首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Spectrally selective filter design for passive radiative cooling
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Spectrally selective filter design for passive radiative cooling

机译:被动辐射冷却的光谱选择性滤波器设计

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Radiative cooling is potentially one of the most innovative approaches to reducing energy density in buildings and industry, as well as achieving higher levels of energy efficiency. Several studies have reported the design of spectrally selective layered structures for daytime passive radiative cooling. However, a comprehensive design of such systems requires the spectral behavior of different materials and radiative heat transfer mechanisms to be addressed together. Here, we introduce a design methodology for daytime passive radiative cooling with thin film filters which accounts for the spectral tailoring at the visible and infrared spectrum. The major difference of this method is that it does not require a predefined target ideal emittance. The results show that higher cooling powers are possible compared to the previously reported thin-film structures, which were designed from a purely spectral perspective. The underlying mechanisms of the resulting spectral profiles, which give rise to improved performance, are investigated by wave impedance analysis. Cooling powers up to 100 W/m(2) are obtained with seven layers on Ag. The findings of this study indicate that structures with better performance in terms of cooling powers and temperature reduction rates can be obtained following the procedure discussed. (C) 2020 Optical Society of America
机译:辐射冷却可能是降低建筑物和工业中能量密度的最具创新性的方法之一,以及实现更高水平的能效。几项研究报道了用于白天被动辐射冷却的光谱选择性层状结构的设计。然而,这种系统的综合设计需要不同材料的光谱行为和辐射传热机制将一起寻址。在这里,我们介绍了一天的设计方法,用于白天被动辐射冷却,薄膜过滤器占可见光和红外光谱的光谱剪裁。这种方法的主要区别在于它不需要预定义的目标理想的发射率。结果表明,与先前报道的薄膜结构相比,可以实现更高的冷却功率,这是由纯粹的光谱透视设计的。通过波阻抗分析研究了产生的光谱分布的潜在机制,其产生改善的性能。高达100W / m(2)的冷却功率以七层Ag获得。该研究的结果表明,在讨论的过程之后,可以获得具有更好的冷却功率和降温速率的结构。 (c)2020美国光学学会

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