环境科学
辐射冷却
白天
大气科学
城市热岛
辐射传输
蒸发冷却器
宽带
大气(单位)
风速
气象学
气候学
地理
物理
量子力学
地质学
光学
作者
Jie Feng,Ansar Khan,Quang‐Van Doan,Kai Gao,M. Santamouris
标识
DOI:10.1016/j.xcrp.2021.100485
摘要
Extreme urban heat causes serious climatic, environmental, and economic problems. Daytime radiative cooling technologies are the most promising cooling technology in recent years. Here, we report experimental and numerical analysis to assess the cooling performance of scalable broadband radiative coolers, evaluate their heat mitigation potential in cities, and investigate their impact on local climate and the atmospheric dynamics. We show that, when air temperature reached its peak, the sub-ambient surface temperature of 8.2°C was achievable for samples with a wind cover. The maximum reductions of peak ambient temperature, average daytime ambient temperature, and highest urban canopy temperature are 5.3°C, 3.6°C, and 13°C, respectively. Collectively, we show that broadband coolers can significantly mitigate urban heat, but the cooling island effect they generate would increase side effects such as a decrease in the mixing layer of the atmosphere and an increase in pollutant concentration.
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