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Cooling potential and applications prospects of passive radiative cooling in buildings: The current state-of-the-art

机译:建筑物中被动辐射制冷的制冷潜力和应用前景:当前的最新水平

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摘要

The universe can be utilized as a sink for heat pumping by means of passive radiative cooling (PRC). This approach is an age-old cooling practice that has had a renaissance with increasing numbers of research papers over the past two decades. This paper reviews the trends of this technique, as well as advancements in recent years, with an attempt being made to analyze the cooling magnitude and developmental prospects for both diurnal and nocturnal periods. The models and calculations for computing the performances of passive radiative cooling systems are discussed along with the designs and fabrication factors that influence a system's performance. Optimizing strategies that maximize the net cooling power are also presented. The various system configurations that are available to date are summarized to demonstrate the building integration forms of PRC systems. The cooling potentials of different systems are assessed by simulations, and it is shown that the daytime cooling energy density is rather modest, even under the most favorable conditions. The barriers that likely exist to widespread application as well as the scopes for further improvements of PRC are also provided. It is noted that the commercialization of PRC systems is primarily limited by coating material constraints and technique reliability. The advent of a new type of material will be a critical solution to the prevalence of PRC. (C) 2016 Elsevier Ltd. All rights reserved.
机译:宇宙可通过被动辐射冷却(PRC)用作热泵的散热器。这种方法是一种古老的冷却方法,在过去的二十年中,随着越来越多的研究论文而复兴。本文回顾了该技术的趋势以及近年来的发展,并试图分析昼夜节律的降温幅度和发展前景。讨论了用于计算被动辐射冷却系统性能的模型和计算,以及影响系统性能的设计和制造因素。还提出了使净冷却功率最大化的优化策略。总结了迄今为止可用的各种系统配置,以演示PRC系统的建筑集成形式。通过仿真评估了不同系统的冷却潜力,结果表明,即使在最有利的条件下,白天的冷却能量密度也相当适中。还提供了可能被广泛应用的障碍以及PRC进一步改进的范围。应当指出,PRC系统的商业化主要受到涂层材料限制和技术可靠性的限制。新型材料的问世将是解决PRC盛行的关键解决方案。 (C)2016 Elsevier Ltd.保留所有权利。

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