| 注册
首页|期刊导航|表面技术|Daytime Radiative Cooling:Artificial and Bioinspired Strategies

Daytime Radiative Cooling:Artificial and Bioinspired Strategies

李亚楠 Shuo-ran CHEN 王钻开

表面技术2021,Vol.50Issue(10):1-15,15.
表面技术2021,Vol.50Issue(10):1-15,15.DOI:10.16490/j.cnki.issn.1001-3660.2021.10.001

Daytime Radiative Cooling:Artificial and Bioinspired Strategies

Daytime Radiative Cooling: Artificial and Bioinspired Strategies

李亚楠 1Shuo-ran CHEN 1王钻开1

作者信息

  • 折叠

摘要

Abstract

Traditional cooling systems have been posing a significant challenge to the global energy crisis and climate change due to the high energy consumption of the cooling process. In recent years, the emerging daytime radiative cooling provides a promising solution to address the bottleneck of traditional cooling technology by passively dissipating heat radiation to outer space without any energy consumption through the atmospheric transparency window (8~13 μm). Whereas its stringent optical criteria require sophisticated and high cost fabrication producers, which hinders the applicability of radiative cooling technology. Many efforts have been devoted to develop high-efficiency and low-cost daytime radiative cooling technologies for practical application, including the nanophotonics based artificial strategy and bioinspired strategy. In order to systematically summarize the development and latest advance of daytime radiative cooling to help developing the most promising approach, here in this paper we will review and compare the two typical strategies on exploring the prospect approach for applicable radiative cooling technology. We will firstly sketch the fundamental of radiative cooling and summarize the common methods for construction radiative cooling devices. Then we will put an emphasis on the summarization and comparison of the two strategies for designing the radiative cooling device, and outlook the prospect and extending application of the daytime radiative cooling technology.

关键词

bioinspired material/radiative cooling/thermal radiation/nanophotonics/thermal photonics

Key words

bioinspired material/radiative cooling/thermal radiation/nanophotonics/thermal photonics

分类

生物科学

引用本文复制引用

李亚楠,Shuo-ran CHEN,王钻开..Daytime Radiative Cooling:Artificial and Bioinspired Strategies[J].表面技术,2021,50(10):1-15,15.

基金项目

中山大学百人计划启动经费支持(76110-18841234,76110-18841290) (76110-18841234,76110-18841290)

中山大学中央高校基本科研业务费专项资金资助(2021qntd13,76110-31610017) (2021qntd13,76110-31610017)

香江学者计划经费资助(9042533) (9042533)

国家自然科学基金资助(52103153,31771083,51975502,51975215)Supported by the Start-up Fund of Sun Yat-Sen University(76110-18841234,76110-18841290) (52103153,31771083,51975502,51975215)

the Fundamental Research Funds for the Central Universities,Sun Yat-Sen University(2021qntd13,76110-31610017) (2021qntd13,76110-31610017)

Hong Kong Scholar Program(9042533) (9042533)

National Natural Science Foundation of China(52103153,31771083,51975502,51975215) (52103153,31771083,51975502,51975215)

表面技术

OA北大核心CSCDCSTPCD

1001-3660

访问量0
|
下载量0
段落导航相关论文