A heat dissipating photovoltaic panel
By designing support frames and heat dissipation mechanisms on photovoltaic panels, and utilizing heat exchange pipes and fan systems made of heat-absorbing metal materials, the problem of low heat dissipation efficiency of energy storage solar photovoltaic panels is solved, thereby improving the working efficiency and service life of photovoltaic panels and reducing operating costs.
Patent Information
- Application Number
- CN202411888988.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2044-12-20
AI Technical Summary
Existing energy storage solar photovoltaic panels have a simple structure and cannot effectively match the sun's position, resulting in low heat dissipation energy conversion efficiency, which affects the working efficiency and service life of the photovoltaic panels.
The design adopts a heat dissipation photovoltaic panel, including a support frame, movable rod, heat dissipation mechanism, water circulation mechanism and cooling mechanism. It uses heat exchange tubes and heat exchange plates made of heat-absorbing metal material in conjunction with a cooling fan. Heat dissipation is improved through water circulation and fan cooling, and heat dissipation is accelerated by a motor-driven transmission system.
It improves the heat dissipation efficiency of photovoltaic panels, reduces operating temperature, enhances energy conversion efficiency, extends service life, simplifies installation process, and reduces operating costs and water waste.
Smart Images

Figure CN119853605B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of solar photovoltaic panels, in particular to a heat dissipation type photovoltaic panel. BACKGROUND
[0002] With the development of the economy of various countries in the world, the acceleration of industrialization and urbanization, people's demand for energy is becoming larger and larger, with the gradual increase of demand for energy, solar photovoltaic power station has been widely popularized, solar photovoltaic system, also known as photovoltaic, for short, is a facility that converts solar energy into direct current power by using the photovoltaic effect of photovoltaic semiconductor materials. The core of the photovoltaic facility is a solar panel. In areas with public power grids, photovoltaic power generation systems are connected to the grid and operate in parallel, eliminating the need for storage batteries, which not only significantly reduces costs, but also has higher power generation efficiency and better environmental performance.
[0003] Chinese patent publication No. CN114928315A, a ventilation and heat dissipation type energy storage solar photovoltaic panel, the technical solution provided by the patent document is: including main component, adjusting component, cleaning component and heat dissipation component, the main component includes solar power generation integrated panel, the adjusting component includes connecting block, collecting box, supporting leg, protection box, transmission disc, driven gear, left double gear, right double gear, upper double gear, driving gear, motor box and output motor, the cleaning component includes protective sleeve, limit spring, moving rod, mounting seat and cleaning cotton, the heat dissipation component includes heat insulation box, filter screen, one-way valve pipe, heat dissipation fin, blower, sealing box, output pump and atomizing nozzle, the front of the photovoltaic panel body in the device can always face the sun, thereby greatly increasing the time the device is irradiated under sunlight, greatly improving the amount of solar energy conversion of the device, and thereby improving the economic benefit of the solar photovoltaic panel.
[0004] In order to solve the problem that the existing energy storage solar photovoltaic panel has a simple structure and cannot match the inclination degree of the energy storage solar photovoltaic panel with the position of the sun during use, the existing technology changes the inclination angle of the solar power generation integrated panel by using the output motor, which can make the front of the photovoltaic panel body in the device always face the sun, thereby greatly increasing the time the device is irradiated under sunlight, but the heat dissipation energy conversion efficiency of the heat exchange plate is low, thereby causing the working efficiency and service life of the photovoltaic panel to be not high. SUMMARY
[0005] The present application aims to provide a heat dissipation type photovoltaic panel to solve the problems raised in the background art.
[0006] In order to solve the above technical problems, the present application provides the following technical solutions: a heat dissipation type photovoltaic panel, comprising a device body, the surface of the device body is provided with a support frame, the top of the support frame is movably installed with a movable rod, and the upper side of the support frame is provided with a photovoltaic panel.
[0007] The surface of the movable rod is fixedly installed with a heat dissipation mechanism, the lower side of the movable rod is provided with a water circulation mechanism, and the bottom of the water circulation mechanism is fixedly installed with a cooling mechanism.
