1. Field of the Invention
The present invention relates to a solar panel heat-dissipating device, and more particularly, to a solar panel heat-dissipating device for adjusting temperature of a solar panel and a related solar panel module.
2. Description of the Prior Art
A solar panel can be disposed on the housetop of the building for transforming solar energy of the sunlight received by the solar panel into electrical energy. When the conventional solar panel tile is under sunlight, the solar panel will continuously transform the solar energy into the electrical energy. However, when the conventional solar panel tile is under long-term sunlight, the temperature of the entire solar panels might rise up to exceed the best working temperature due to continuation of generating electricity. Generally, the best working temperature of the conventional solar panel tile is between 25° C. to 55° C., but the working temperature of the conventional solar panel tile will rise up to more than 75° C. under long-term sunlight. At this time, transformation rate of the solar panel for generating electricity will drop fast due to the high temperature of entire solar panels, and electronic components of the solar panel will be damaged by the high temperature easily. Thus, design of a solar panel tile for adjusting the temperature of the solar panel to the best working temperature is an important issue in the solar panel industry.
The present invention provides a solar panel heat-dissipating device for adjusting temperature of a solar panel and a related solar panel module for solving above drawbacks.
According to the claimed invention, a solar panel heat-dissipating device comprises a base and a cooling plate. The base is utilized for supporting a solar panel. The cooling plate is disposed between the solar panel and the base. A cooling tube is installed on the cooling plate for contacting a side of the solar panel to absorb heat generated by the solar panel. Conductive fluid is accommodated inside the cooling tube for dissipating heat of the cooling tube conducted from the solar panel.
According to the claimed invention, a solar panel module comprises a solar panel and a solar panel heat-dissipating device. The solar panel heat-dissipating device comprises a base and a cooling plate. The base is for supporting the solar panel. The cooling plate is disposed between the solar panel and the base. A cooling tube is installed on the cooling plate for contacting a side of the solar panel to absorb heat generated by the solar panel. Conductive fluid is accommodated inside the cooling tube for dissipating heat of the cooling tube conducted from the solar panel.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Please refer to
In addition, a first wedging portion 161 is formed on a first lateral wall of the base 16, and a second wedging portion 163 is formed on a second lateral wall of the base 16. The first lateral wall and the second lateral wall can be respectively disposed on two edges of the base 16 in parallel. The first wedging portion 161 and the second wedging portion 163 are capable of wedging tightly with corresponding parts of other solar panel modules along X direction, so that the solar panel module 10 can conveniently connect to other solar panel module as an array. For example, the first wedging portion 161 and the second wedging portion 163 are structural components capable of wedging with each other tightly, thus a user can connect the first wedging portion 161 and the second wedging portion 163 of the solar panel module 10 with the corresponding second wedging portion and the corresponding first wedging portion of other solar panel modules along X direction. At least one fixing portion 22 is disposed on the base 16, and the fixing portion 22 is utilized for connecting the solar panel module 10 to other solar panel modules in Y direction substantially perpendicular to X direction, so that a plurality of solar panel modules can be combined as a solar panel module with large size along X direction and Y direction. Thus, the solar panel module 10 can be designed as an external cover of the building, such as a tile structure installed the roof of the building, a brick structure attached on an outer wall of the building, etc. The application of the solar panel module 10 is not limited to the above-mentioned embodiment and depends on design demand.
In addition, the solar panel heat-dissipating device 14 further includes a transmission cable (not shown in figures) and a junction box 24 disposed on a side of the base. Two ends of the transmission cable are electrically connected to the solar panel 12 and the junction box 24 so as to transmit electricity converted by the solar panel 12 to the junction box 24. The solar panel heat-dissipating device 14 further includes a battery module 26 electrically connected to the junction box 24 for storing the electricity received by the junction box 24.
For efficiently dissipating heat generated by the solar panel 12, conductive fluid with lower temperature flows into the cooling tube 20 in a lower position. When the cooling tube 20 absorbs heat generated by the solar panel 12, conductive fluid is capable of absorbing heat generated by the solar panel 12 and conducted from the cooling tube 20 and then flows out of the opening of the cooling tube 20 in a high position so as to take heat generated by the solar panel 12 away. Accordingly, the solar panel module 10 of the present invention is a heat exchange circulation system utilizing natural heat exchange. Please refer to
When the users want to use the heat-dissipating device, the container 28 is communicated with the two ends of the cooling tube 20. Then the conductive fluid absorbing the heat generated by the solar panel 12 with high temperature can flow out of the cooling tube 20, and the cooled down conductive fluid with lower temperature can pour into the cooling tube 20 to reabsorb heat generated by the solar panel 12. The conductive fluid circulates around the container 28 and the cooling tube 20 repeatedly for dissipating the heat generated by the solar panel 12. Therefore, the solar panel module 10 of the present invention can reduce the working temperature of the solar panel 12 efficiently.
Comparing to the prior art, the solar panel module of the present invention utilizes the heat-dissipating system of fluid circulation for adjusting the working temperature of the solar panel module. The solar panel module of the present invention not only has convenient assembly and low cost but also effectively controls the working temperature of the solar panel module in a range of preferred efficiency for generating electrical power.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
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099100909 | Jan 2010 | TW | national |