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Passive radiative cooling design with broadband optical thin-film filters

机译:具有宽带光学薄膜过滤器的被动辐射冷却设计

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The operation of most electronic semiconductor devices suffers from the self-generated heat. In the case of photovoltaic or thermos-photovoltaic cells, their exposure to sun or high temperature sources make them get warm beyond the desired operating conditions. In both incidences, the solution strategy requires effective radiative cooling process, i.e., by selective absorption and emission in predetermined spectral windows. In this study, we outline two approaches for alternative 2D thin film coatings, which can enhance the passive thermal management for application to electronic equipment. Most traditional techniques use a metallic (silver) layer because of their high reflectivity, although they display strong absorption in the visible and near-infrared spectrums. We show that strong absorption in the visible and near-infrared spectrums due to a metallic layer can be avoided by repetitive high index-low index periodic layers and broadband reflection in visible and near-infrared spectrums can still be achieved. These modifications increase the average reflectance in the visible and near-infrared spectrums by 3-4%, which increases the cooling power by at least 35 W/m(2). We also show that the performance of radiative cooling can be enhanced by inserting an Al2O3 film (which has strong absorption in the 8-13 mu m spectrum, and does not absorb in the visible and near-infrared) within conventional coating structures. These two approaches enhance the cooling power of passive radiative cooling systems from the typical reported values of 40 W/m(2)-100 W/m(2) and 65 W/m(2) levels respectively. (C) 2017 Elsevier Ltd. All rights reserved.
机译:大多数电子半导体器件的操作遭受自生物的热量。在光伏或热敏光伏电池的情况下,它们暴露于阳光或高温源使其使其温热超出所需的操作条件。在两种发生中,解决方案策略需要有效的辐射冷却过程,即通过预定光谱窗口中的选择性吸收和发射。在这项研究中,我们概述了两种方法,可用于替代的2D薄膜涂层,这可以增强用于应用于电子设备的被动热管理。尽管它们在可见光和近红外光谱中显示出强烈的吸收,但大多数传统技术都使用金属(银)层。我们表明,通过重复的高指数 - 低指数周期层可以避免由于金属层的可见和近红外光谱中的可见和近红外光谱的强烈吸收,并且仍然可以实现可见光和近红外光谱中的宽带反射。这些修改将可见光和近红外光谱中的平均反射率提高3-4%,其将冷却功率增加至少35W / m(2)。我们还表明,通过插入Al2O3膜(在8-13μm光谱中具有很强的吸收,并且在传统的涂布结构中,可以增强辐射冷却的性能。这两种方法分别增强了无源辐射冷却系统的冷却功率,分别从典型的报告值40W / m(2)-100W / m(2)和65W / m(2)水平。 (c)2017 Elsevier Ltd.保留所有权利。

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