[0008] The heat dissipation mechanism comprises a movable installation groove, an installation frame, a water storage groove, a heat exchange pipe, a heat exchange plate, a heat dissipation frame, a dust prevention net, a cooling fan, a transmission rod, a driven tooth, a driving tooth, a driving rod and a motor, the movable installation groove is fixedly installed on the surface of the movable rod, the top of the movable installation groove is fixedly installed with the installation frame, both ends of the installation frame are fixedly installed with the water storage groove, the output end of the water storage groove is fixedly connected with the heat exchange pipe, the surface of the heat exchange pipe penetrates one side of the heat exchange plate, the bottom of the installation frame is fixedly connected with the heat dissipation frame, and the surface of the heat dissipation frame is fixedly installed with the dust prevention net.
[0009] According to the above technical solutions, the bottom of the support frame is welded with a supporting leg, and the top is fixedly installed with a movable seat, the cooling mechanism is fixedly connected with the supporting leg, both ends of the movable rod are movably installed in the interior of the movable seat, the photovoltaic panel is installed on the surface of the installation frame and is attached to the back of the heat exchange plate, the support frame keeps the device body stable through the supporting leg, and the supporting leg can be used for installing the cooling mechanism, the movable rod can adjust the heat dissipation mechanism through the movable seat, and the orientation of the photovoltaic panel can be adjusted.
[0010] According to the above technical solutions, the heat exchange pipe and the heat exchange plate are both installed in the interior of the installation frame, and the heat exchange pipe and the heat exchange plate are both composed of heat-absorbing metal materials or materials with high heat conduction, the heat dissipation frame is fixedly installed on the top surface of the movable installation groove, the heat exchange pipe cooperates with the heat exchange plate to take out the heat generated by the photovoltaic panel, and since the heat exchange pipe and the heat exchange plate are both composed of heat-absorbing metal materials or materials with high heat conduction, the heat can be quickly transmitted from the interior of the assembly to the external environment, and the heat dissipation speed of the photovoltaic panel is accelerated.
[0011] According to the above technical solutions, the interior of the movable installation groove is provided with a cooling fan, the shaft center of the cooling fan is fixedly connected with a transmission rod, the input end of the transmission rod is fixedly connected with a driven tooth, the surface of the driven tooth is engaged with a driving tooth, the shaft center of the driving tooth penetrates a driving rod, the input end of the driving rod is fixedly connected with a motor, and the model of the motor is Y2-80M-2. The motor drives the driving tooth through the driving rod, drives the driven tooth to drive the transmission rod, drives the cooling fan to cool the heat exchange pipe and the heat exchange plate, accelerates the heat exchange efficiency, reduces the loss of the heat exchange pipe and the heat exchange plate, and prolongs the service life.
[0012] According to the above technical scheme, the driving rod penetrates through one side surface of the movable mounting groove, the motor is fixedly mounted on one side outer wall of the movable mounting groove, and a motor mounting frame is fixedly mounted at the bottom, the motor is firmly mounted on the outer wall surface of the movable mounting groove through the motor mounting frame, and the main function of the motor is driving and transmission, which is responsible for transmission of the driving rod, so that the motor ensures that the driving rod can operate efficiently and stably.
[0013] According to the above technical scheme, the water circulation mechanism comprises a water supply hose, a valve, a water supply tank, a water filling port and a water level gauge, the water supply hose is fixedly connected to the input end of the water storage tank, the input end of the water supply hose is fixedly connected to the output end of the valve, the valve is fixedly mounted on the two sides of the water supply tank, the water filling port is formed in the top of the water supply tank, and the water level gauge is fixedly mounted on the front of the water supply tank, the water supply hose cooperates with the valve to convey the water source in the water supply tank to the water storage tank, and the water storage tank conveys cold water to the heat exchange pipe, so that the heat absorbed by the heat exchange plate is absorbed into the cold water in the heat exchange pipe, the water filling port is used for adding water source to the water supply tank, and the water level gauge is used for observing the water level in the water supply tank.
[0014] According to the above technical scheme, the water supply hose connected with the valve at the two ends of the water supply tank is respectively an output soft water pipe and a backflow soft water pipe, a sealing cover is arranged on the top of the water filling port, the water supply hose conveys water to the water storage tank through the output soft water pipe, and the backflow soft water pipe recovers the heat-exchanged water source in the heat exchange pipe to the water supply tank.
