioning assembly (323) comprises a first arc plate (3231) and a second arc plate (3232), the first arc plate (3231) is fixedly connected with the rotating frame (321), and the second arc plate (3232) is fixedly connected with the accommodating member (330); the first arc plate (3231) or the second arc plate (3232) is provided with an arc-shaped groove (3233) along the circumferential side of the arc, and the second arc plate (3232) or the first arc plate (3231) moves in the arc-shaped groove (3233).

7. The wind-solar-water integrated power generation device according to claim 5, characterized in that: The rotating positioning assembly (323) comprises a first gear (3234) and a second gear (3235) which are engaged with each other; the first gear (3234) is fixedly connected with the rotating frame (321), and the second gear (3235) is fixedly connected with the accommodating member (330).

8. The wind-solar-water integrated power generation device according to claim 1, characterized in that: The solar panel (351) is provided in a fan shape, and a plurality of the solar panels (351) are unfolded to form a circle; the solar panel (351) is fixedly connected with a guide arc plate (352) along the arc-shaped side thereof, one end of the guide arc plate (352) is flush with the linear side of the solar panel (351), and the other end protrudes from the other linear side of the solar panel (351).

9. The wind-solar-water integrated power generation device according to claim 8, characterized in that: The guide arc plate (352) is fixedly connected with a guide protrusion (353) on one side and is provided with a guide recess (354) on the other side; when a plurality of the solar panels (351) are unfolded or folded, the guide protrusion (353) slides in the guide recess (354) of the adjacent guide arc plate (352).

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