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The Copper Indium Selenium (CuInSe2) thin films solar cells for Hybrid Photovoltaic Thermal Collectors (PVT)

机译:铜铟硒(CuinSe2)薄膜混合光伏热量收集器的太阳能电池(PVT)

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Ternary chalcopyrite compounds which may act as an absorber in thin films solar cells are mainly CuGaSe2, the CuInS2, CuInSe2 and the CuAlSe2. Because of their large optical absorption coefficient, a thickness of 1.5-2 microns is sufficient to absorb the useful portion of the solar spectrum. The most promising appears to be the CuInSe2 material, a 18.8% efficiency is obtained by the solar cells based on this material. However, its low band gap (1,04ev) limits the open circuit voltage and thus the efficiency of the solar cell. In this work we present the application of this material in hybrid photovoltaic thermal collectors (PVT). For the determination of its electrical and thermal performance through the development of a heat balance that involves heat exchange between the different components of the collector. The results obtained show that we can have a thermal efficiency equal to (85.68%) and an electrical efficiency of the order of (19.22%) for our PVT collector based on CIS are better than the values obtained by PVT collector based on monocristallin silicon.
机译:可以用作薄膜太阳能电池中吸收器的三元核黄素化合物主要是Cugase2,CuinS2,CuinSe2和Cualse2。由于其较大的光学吸收系数,厚度为1.5-2微米足以吸收太阳光谱的有用部分。最有希望的似乎是Cuinse2材料,基于该材料的太阳能电池获得18.8%的效率。然而,其低频带隙(1,04EV)限制了开路电压,从而限制了太阳能电池的效率。在这项工作中,我们介绍了这种材料在混合光伏热收集器(PVT)中的应用。为了通过开发热平衡来确定其电气和热性能,涉及收集器的不同部件之间的热交换。获得的结果表明,基于CIS的PVT收集器的PVT收集器的热效率等于(85.68%)和电气效率优于基于Monocristallin硅的PVT收集器获得的值。

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