[0015] According to the above technical scheme, the cooling mechanism comprises a connecting plate, a power supply motor, a mounting groove and a cooling pipe, the connecting plate is fixedly connected to the bottom of the support frame, the power supply motor is fixedly mounted on one side of the connecting plate, the mounting groove is formed in the surface of the connecting plate, and the cooling pipe is fixedly mounted in the mounting groove, the connecting plate can conveniently mount the entire cooling mechanism, so that the cooling mechanism can be stably fixed at the corresponding position, the mounting groove is arranged on the connecting plate, the cooling pipe is mounted in the mounting groove, so that the cooling pipe cannot be easily displaced or fallen off during use, thereby ensuring the stability and reliability of the entire cooling mechanism, simplifying the mounting process, and ensuring the maximization of the cooling effect, so that the entire equipment can efficiently perform heat transfer and dissipation during operation.
[0016] According to the above technical scheme, the connecting plate is attached to the bottom of the water supply tank, the power supply motor is connected with the electric wire of the cooling pipe, and the bottom of the water supply tank covers the surface of the mounting groove, the power supply motor provides electric energy for the cooling pipe, and the cooling pipe performs cooling treatment on the water source in the water supply tank.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] 1. The application, by installing photovoltaic panels on the heat exchange plate of the installation frame surface, the heat exchange plate can absorb the heat generated by the photovoltaic panel, and provide heat dissipation for the photovoltaic panel, and through the cooperation of the installation frame, the water storage tank and the heat exchange pipe, the heat absorbed by the heat exchange plate is transmitted to the internal cold water through the heat exchange pipe, the heat exchange plate and the heat exchange pipe are made of heat-absorbing metal material, so as to enhance the heat conduction efficiency, at the same time, the motor cooperates with the driving rod and the driving gear, drives the driven gear, and the transmission rod drives the cooling fan to blow the heat exchange pipe and the heat exchange plate, which further improves the heat dissipation effect of the equipment on the photovoltaic panel, effectively reduces the working temperature of the photovoltaic cell, improves the energy conversion efficiency, thereby enhances the working efficiency of the photovoltaic panel and prolongs its service life.
[0019] 2. The application, by setting the cooperation of the heat dissipation frame, the movable rod and the movable installation slot, simplifies the installation process of the photovoltaic panel and the heat dissipation mechanism, and is convenient for adjusting the direction of the photovoltaic panel, and improves the convenience of the equipment.
[0020] 3. The application, by configuring the water supply hose, the valve and the water storage tank, realizes the process of transporting the water source in the water supply tank to the heat exchange pipe, then uses the water storage tank and the water supply hose at the other end to recycle the water source after heat exchange to the water supply tank, which not only reduces the waste of water resources, but also reduces the operation cost, at the same time, through the cooperation of the water level gauge and the water filling port, the staff can easily monitor the evaporation condition of the water source in the water supply tank, ensure timely replenishment of water source, and improve the economic benefit of the equipment.
[0021] 4. The application, by setting the connecting plate cooperates with the power supply motor and the installation slot, the cooling pipe cools the bottom of the water supply tank, and the water source in the tank, so that the heat exchange pipe and the heat exchange plate can continuously cool the photovoltaic panel, and improve the persistence of the heat dissipation of the equipment. DETAILED DESCRIPTION
[0022] The accompanying drawings are included to provide a further understanding of the application, and constitute a part of the specification, together with the embodiments of the application, to explain the application, and do not constitute a limitation on the application. In the drawings:
[0023] Figure 1 is the overall structure schematic diagram of the application;
[0024] Figure 2 is the partial structure schematic diagram of the heat dissipation mechanism of the application;
[0025] Figure 3 is the internal three-dimensional structure schematic diagram of the heat dissipation mechanism of the application;
[0026] Figure 4 is the structure enlarged view of A in the application Figure 3
[0027] Figure 5 is the schematic diagram of the three-dimensional structure of the water circulation mechanism of the present application;
[0028] Figure 6 is the schematic diagram of the three-dimensional structure of the cooling mechanism of the present application.
