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Comprehensive analysis on the assembly of a dielectric-filled crossed compound parabolic concentrator and a concentrator photovoltaic module

机译:电介质填充交叉复合抛物线浓缩器的组装综合分析及浓缩器光伏模块

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A comprehensive analysis on assembly of dielectric-filled 3D crossed compound parabolic concentrator (CCPC) and concentrator photovoltaic (CPV) module is presented by embracing the consideration of spectral irradiance, incident angles, and breakdown optical losses. The theoretical modeling is supported by experimental validation to evaluate the optical efficiency of the CCPC-CPV module. From our analysis, Fresnel reflection loss of 11.27%, absorption loss of 11.59%, and other losses of 4.79% are obtained to reach the total loss of 27.65% or equivalent solar concentration ratio (SCR) of 4.65 suns out of a geometrical concentration ratio (GCR) of 5.998 suns. Then, indoor and outdoor measurements prow the actual SCR of 4.57 and 4.48 suns, respectively. (C) 2020 Optical Society of America
机译:通过接受考虑光谱辐照度,入射角和击穿光学损失,提出了对介电填充3D交叉复合复合抛物型抛物线(CCPC)和浓缩器光伏(CPV)模块的综合分析。 实验验证支持理论建模,以评估CCPC-CPV模块的光学效率。 从我们的分析,菲涅耳反射损失为11.27%,吸收损失为11.59%,而其他损失为4.79%,以达到27.65%或等效的太阳能浓度比(SCR)的几何浓度比为4.65% (GCR)的5.998太阳。 然后,室内和室外测量分别占据4.57和4.48太阳的实际霜冻。 (c)2020美国光学学会

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    《Applied optics》 |2020年第14期|共9页
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