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Experimental analysis on passive cooling of flat photovoltaic panel with heat sink and wick structure

机译:散热器扁平光伏板被动冷却试验分析及芯片结构

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摘要

Generally, photovoltaic (PV) solar cell generates electricity by receiving solar irradiance in the forms of photons. When the heat induced in the panel exceeds the operating temperature, there is drop in electrical efficiency. The objective of this project is to design the system to increase the electrical efficiency of solar cell by cooling the cell with the help of various heat sinks and wick structure with copper and aluminum fins. The heat removed from the back surface of the panel with the help of fins that absorb heat generated by the cells during the day. Therefore, the decreased temperature of PV panel increases the electrical efficiency of solar cell. When the solar cells receive more solar radiations, it generates more electricity. At the same time, the efficiency drops when the temperature of solar cell increases. It can be concluded that the efficiency and electrical characteristics of the copper fins are higher than the aluminum by 4% and 6%, respectively.
机译:通常,光伏(PV)太阳能电池通过以光子形式接收太阳辐照度而产生电力。当面板中引起的热量超过工作温度时,电效率下降。该项目的目的是设计系统通过在各种散热器和铜结构用铜和铝翅片的帮助下通过冷却电池来提高太阳能电池的电效率。诸如白天吸收细胞产生的热量的翅片的帮助下,从面板的后表面移除的热量。因此,PV面板的降低降低增加了太阳能电池的电效率。当太阳能电池接收更多的太阳辐射时,它会产生更多的电力。同时,当太阳能电池的温度增加时效率下降。可以得出结论,铜翅片的效率和电气特性分别高出4%和6%的铝。

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