可扩展性
容错
辐射传输
纳米材料
计算机科学
分布式计算
材料科学
环境科学
并行计算
物理
纳米技术
光学
数据库
作者
Bin Li,Jiaqi Hu,Changhao Chen,Hengren Hu,Yetao Zhong,Ruichen Song,Boyu Cao,Yunqi Peng,Xusheng Xia,Kai Chen,Zhilin Xia
标识
DOI:10.1515/nanoph-2023-0739
摘要
Abstract Conventional static radiative coolers have an unadjustable cooling capacity, which often results in overcooling in low temperature environment. Therefore, there is a great need for an adaptive dynamic radiative cooler. However, such adaptive coolers usually require complex preparation processes. This paper proposes an adaptive radiative cooler based on a Fabry–Perot resonant cavity. By optimizing the structural parameters of the radiative cooler, this adaptive radiative cooler achieves a modulation rate of 0.909 in the atmospheric window band. The net radiative cooling performance difference between low and high temperatures is nearly eight times. Meanwhile, the device is easily prepared, has a high tolerance, and can effectively prevent W–VO 2 oxidation. This study provides new insights into adaptive radiative cooling with potential for large-scale applications.
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