热的
电子设备和系统的热管理
环境科学
热舒适性
相变
蒸发冷却器
被动冷却
材料科学
润湿
辐射冷却
消散
水冷
能源消耗
水平衡
水运
传热
用水量
机械工程
能量平衡
计算机科学
湿度
热质量
建筑工程
作者
Xi Zhang,Weimin Tao,Meijie Chen
摘要
ABSTRACT The maintenance of human thermal balance primarily relies on the “Skin–Textile–Environment” system. Given that regulating ambient temperature via air conditioning and other cooling devices exacerbates global energy consumption and climate warming, personal thermal management (PTM) textiles have attracted more attention in recent years. Theoretically, high‑performance PTM textiles can precisely regulate body temperature and humidity while maintaining reliable wearability. Considering the generally higher demand for cooling, this review elaborates on the design principles and methods of radiative cooling textiles from three perspectives: spectral regulation, directional water transport, and dynamic thermal regulation. In detail, based on indoor and outdoor environments, spectral regulation can be categorized into transmission‐type, emission‐type, and selective emission‐type. Directional water transport for evaporative cooling is classified into bilayer Janus, wettability gradient, and heterogeneous structures according to structural design. Dynamic thermal regulation includes adding phase change materials, setting up heat dissipation windows, and preparing double‐layer reversible fabrics, and so on. Furthermore, key challenges and insights are outlined in the future development of PTM textiles.
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