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Improving the Performance of a Semitransparent BIPV by Using High-Reflectivity Heat Insulation Film

机译:通过使用高反射率隔热膜提高半透明BIPV的性能

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摘要

Currently, standard semitransparent photovoltaic (PV) modules can largely replace architectural glass installed in the windows, skylights, and facade of a building. Their main features are power generation and transparency, as well as possessing a heat insulating effect. Through heat insulation solar glass (HISG) encapsulation technology, this study improved the structure of a typical semitransparent PV module and explored the use of three types of high-reflectivity heat insulation films to form the HISG building-integrated photovoltaics (BIPV) systems. Subsequently, the authors analyzed the influence of HISG structures on the optical, thermal, and power generation performance of the original semitransparent PV module and the degree to which enhanced performance is possible. The experimental results indicated that the heat insulation performance and power generation of HISGs were both improved. Selecting an appropriate heat insulation film so that a larger amount of reflective solar radiation is absorbed by the back side of the HISG can yield greater enhancement of power generation. The numerical results conducted in this study also indicated that HISG BIPV system not only provides the passive energy needed for power loading in a building, but also decreases the energy consumption of the HVAC system in subtropical and temperate regions.
机译:目前,标准的半透明光伏(PV)模块可以很大程度上取代安装在建筑物的窗户,天窗和外观中的建筑玻璃。它们的主要特征是发电和透明度,以及具有绝热效果。通过隔热太阳能玻璃(HISG)封装技术,该研究改进了典型的半透明光伏模块的结构,并探索了三种类型的高反射率隔热膜,形成HISG建筑集成的光伏(BIPV)系统。随后,作者分析了原始半透明光伏模块的光学,热和发电性能对原始半透明光伏模块的影响以及增强性能的程度的影响。实验结果表明,HISGS的隔热性能和发电均得到改善。选择适当的隔热膜,使得通过HISG的后侧吸收更大量的反射太阳辐射,可以产生更大的发电增强。本研究中进行的数值结果还表明HISG BIPV系统不仅提供了建筑物中电力负载所需的被动能量,而且还降低了亚热带和温带地区HVAC系统的能量消耗。

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