变压器
材料科学
电
水冷
辐射冷却
被动冷却
工艺工程
主动冷却
消散
机械工程
核工程
环境科学
汽车工程
电气工程
传热
工程类
热力学
物理
电压
作者
Xiangyu Liu,Pengli Li,Yijie Liu,Chuan Zhang,Meng He,Zhantao Pei,Jie Chen,Kunming Shi,Lei Zhu,Wanlin Wang,Wang Zhang,Pingkai Jiang,Xingyi Huang
标识
DOI:10.1002/adma.202409473
摘要
Abstract While providing electrical energy for human society, power equipment also consumes electricity and generate heat. Cooling equipment consumes a significant amount of electricity, further increasing energy consumption and load on the power grid. Therefore, there is an urgent need to develop low‐energy and sustainable cooling technologies for power equipment. In this study, a hybrid passive cooling composite designed to enhance heat dissipation for heavy‐load power equipment is introduced. Specifically, the composite material achieves outstanding radiative cooling performance with an average solar reflectance of up to 0.98, while its excellent atmospheric water harvesting performance ensures high evaporation cooling power without the need for manual water replenishment. As a result, the composite effectively lowers the temperature of outdoor heavy‐load power equipment (e.g., transformers) by 25.3 °C. The excellent heat dissipation properties of the composite make it a powerful tool in safeguarding electrical systems.
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