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Radiative cooling of solar absorbers using a visibly transparent photonic crystal thermal blackbody

机译:使用可见光透明的光子晶体热黑体对太阳能吸收器进行辐射冷却

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摘要

A solar absorber, under the sun, is heated up by sunlight. In many applications, including solar cells and outdoor structures, the absorption of sunlight is intrinsic for either operational or aesthetic considerations, but the resulting heating is undesirable. Because a solar absorber by necessity faces the sky, it also naturally has radiative access to the coldness of the universe. Therefore, in these applications it would be very attractive to directly use the sky as a heat sink while preserving solar absorption properties. Here we experimentally demonstrate a visibly transparent thermal blackbody, based on a silica photonic crystal. When placed on a silicon absorber under sunlight, such a blackbody preserves or even slightly enhances sunlight absorption, but reduces the temperature of the underlying silicon absorber by as much as 13 °C due to radiative cooling. Our work shows that the concept of radiative cooling can be used in combination with the utilization of sunlight, enabling new technological capabilities.
机译:阳光下的太阳能吸收器被阳光加热。在包括太阳能电池和室外结构在内的许多应用中,出于操作或美观方面的考虑,阳光的吸收是固有的,但是所产生的热量是不希望的。因为太阳能吸收器必然面向天空,所以它自然也具有辐射辐射进入宇宙的寒冷的通道。因此,在这些应用中,直接使用天空作为散热器同时保持太阳吸收性能将是非常有吸引力的。在这里,我们通过实验证明了一种基于二氧化硅光子晶体的可见透明热黑体。当放置在阳光下的硅吸收器上时,这种黑体会保留甚至略微增强太阳光的吸收,但是由于辐射冷却,其下层硅吸收器的温度降低了13°C。我们的工作表明,辐射冷却的概念可以与利用太阳光结合使用,从而实现新的技术能力。

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