蒸发冷却器
辐射冷却
被动冷却
材料科学
辐射冷却
发射率
主动冷却
蒸发
水冷
辐射传输
传热
热导率
膜
红外线的
光电子学
核工程
光学
复合材料
机械工程
化学
热力学
物理
工程类
生物化学
作者
Mingran Mao,Chunzao Feng,Junxian Pei,Huidong Liu,Haifeng Jiang
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2023-03-15
卷期号:16 (6): 2750-2750
被引量:10
摘要
Passive cooling for thermal comfort improvement has received extensive attention for its low energy consumption. However, most of the existing passive cooling technologies require a complex system design and supporting equipment, since they cool the ambient air. Herein, we propose a hybrid evaporative and radiative cooling membrane with a hygroscopic hydrogel sandwiched by two layers of a porous polyethylene aerogel (PEA). The hydrogel implements evaporative cooling. Combining the high solar reflection of PEA and the high infrared emissivity of hydrogel, this hybrid membrane also possesses radiative cooling. In addition, the high infrared transmittance and low thermal conductivity of PEA allow direct heat transfer between the hydrogel and human body, instead of the ambient air. Through comparative experiments and theoretical calculations, it is indicated that the net cooling power delivered by the hybrid membrane to the human body is up to 78.45 W m−2, which is much higher than that of conventional radiative cooling materials. Outdoor demonstration shows that emission below the hybrid membrane can achieve an average sub-ambient temperature drop of 6 °C, with a maximum of 14 °C, showing great potential for passive building cooling and human personal cooling.
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