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具有净零能耗的温度依赖型双模热管理装置,可全年节能。

Temperature-dependent dual-mode thermal management device with net zero energy for year-round energy saving.

作者信息

Zhang Quan, Lv Yiwen, Wang Yufeng, Yu Shixiong, Li Chenxi, Ma Rujun, Chen Yongsheng

机构信息

School of Materials Science and Engineering, National Institute for Advanced Materials, Nankai University, Tongyan Road 38, Tianjin, 300350, P. R. China.

State Key Laboratory and Institute of Elemento-Organic Chemistry, Centre of Nanoscale Science and Technology and Key Laboratory of Functional Polymer Materials, College of Chemistry, Nankai University, Tianjin, 300071, P. R. China.

出版信息

Nat Commun. 2022 Aug 19;13(1):4874. doi: 10.1038/s41467-022-32528-1.

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 of average heating power (∼91% of solar-thermal conversion efficiency) in cold and ~126.0 W m 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.

摘要

减少化石能源供暖和制冷需求是最大的挑战之一,其需求占全球能源消耗近一半,从而导致复杂的气候和环境问题。在此,我们展示了一种高性能、智能自动切换且零能耗的双模式辐射热管理装置。该装置通过感知温度自发调节自身电磁特性,在寒冷环境中实现约859.8 W m的平均加热功率(太阳能-热转换效率约为91%),在炎热环境中实现约126.0 W m的平均冷却功率,整个过程无需任何外部能源消耗。这种可扩展、经济高效的装置可在人类居住的舒适温度区间实现双向温度控制。实际演示表明,与铜板相比,温度波动降低了约21 K。数值预测表明,这种真正的零能耗双模式热管理装置在全球全年节能方面具有巨大潜力,并为实现2050年净零碳目标提供了可行的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ebb/9391366/58258bcca344/41467_2022_32528_Fig1_HTML.jpg

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