炼金术中的太阳
辐射传输
光伏
热光电伏打
辐射冷却
材料科学
光电子学
带隙
光学
被动冷却
主动冷却
太阳能电池效率
阳光
太阳能
光伏系统
太阳能电池
水冷
物理
传热
电气工程
气象学
共发射极
热力学
工程类
作者
Zhiguang Zhou,Ze Wang,Peter Bermel
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2019-03-19
卷期号:27 (8): A404-A404
被引量:36
摘要
Radiative cooling is a uniquely compact and passive cooling mechanism. Significant applications can be found in energy generation, particularly concentrating photovoltaics (CPV) and thermophotovoltaics (TPV). Both rely on low-bandgap PV cells that experience significant reductions in performance and lifetime when operating at elevated temperatures. This issue creates a significant barrier to widespread adoption. To address this challenge, we demonstrate enhanced radiative cooling for low-bandgap PV cells under concentrated sunlight for the first time. A composite material stack is used as the radiative cooler. Enhanced radiative cooling reduces operating temperatures by 10 °C, translating into a relative increase of 5.7% in open-circuit voltage and an estimated increase of 40% in lifetime at 13 suns. By using a model, we also estimate that the same setup could achieve an improvement of 34% in open-circuit voltage for 35 suns, which could reduce levelized costs of energy up to 33% for high-activation energy failure modes. The radiative cooling enhancement demonstrated here is a simple and straightforward approach, which can be generalized to other optoelectronic systems.
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