Enhancing radiative cooling performance for bifacial photovoltaic module using two kinds of polycarbonate films

辐射冷却 发射率 材料科学 被动冷却 光伏系统 光学 光电子学 聚碳酸酯 辐射传输 散热片 透射率 主动冷却 红外窗口 低发射率 红外线的 水冷 工程物理 机械工程 热的 复合材料 电气工程 物理 工程类 气象学
作者
Yanfang Zhou,Tairan Xia,Xinwei Niu,Shouliang Sun,Li Xu,Yanzhen Jian,Han Wang
出处
期刊:Journal of Photonics for Energy [SPIE]
卷期号:12 (04) 被引量:5
标识
DOI:10.1117/1.jpe.12.045501
摘要

Radiative cooling, as a cooling method that does not consume any energy during operation, has become a hot topic in recent years. Unlike passive daytime radiative cooling in buildings, radiative coolers used in photovoltaic modules must also have high light transmittance, which undoubtedly makes relevant research more difficult. Currently, bifacial photovoltaic modules are widely available on the market, if traditional cooling methods are employed in the back of them, including passive cooling such as heat sink and active cooling such as air cooling and water cooling, it will block the rear irradiance into the module. Hence, radiative cooling is an excellent solution. In this paper, polycarbonate (PC) film and one composed with a high reflective layer are proposed. The former has high emissivity in the atmospheric window and the latter has high reflectivity in the near-infrared band. Both achieve a good cooling effect without affecting the normal operation of the module. We also prepared the reflective film on PC by magnetron sputtering, and its optical characteristics were also measured and compared with simulation results. We innovatively use PC material and combine the reflective film with quite simple structure. Compared with other research results, they are simpler and stabler film structures and have the advantages of low cost, easy installation, good cooling effect, and can be directly pasted on the surface of the photovoltaic module. It turns out that the cooling effect can reach 6.02°C with R-PC film and photoelectric conversion efficiency can be improved by 0.27% with PC film when hc = 20 W · m − 2 · K − 1 and Ta = 27 ° C. Given its excellent performance, they have a broad application prospect in the daytime passive radiative cooling of bifacial photovoltaic modules.
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