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Effects of Nonuniform Incident Illumination on the Thermal Performance of a Concentrating Triple Junction Solar Cell

机译:入射不均匀照明对集中三结太阳能电池热性能的影响

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A numerical heat transfer model was developed to investigate the temperature of a triple junction solar cell and the thermal characteristics of the airflow in a channel behind the solar cell assembly using nonuniform incident illumination. The effects of nonuniformity parameters, emissivity of the two channel walls, and Reynolds number were studied. The maximum solar cell temperature sharply increased in the presence of nonuniform light profiles, causing a drastic reduction in overall efficiency. This resulted in two possible solutions for solar cells to operate in optimum efficiency level: (i) adding new receiver plate with higher surface area or (ii) using forced cooling techniques to reduce the solar cell temperature. Thus, surface radiation exchanges inside the duct and Re significantly reduced the maximum solar cell temperature, but a conventional plain channel cooling system was inefficient for cooling the solar cell at medium concentrations when the system was subjected to a nonuniform light distribution. Nonuniformity of the incident light and surface radiation in the duct had negligible effects on the collected thermal energy.
机译:建立了数值传热模型,以研究非均匀入射照明下三结太阳能电池的温度和太阳能电池组件后面通道中气流的热特性。研究了非均匀性参数,两个通道壁的发射率以及雷诺数的影响。在不均匀的光分布的情况下,太阳能电池的最高温度急剧上升,从而导致整体效率急剧下降。这为使太阳能电池以最佳效率运行提供了两种可能的解决方案:(i)添加具有更大表面积的新接收板,或(ii)使用强制冷却技术降低太阳能电池温度。因此,管道和Re内部的表面辐射交换显着降低了太阳能电池的最高温度,但是当该系统受到不均匀的光分布时,常规的明渠冷却系统无法以中等浓度冷却太阳能电池。管道中入射光和表面辐射的不均匀性对收集的热能的影响可以忽略不计。

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