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A combined optical, thermal and electrical performance model of a Building Integrated Photovoltaic/Thermal Concentrator (BIPVTC)

机译:建筑物集成式光伏/热力集中器(BIPVTC)的光学,热和电性能综合模型

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摘要

The electrical output of concentrating photovoltaic devices is significantly affected by the temperature of the photovoltaic cells. The ability to actively cool photovoltaic cells under concentrated radiation allows their electrical efficiency to be maintained particularly during periods of high solar radiation when concentration offers the maximum benefit. In this study, the design of a novel photovoltaic/thermal solar concentrator for building integration (BIPVTC) is discussed. The optical, thermal and electrical performance of the collector was theoretically modelled and validated with experimental data. The results show that BIPVTC offers improved electrical yields from both concentrating radiation onto the photovoltaic cells and also by actively cooling them.
机译:聚光光伏装置的电输出受到光伏电池温度的显着影响。在集中辐射下主动冷却光伏电池的能力使它们的电效率得以保持,特别是在集中提供最大好处的高太阳辐射期间。在这项研究中,讨论了一种用于建筑物集成的新型光伏/热太阳能集中器(BIPVTC)的设计。理论上对收集器的光学,热和电性能进行了建模,并通过实验数据进行了验证。结果表明,BIPVTC通过将辐射集中到光伏电池上以及通过主动冷却它们,可以提高电产量。

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