[0029] In the figure: 1, device body; 11, support frame; 12, movable rod; 13, photovoltaic panel; 2, heat dissipation mechanism; 21, movable mounting groove; 22, mounting frame; 23, water storage tank; 24, heat exchange pipe; 25, heat exchange plate; 26, heat dissipation frame; 27, dust prevention net; 28, cooling fan; 29, transmission rod; 210, driven tooth; 211, driving tooth; 212, driving rod; 213, motor; 3, water circulation mechanism; 31, water delivery hose; 32, valve; 33, water supply tank; 34, water filling port; 35, water level gauge; 4, cooling mechanism; 41, connecting plate; 42, power supply motor; 43, mounting groove; 44, cooling pipe. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0031] Please refer to Figures 1-6 The present application provides the technical solutions:
[0032] Embodiment one: a heat dissipation type photovoltaic panel, comprising a device body 1, the surface of the device body 1 is provided with a support frame 11, the top of the support frame 11 is movably installed with a movable rod 12, the upper side of the support frame 11 is provided with a photovoltaic panel 13, the surface of the movable rod 12 is fixedly installed with a heat dissipation mechanism 2, the lower side of the movable rod 12 is provided with a water circulation mechanism 3, the bottom of the water circulation mechanism 3 is fixedly installed with a cooling mechanism 4, the heat dissipation mechanism 2 comprises a movable installation groove 21, an installation frame 22, a water storage groove 23, a heat exchange pipe 24, a heat exchange plate 25, a heat dissipation frame 26, a dust prevention net 27, a cooling fan 28, a transmission rod 29, a driven tooth 210, a driving tooth 211, a driving rod 212 and a motor 213, the movable installation groove 21 is fixedly installed on the surface of the movable rod 12, the top of the movable installation groove 21 is fixedly installed with the installation frame 22, the two ends of the installation frame 22 are fixedly installed with the water storage groove 23, the output end of the water storage groove 23 is fixedly connected with the heat exchange pipe 24, the surface of the heat exchange pipe 24 penetrates through one side of the heat exchange plate 25, the bottom of the installation frame 22 is fixedly connected with the heat dissipation frame 26, the surface of the heat dissipation frame 26 is fixedly installed with the dust prevention net 27, the bottom of the support frame 11 is welded with a supporting leg, and the top is fixedly installed with a movable seat, the cooling mechanism 4 is fixedly connected with the supporting leg, the two ends of the movable rod 12 are movably installed in the inside of the movable seat, the photovoltaic panel 13 is installed on the surface of the installation frame 22, and the back is attached to the heat exchange plate 25, the support frame 11 keeps the device body 1 stable through the supporting leg, and the supporting leg can be used for installing the cooling mechanism 4, the movable rod 12 can adjust the heat dissipation mechanism 2 through the movable seat, and the orientation of the photovoltaic panel 13 can be adjusted at the same time, the heat exchange pipe 24 and the heat exchange plate 25 are both installed in the inside of the installation frame 22, and the heat exchange pipe 24 and the heat exchange plate 25 are both made of heat-absorbing metal material or material with high heat conduction, the heat dissipation frame 26 is fixedly installed on the top surface of the movable installation groove 21, the heat exchange pipe 24 cooperates with the heat exchange plate 25 to take out the heat generated by the photovoltaic panel 13, because the heat exchange pipe 24 and the heat exchange plate 25 are both made of heat-absorbing metal material or material with high heat conduction, so the heat can be quickly transmitted from the inside of the assembly to the external environment, the heat dissipation speed of the photovoltaic panel 13 is accelerated, the inside of the movable installation groove 21 is provided with the cooling fan 28, the shaft center of the cooling fan 28 is fixedly connected with the transmission rod 29, the input end of the transmission rod 29 is fixedly connected with the driven tooth 210, the surface of the driven tooth 210 is engaged with the driving tooth 211, the shaft center of the driving tooth 211 penetrates the driving rod 212, the input end of the driving rod 212 is fixedly connected with the motor 213, the model of the motor 213 is Y2-80M-2, the motor 213 drives the driving tooth 211 through the driving rod 212, so as to drive the driven tooth 210 to drive the transmission rod 29, at the same time, drives the cooling fan 28 to cool the heat exchange pipe 24 and the heat exchange plate 25, accelerates the heat exchange efficiency, reduces the loss of the heat exchange pipe 24 and the heat exchange plate 25, prolongs the service life, the driving rod 212 penetrates one side surface of the movable installation groove 21, the motor 213 is fixedly installed on one side outer wall of the movable installation groove 21, and the bottom is fixedly installed with a motor mounting frame.The motor 213 is firmly installed on the outer wall surface of the movable mounting groove 21 through the motor mounting frame. The main function of the motor 213 is driving and transmission, which is responsible for driving the driving rod 212. In this way, the motor 213 ensures that the driving rod 212 can operate efficiently and stably.
