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Enhancing performance of photovoltaic panel by cold plate design with guided channels

机译:用引导通道的冷板设计提高光伏板的性能

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Photovoltaic (PV) panel is subjected to high temperatures from solar radiation. The performance of the PV panel deteriorates as the PV's operating temperature increases. This study aims to examine the cooling method using a cold plate attached to the PV panel to lower its operating temperature. The cold plate consists of several guided channels or ribbed walls of thickness 0.015 m to direct the circulating water flow from its entrance to the exit point at the back of the PV panel. The experiment demonstrates a decrease of around 21.2 degrees C in surface temperature and improves similar to 2% in electrical efficiency, 8% in thermal efficiency and 1.6% in PV panel efficiency as compared to PV panel without a cooling system. The relationship between the average PV's surface temperature and output power is obtained. The uncertainty analysis shows that the average standard deviation in PVs, electrical and thermal efficiency is not more than 1.26% when subjected to differences in the day of measurements, mass flow rate, and pressure of the pump.
机译:光伏(PV)面板从太阳辐射的高温进行高温。随着光伏的操作温度升高,PV面板的性能劣化。本研究旨在使用连接到PV面板的冷板来检查冷却方法以降低其工作温度。冷板由几个引导通道或厚度为0.015μm的罗纹壁,以引导循环水从其入口流向光伏面板背面的出口点。实验表明,与光伏面板相比,在表面温度下,表面温度下降约2​​1.2摄氏度,在表面温度下,其电效率的2%与2%相比,在没有冷却系统的光伏面板的情况下,PV面板效率的热效率为8%和1.6%。获得了平均PV的表面温度和输出功率之间的关系。不确定性分析表明,当在测量日,质量流量和泵的压力下进行差异时,光伏,电气和热效率的平均标准偏差不大于1.26%。

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