光伏系统
环境科学
光谱功率分布
碲化镉光电
大气科学
产量(工程)
非晶硅
纬度
气象学
太阳能电池
物理
工程类
晶体硅
光电子学
光学
电气工程
天文
热力学
作者
F. Chenlo,F. Chenlo,G. Nofuentes,Manuel Torres
出处
期刊:Energy
[Elsevier]
日期:2014-04-01
卷期号:67: 435-443
被引量:117
标识
DOI:10.1016/j.energy.2014.01.024
摘要
This work is aimed at looking into the impact of the solar spectrum distribution on the energy yield of some PV (photovoltaic) materials on both monthly and annual time scales. The relative spectral responses of eight different PV solar cells – representative of each considered technology – have been selected. Modeling solar spectra in four sites located in the north hemisphere together with a 12-month experimental campaign in which spectral irradiances were periodically recorded in two of these sites located in Spain have provided highly interesting results. Regardless of the site, the considered amorphous silicon and cadmium telluride PV cells experience the most noticeable modeled and experimental variations of their monthly spectral gains, whilst flatter seasonal ones are identified in the remaining considered PV technologies. Thus, the maximum monthly variations of these spectral gains take place in the a-Si PV cell, ranging from −16% (winter) to 4% (summer) in Stuttgart. Anyway, the monthly spread of the spectral effects decreases as the latitude of the site does. Last, the impact of the solar spectrum distribution is remarkably reduced when the period of integration is enlarged up to a year. In fact, annual spectral gains keep below 2.2% for all the studied technologies and sites.
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