[0033] As can be seen from the above description, by installing the photovoltaic panel 13 on the heat exchange plate 25 on the surface of the mounting frame 22, the heat exchange plate 25 can absorb the heat generated by the photovoltaic panel 13 to provide heat dissipation for the photovoltaic panel 13. Through the cooperation of the mounting frame 22, the water storage tank 23 and the heat exchange pipe 24, the heat absorbed by the heat exchange plate 25 is transferred to the cold water inside the heat exchange pipe 24. The heat exchange plate 25 and the heat exchange pipe 24 are made of heat-absorbing metal materials to enhance the heat conduction efficiency. At the same time, the motor 213 cooperates with the driving rod 212 and the driving tooth 211 to drive the driven tooth 210, and the transmission rod 29 drives the cooling fan 28 to blow the heat exchange pipe 24 and the heat exchange plate 25 to further improve the heat dissipation effect of the equipment on the photovoltaic panel 13. Effective heat dissipation reduces the working temperature of the photovoltaic cell, improves its energy conversion efficiency, thereby enhancing the working efficiency of the photovoltaic panel 13 and prolonging its service life. Through the cooperation of the heat dissipation frame 26, the movable rod 12 and the movable mounting groove 21, the installation process of the photovoltaic panel 13 and the heat dissipation mechanism 2 is simplified, and the direction of the photovoltaic panel 13 is adjusted, which improves the convenience of the equipment.
[0034] Embodiment two: based on the embodiment one, the water circulation mechanism 3 includes a water supply hose 31, a valve 32, a water supply tank 33, a water filling port 34 and a water level meter 35. The water supply hose 31 is fixedly connected to the input end of the water storage tank 23. The input end of the water supply hose 31 is fixedly connected to the output end of the valve 32. The valve 32 is fixedly installed on both sides of the water supply tank 33. The top of the water supply tank 33 is provided with the water filling port 34. The front of the water supply tank 33 is fixedly installed with the water level meter 35. The water supply hose 31 cooperates with the valve 32 to transport the water source in the water supply tank 33 to the water storage tank 23. At the same time, the water storage tank 23 transports cold water to the heat exchange pipe 24, and the heat absorbed by the heat exchange plate 25 is absorbed into the cold water in the heat exchange pipe 24. The water filling port 34 is used to add water source to the water supply tank 33. The water level meter 35 is used to observe the water level in the water supply tank 33. The water supply hose 31 connected by the valve 32 at both ends of the water supply tank 33 is respectively an output soft water pipe and a backflow soft water pipe. The top of the water filling port 34 is provided with a sealing cover. The water supply hose 31 transports water to the water storage tank 23 through the output soft water pipe. The backflow soft water pipe recycles the heat-exchanged water source in the heat exchange pipe 24 to the water supply tank 33.
[0035] As described above, by configuring the water supply hose 31, valve 32, and water storage tank 23, the process of transporting water from the water supply tank 33 to the heat exchange tube 24 is realized. Subsequently, the water source that has undergone heat exchange treatment is recycled back to the water supply tank 33 using the water storage tank 23 and water supply hose 31 at the other end. This not only reduces water waste but also lowers operating costs. At the same time, through the combined use of the water level gauge 35 and the filling port 34, staff can easily monitor the evaporation of water in the water supply tank to ensure timely replenishment of water, thereby improving the economic benefits of the equipment.
[0036] Example 3: Based on Example 2, the cooling mechanism 4 includes a connecting plate 41, a power supply 42, a mounting groove 43, and a cooling pipe 44. The connecting plate 41 is fixedly connected to the bottom of the support frame 11. The power supply 42 is fixedly installed on one side of the connecting plate 41. The surface of the connecting plate 41 has a mounting groove 43, and the cooling pipe 44 is fixedly installed inside the mounting groove 43. The connecting plate 41 can easily install the entire cooling mechanism 4, making it stable in the corresponding position. The connecting plate 41 has a dedicated mounting groove 43. By installing the cooling pipe 44 in the mounting groove 43, it can be ensured that the cooling pipe 44 will not easily shift or fall off during use, thereby ensuring the stability of the entire cooling mechanism. The system ensures stability and reliability, facilitates installation, and maximizes cooling effect, enabling efficient heat transfer and dissipation during operation. The connecting plate 41 fits snugly against the bottom of the water supply tank 33, and the power supply motor 42 is connected to the power cord of the cooling pipe 44. The bottom of the water supply tank 33 covers the surface of the mounting groove 43. The power supply motor 42 provides the necessary power to the cooling pipe 44 to ensure its normal operation. At the same time, the cooling pipe 44 effectively cools the water source in the water supply tank 33. In this way, the water temperature in the water supply tank 33 is maintained at a relatively low level, thereby ensuring the stable operation of the entire equipment and extending its service life.
