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Environmental effect on the performance of passive daytime photonic radiative cooling and building energy-saving potential

机译:对无源白天光子辐射冷却和建筑节能潜力性能的环境影响

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Passive photonic radiative cooling is used to make sky exposed surfaces sub-ambient with recent development in metamaterials throughout the day and night cycle. Daytime radiative cooling depends on the intensity of solar radiation, and both daytime and nighttime radiative coolings have a function of environmental factors like ambient temperature, humidity, wind velocity, cloud fraction, etc. Hence, the passive radiative coolers have location-specific performance and need analysis individually for a location before implementation. In this paper, the potential of passive radiative cooling for Indian cities of various climatic conditions covering maximum climate diversity is evaluated for different (ideal, broadband and selective) emissive radiative cooler surfaces. The effects of various environmental parameters on the cooler performance are studied. The cooling energy-saving potentials of various photonic radiative coolers as roof envelope integrated with the conventional air conditioning system are evaluated as well. Results reveal that the selective radiative cooler performs better in low humidity locations, namely Jaisalmer and Delhi, with maximum temperature drops of 20.6 degrees C and 17.3 degrees C, respectively. However, it is less likely to recommend for monsoon season and high humid cities. The cooling load reduction of 36% observed for low humidity locations with an integrated system. (C) 2020 Elsevier Ltd. All rights reserved.
机译:被动光子辐射冷却用于使天空暴露的表面与全天和夜周期内的超级材料开发的亚环境。白天辐射冷却取决于太阳辐射的强度,白天和夜间辐射冷却都具有环境因素,如环境温度,湿度,风速,云分数等。因此,被动辐射冷却器具有特定于位置特异性的性能和在实施前单独进行分析。在本文中,针对不同(理想,宽带和选择性)发光辐射冷却器表面评估了涵盖最大气候多样性的各种气候条件的印度城市被动辐射冷却的潜力。研究了各种环境参数对冷却器性能的影响。还评估了各种光子辐射冷却器的冷却节能电位,作为与传统空调系统集成的屋顶外壳。结果表明,选择性辐射冷却器在低湿度位置,即jaisalmer和德里的低湿度,最高温度下降分别为20.6摄氏度和17.3摄氏度。但是,它不太可能推荐季风季节和高潮湿的城市。用集成系统的低湿度位置观察到的36%的冷却负荷减少36%。 (c)2020 elestvier有限公司保留所有权利。

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