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Thermodynamic and optical analyses of a hybrid solar CPV/T system with high solar concentrating uniformity based on spectral beam splitting technology

机译:基于光谱分束技术的高聚光度混合太阳能CPV / T系统的热力学和光学分析

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摘要

A novel multi-segment mirror hybrid solar concentration photovoltaic/thermal (CPV/T) system using the spectral beam splitting technology is proposed, and its composition, working principle and structural design method are introduced in this paper. The Needle optimization method is employed to design the spectral beam splitter for the CPV/T system. The Monte Carlo Ray Tracing method is used to simulate the solar concentrating process and the results reveal that the CPV/T system can provide high uniformity of solar radiation flux density distribution on solar cells. The relationships of key structural and optical parameters of the CPV/T system are investigated. The results indicate that increasing the solar cell installation height and reducing the solar cell width can both improve the geometric concentration ratio of the CPV/T system. The sun tracking error effect analysis is carried out. The analysis results indicate that the CPV/T system has an overall optical efficiency higher than 763% when the sun tracking error is less than 1 degrees. Furthermore, the thermodynamic analysis of the proposed CPV/T system is conducted and the results show that the PV conversion efficiency and overall energy efficiency of the CPV/T system are both higher than those of the CPV system under the same condition. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种利用光谱分束技术的新型多段镜混合太阳聚光/热(CPV / T)系统,并介绍了其组成,工作原理和结构设计方法。采用Needle优化方法设计CPV / T系统的光谱分束器。蒙特卡洛射线示踪法用于模拟太阳的聚光过程,结果表明,CPV / T系统可以在太阳能电池上提供很高的太阳辐射通量密度分布均匀性。研究了CPV / T系统关键结构与光学参数的关系。结果表明,增加太阳能电池安装高度和减小太阳能电池宽度都可以提高CPV / T系统的几何集中率。进行太阳跟踪误差影响分析。分析结果表明,当太阳跟踪误差小于1度时,CPV / T系统的总体光学效率高于763%。此外,对所提出的CPV / T系统进行了热力学分析,结果表明,在相同条件下,CPV / T系统的PV转换效率和总能量效率均高于CPV / T系统。 (C)2018 Elsevier Ltd.保留所有权利。

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