[0037] As described above, by setting up a connecting plate 41 in conjunction with a power supply motor 42 and a mounting slot 43, the cooling pipe 44 cools the bottom of the water supply tank 33 and conducts the heat to the water inside, so that the heat exchange pipe 24 and the heat exchange plate 25 can continuously cool the photovoltaic panel 13, thereby improving the continuity of heat dissipation of the equipment.
[0038] In summary, when using this equipment, the photovoltaic panel 13 is first installed onto the surface of the heat exchange plate 25 on the mounting frame 22. The heat exchange plate 25 absorbs the heat generated by the photovoltaic panel 13, dissipating heat from it. Through the mounting frame 22, in conjunction with the water storage tank 23 and heat exchange tubes 24, the heat absorbed by the heat exchange plate 25 is transferred from the heat exchange tubes 24 to the internal cold water. Both the heat exchange plate 25 and the heat exchange tubes 24 are made of heat-absorbing metal, improving heat conduction performance. Simultaneously, the motor 213, in conjunction with the drive rod 212 and drive gear 211, drives the driven gear 210, causing the drive rod 29 to drive the cooling fan 28 to blow air onto the heat exchange tubes 24 and the heat exchange plate 25, enhancing the heat dissipation efficiency of the photovoltaic panel 13. Through effective heat dissipation, the operating temperature of the photovoltaic cell is reduced, thereby improving its conversion efficiency and ultimately increasing the working efficiency of the photovoltaic panel 13 while extending its service life. The heat dissipation frame 26, in conjunction with the active... The movable rod 12 and the movable mounting slot 21 facilitate the installation of the photovoltaic panel 13 and the heat dissipation mechanism 2, and make it easy to adjust the orientation of the photovoltaic panel 13, thus improving the convenience of the equipment. Through the water supply hose 31, valve 32 and water storage tank 23, the water source in the water supply tank 33 is transported to the heat exchange pipe 24, and then through the water storage tank 23 and water supply hose 31 at the other end, the heat-exchanged water source is recycled back to the water supply tank 33, reducing water waste and lowering costs. At the same time, the water level gauge 35 and the filling port 34 make it easy for staff to observe the evaporation of the water source in the water supply tank, so as to refill the water source at any time, thus improving the economic efficiency of the equipment. Finally, through the connecting plate 41, motor 42 and mounting slot 43, the cooling pipe 44 cools the bottom of the water supply tank 33, and conducts the water source inside, so that the heat exchange pipe 24 and heat exchange plate 25 can continuously cool the photovoltaic panel 13, thus improving the heat dissipation sustainability of the equipment.
[0039] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0040] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A heat-dissipating photovoltaic panel, comprising a device body (1), characterized in that: The surface of the device body (1) is provided with a support frame (11), a movable rod (12) is movably installed on the top of the support frame (11), and a photovoltaic panel (13) is provided above the support frame (11). A heat dissipation mechanism (2) is fixedly installed on the surface of the movable rod (12), and a water circulation mechanism (3) is provided below the movable rod (12). A cooling mechanism (4) is fixedly installed at the bottom of the water circulation mechanism (3). The heat dissipation mechanism (2) includes a movable mounting slot (21), a mounting frame (22), a water storage tank (23), a heat exchange tube (24), a heat exchange plate (25), a heat dissipation frame (26), a dustproof net (27), a cooling fan (28), a transmission rod (29), a driven gear (210), a driving gear (211), a driving rod (212), and The motor (213) is fixedly mounted on the surface of the movable rod (12) with the movable mounting slot (21) fixedly mounted on the top of the movable mounting slot (21). A mounting frame (22) is fixedly mounted on both ends of the mounting frame (22). A water storage tank (23) is fixedly mounted on both ends of the water storage tank (23). A heat exchange tube (24) is fixedly connected to the output end of the water storage tank (23). The surface of the heat exchange tube (24) extends through one side of the heat exchange plate (25). A heat dissipation frame (26) is fixedly connected to the bottom of the mounting frame (22). A dustproof net (27) is fixedly mounted on the surface of the heat dissipation frame (26). The water circulation mechanism (3) includes a water delivery hose (31), a valve (32), a water supply tank (33), a filling port (34), and a water level gauge (35). The water delivery hose (31) is fixedly connected to the input end of the water storage tank (23). The input end of the water delivery hose (31) is fixedly connected to the output end of the valve (32). The valve (32) is fixedly installed on both sides of the water supply tank (33). The water supply tank (33) has a filling port (34) on its top. The water level gauge (35) is fixedly installed on the front of the water supply tank (33). The cooling mechanism (4) includes a connecting plate (41), a power supply (42), a mounting groove (43), and a cooling pipe (44). The connecting plate (41) is fixedly connected to the bottom of the support frame (11). The power supply (42) is fixedly installed on one side of the connecting plate (41). The surface of the connecting plate (41) is provided with a mounting groove (43). The cooling pipe (44) is fixedly installed inside the mounting groove (43).
