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A theoretical analysis of the impact of atmospheric parameters on the spectral, electrical and thermal performance of a concentrating III-V triple-junction solar cell

机译:大气参数对III-V集中三结太阳能电池光谱,电和热性能影响的理论分析

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摘要

The spectral sensitivity of a concentrating triple junction (3J) solar cell has been investigated. The atmospheric parameters such as the air mass (AM), aerosol optical depth (AOD) and precipitable water (PW) change the distribution of the solar spectrum in a way that the spectral, electrical and thermal performance of a 3J solar cell is affected. In this paper, the influence of the spectral changes on the performance of each subcell and whole cell has been analysed. It has been shown that increasing the AM and AOD have a negative impact on the spectral and electrical performance of 3J solar cells while increasing the PW has a positive effect, although, to a lesser degree. A three-dimensional finite element analysis model is used to quantify the effect of each atmospheric parameter on the thermal performance for a range of heat transfer coefficients from the back-plate to the ambient air and also ambient temperature. It is shown that a heat transfer coefficient greater than 1300 W/(m(2) K) is required to keep the solar cell under 100 degrees C at all times. In order to get a more realistic assessment and also to investigate the effect of heat transfer coefficient on the annual energy yield, the methodology is applied for four US locations using data from a typical meteorological year (TMY3). (c) 2016 Elsevier Ltd. All rights reserved.
机译:已经研究了集中式三结(3J)太阳能电池的光谱灵敏度。诸如空气质量(AM),气溶胶光学深度(AOD)和可沉淀水(PW)之类的大气参数以影响3J太阳能电池的光谱,电学和热学性能的方式改变了太阳光谱的分布。在本文中,分析了光谱变化对每个子电池和整个电池性能的影响。已经表明,增加AM和AOD对3J太阳能电池的光谱和电性能具有负面影响,而增加PW则具有正面影响,尽管程度较小。三维有限元分析模型用于量化从后板到环境空气以及环境温度的一系列传热系数,每个大气参数对热性能的影响。结果表明,为了使太阳能电池始终保持在100摄氏度以下,需要大于1300 W /(m(2)K)的传热系数。为了获得更现实的评估并调查传热系数对年发电量的影响,该方法使用典型气象年(TMY3)的数据应用于美国的四个地点。 (c)2016 Elsevier Ltd.保留所有权利。

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