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Analysis and Simulation of PV Solar Panel with Face Down Finned Heat Sink

机译:光伏太阳能电池板的分析与仿真,面朝下翅片散热器

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摘要

Electrical/thermal modeling and simulation of a solar PV panel was made. The effect of face down finned heat sink which is attached to the back surface of panel in lowering the cell temperature and improving the panel electrical efficiency was studied. The performance of a typical PV panel was programed using MATLAB to predict the variation of current and voltage produced by the panel. Thermal modeling of the PV was also made including all modes of heat transfer. To show the effect of the finned heat sink on the cell temperature and PV efficiency both cases with and without heat sink were studied. Convection and radiation heat transfer from the finned heat sink were considered. The simulation results indicate an optimum fin spacing of 12 mm and a fin height of 150 mm for the considered PV 65.2 W solar panel. A decrease in cell temperature of about 25% and an improvement of about 10.8% in efficiency were predicted when attaching geometrically optimized facedown finned heat sink to PV solar panel under an ambient temperature range of 25 °C to 50 °C, and a solar flux of 1000 W/m~2.
机译:制造了太阳能光伏板的电气/热建模和仿真。研究了面向面板背面的面部下翅片散热器在降低电池温度和改善面板电效率的研究。使用MATLAB进行编程典型PV面板的性能,以预测面板产生的电流和电压的变化。还制造了PV的热建模,包括所有热传递模式。为了表明翅片散热器对电池温度和PV效率的影响,还研究了任何带散热器的情况。考虑来自翅片散热器的对流和辐射热传递。仿真结果表明,对于考虑的PV 65.2W太阳能电池板,最佳翅片间距为12mm,翅片高度为150mm。当在25°C至50°C的环境温度范围内将几何优化的面板连接到光伏太阳能电池电机,以及太阳能通量,预测电池温度约为25%的细胞温度和提高约10.8%的效率提高约10.8%。 1000 w / m〜2。

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