圈地
采光
主动冷却
被动冷却
材料科学
热辐射
辐射冷却
热的
热流密度
机械工程
光电子学
光学
环境科学
建筑工程
工程物理
水冷
工程类
电气工程
传热
物理
机械
气象学
热力学
作者
Yining Zhu,Hao Luo,Chenying Yang,Bing Qin,Pintu Ghosh,Sandeep Kaur,Weidong Shen,Min Qiu,Pavel A. Belov,Qiang Li
标识
DOI:10.1038/s41377-022-00810-y
摘要
Active temperature control devices are widely used for the thermal management of enclosures, including vehicles and buildings. Passive radiative cooling has been extensively studied; however, its integration with existing actively temperature regulated and decorative enclosures has slipped out of the research at status quo. Here, we present a photonic-engineered dual-side thermal management strategy for reducing the active power consumption of the existing temperature-regulated enclosure without sacrificing its aesthetics. By coating the exterior and interior of the enclosure roof with two visible-transparent films with distinctive wavelength-selectivity, simultaneous control over the energy exchange among the enclosure with the hot sun, the cold outer space, the atmosphere, and the active cooler can be implemented. A power-saving of up to 63% for active coolers of the enclosure is experimentally demonstrated by measuring the heat flux compared to the ordinary enclosure when the set temperature is around 26°C. This photonic-engineered dual-side thermal management strategy offers facile integration with the existing enclosures and represents a new paradigm toward carbon neutrality.
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