2. The heat-dissipating photovoltaic panel according to claim 1, characterized in that: The support frame (11) has feet welded to the bottom and a movable seat fixedly installed on the top. The cooling mechanism (4) is fixedly connected to the feet. The two ends of the movable rod (12) are movably installed inside the movable seat. The photovoltaic panel (13) is installed on the surface of the mounting frame (22) and its back is in contact with the heat exchange plate (25).
3. A heat-dissipating photovoltaic panel according to claim 2, characterized in that: The heat exchange tube (24) and heat exchange plate (25) are both installed inside the mounting frame (22). The heat exchange tube (24) and heat exchange plate (25) are both made of heat-absorbing metal or high thermal conductivity material. The heat sink (26) is fixedly installed on the top surface of the movable mounting slot (21).
4. A heat-dissipating photovoltaic panel according to claim 3, characterized in that: The movable mounting slot (21) is equipped with a cooling fan (28). A transmission rod (29) is fixedly connected to the shaft of the cooling fan (28). A driven gear (210) is fixedly connected to the input end of the transmission rod (29). A drive gear (211) meshes with the surface of the driven gear (210). A drive rod (212) passes through the shaft of the drive gear (211). A motor (213) is fixedly connected to the input end of the drive rod (212). The model of the motor (213) is Y2-80M-2.
5. A heat-dissipating photovoltaic panel according to claim 4, characterized in that: The drive rod (212) passes through one side surface of the movable mounting slot (21), and the motor (213) is fixedly mounted on the outer wall of one side of the movable mounting slot (21), and a motor mounting bracket is fixedly mounted at the bottom.
6. A heat-dissipating photovoltaic panel according to claim 1, characterized in that: The water supply hose (31) is fixedly connected to the input end of the water storage tank (23). The input end of the water supply hose (31) is fixedly connected to the output end of the valve (32). The valve (32) is fixedly installed on both sides of the water supply tank (33). The top of the water supply tank (33) is provided with a filling port (34). A water level gauge (35) is fixedly installed on the front of the water supply tank (33).
7. A heat-dissipating photovoltaic panel according to claim 6, characterized in that: The water supply hoses (31) connected to the valves (32) at both ends of the water supply tank (33) are respectively the output soft water pipe and the return hose, and the top of the filling port (34) is provided with a sealing cap.
8. A heat-dissipating photovoltaic panel according to claim 2, characterized in that: The cooling mechanism (4) includes a connecting plate (41), a power supply (42), a mounting groove (43), and a cooling pipe (44). The connecting plate (41) is fixedly connected to the bottom of the support frame (11). The power supply (42) is fixedly installed on one side of the connecting plate (41). The surface of the connecting plate (41) is provided with a mounting groove (43). The cooling pipe (44) is fixedly installed inside the mounting groove (43).
9. A heat-dissipating photovoltaic panel according to claim 8, characterized in that: The connecting plate (41) is attached to the bottom of the water supply tank (33), the power supply motor (42) is connected to the wire of the cooling pipe (44), and the bottom of the water supply tank (33) covers the surface of the mounting groove (43).
Citation Information
Patent Citations
Ventilation and heat dissipation type energy storage solar photovoltaic panel
CN114928315A
Photoelectric conversion efficiency improving device based on photocatalysis self-cleaning technology
CN115441829A