可扩展性
能源消耗
功率(物理)
零能耗建筑
热的
热能
模式(计算机接口)
辐射冷却
能量(信号处理)
材料科学
环境科学
能源管理
高效能源利用
零点能量
对偶(语法数字)
核工程
计算机科学
模拟
电气工程
热力学
物理
工程类
艺术
文学类
量子力学
数据库
操作系统
作者
Quan Zhang,Yiwen Lv,Yufeng Wang,Shixiong Yu,Chenxi Li,Rujun Ma,Yongsheng Chen
标识
DOI:10.1038/s41467-022-32528-1
摘要
Abstract Reducing needs for heating and cooling from fossil energy is one of the biggest challenges, which demand accounts for almost half of global energy consumption, consequently resulting in complicated climatic and environmental issues. Herein, we demonstrate a high-performance, intelligently auto-switched and zero-energy dual-mode radiative thermal management device. By perceiving temperature to spontaneously modulate electromagnetic characteristics itself, the device achieves ~859.8 W m −2 of average heating power (∼91% of solar-thermal conversion efficiency) in cold and ~126.0 W m −2 of average cooling power in hot, without any external energy consumption during the whole process. Such a scalable, cost-effective device could realize two-way temperature control around comfortable temperature zone of human living. A practical demonstration shows that the temperature fluctuation is reduced by ~21 K, compared with copper plate. Numerical prediction indicates that this real zero-energy dual-mode thermal management device has a huge potential for year-round energy saving around the world and provides a feasible solution to realize the goal of Net Zero Carbon 2050.
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