蒸发冷却器
辐射冷却
被动冷却
发射率
环境科学
蒸发
辐射传输
水冷
被动式太阳能建筑设计
串联
气象学
材料科学
热的
光学
物理
热力学
复合材料
作者
Jinlei Li,Xueyang Wang,Liang Dong,Ning Xu,Bin Zhu,Wei Li,Pengcheng Yao,Yi Jiang,Xinzhe Min,Zhengzong Huang,Shining Zhu,Shanhui Fan,Jia Zhu
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-08-12
卷期号:8 (32)
被引量:108
标识
DOI:10.1126/sciadv.abq0411
摘要
Radiative cooling and evaporative cooling with low carbon footprint are regarded as promising passive cooling strategies. However, the intrinsic limits of continuous water supply with complex systems for evaporative cooling, and restricted cooling power as well as the strict requirement of weather conditions for radiative cooling, hinder the scale of their practical applications. Here, we propose a tandem passive cooler composed of bilayer polymer that enables dual-functional passive cooling of radiation and evaporation. Specifically, the high reflectivity to sunlight and mid-infrared emissivity of this polymer film allows excellent radiative cooling performance, and its good atmospheric water harvesting property of underlayer ensures self-supply of water and high evaporative cooling power. Consequently, this tandem passive cooler overcomes the fundamental difficulties of radiative cooling and evaporative cooling and shows the applicability under various conditions of weather/climate. It is expected that this design can expand the practical application domain of passive cooling.
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