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Radiative Cooling: Principles Progress and Potentials

机译:辐射冷却:原理进展和潜力

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摘要

The recent progress on radiative cooling reveals its potential for applications in highly efficient passive cooling. This approach utilizes the maximized emission of infrared thermal radiation through the atmospheric window for releasing heat and minimized absorption of incoming atmospheric radiation. These simultaneous processes can lead to a device temperature substantially below the ambient temperature. Although the application of radiative cooling for nighttime cooling was demonstrated a few decades ago, significant cooling under direct sunlight has been achieved only recently, indicating its potential as a practical passive cooler during the day. In this article, the basic principles of radiative cooling and its performance characteristics for nonradiative contributions, solar radiation, and atmospheric conditions are discussed. The recent advancements over the traditional approaches and their material and structural characteristics are outlined. The key characteristics of the thermal radiators and solar reflectors of the current state‐of‐the‐art radiative coolers are evaluated and their benchmarks are remarked for the peak cooling ability. The scopes for further improvements on radiative cooling efficiency for optimized device characteristics are also theoretically estimated.
机译:辐射冷却的最新进展表明了其在高效被动冷却中的应用潜力。该方法利用通过大气窗口的红外热辐射的最大发射来释放热量,并最小化入射大气辐射的吸收。这些同时进行的过程可能导致器件温度大大低于环境温度。尽管几十年前就已经证明了将辐射冷却用于夜间冷却的方法,但是直到最近才在直接日光下实现了显着的冷却,这表明它有可能成为白天实用的被动冷却器。在本文中,讨论了辐射冷却的基本原理及其对非辐射,太阳辐射和大气条件的性能特征。概述了传统方法的最新进展及其材料和结构特征。对当前最先进的辐射冷却器的散热器和太阳能反射器的关键特性进行了评估,并标出了其峰值冷却能力的基准。从理论上也可以估算出进一步提高辐射冷却效率以优化器件特性的范围。

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