Tandem of conduction and radiation for solar-adaptive cooling blocks composed of recycled fabric.

Gunwoo Kim,Sudip Kumar Pal, Tohid Otoufat, Hoyeon Bae, Sungkwon Lee,Hoik Lee

Research Square (Research Square)(2023)

引用 0|浏览1
暂无评分
摘要
Abstract Radiative cooling technologies have had a significant impact on advancing carbon neutrality efforts by significantly improving passive cooling efficiency. The tandem of conduction and radiation enables the solar-adaptive radiative cooling through the insulating effect of materials along with solar absorption, which affects the thermal state of materials and enhances radiative thermal transfer from the surface under solar irradiation. This enhancement is achieved by utilizing the porous polymeric structure of materials, which facilitates improved conduction pathways along with solar reflectance while maintaining the effective emission of thermal radiation. In this particular scenario, blocks, which was made of recycled fibers, offer a great opportunity as solar-adaptive cooling materials, enabling their easy deployment for cooling applications. Herein, we have fabricated a porous block using fiber wastes that combines strong solar reflectance (92%), high thermal infrared emittance (~ 80%). The combination of effective solar reflection and thermal-infrared emission allows the fiber block to achieve high cooling performance of approximately 240 W/m² under solar irradiation. In addition, the fiber block works effectively for insulation during the night, thereby enhancing its heat retention capabilities. The economic and environmental advantages of the fiber block make it a cost-competitive and sustainable choice for near-market cooling technologies. This design is anticipated to expand the practical application range of passive cooling.
更多
查看译文
关键词
recycled fabric,cooling,solar-adaptive
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要