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Theoretical and Experimental Study of Spectral Selectivity Surface for Both Solar Heating and Radiative Cooling

机译:太阳加热和辐射冷却的光谱选择性表面的理论和实验研究

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A spectral selectivity surface for both solar heating and radiative cooling was proposed. It has a high spectral absorptivity (emissivity) in the solar radiation band and atmospheric window band (i.e., 0.2~3 μm and 8~13 μm), as well as a low absorptivity (emissivity) in other bands aside from the solar radiation and atmospheric window wavelengths (i.e., 3~8 μm or above 13 μm). A type of composite surface sample was trial-manufactured combining titanium-based solar selective absorbing coating with polyethylene terephthalate (TPET). Sample tests showed that the TPET composite surface has clear spectral selectivity in the spectra of solar heating and radiation cooling wavelengths. The equilibrium temperatures of the TPET surface under different sky conditions or different inclination angles of surface were tested at both day and night. Numerical analysis and comparisons among the TPET composite surface and three other typical surfaces were also performed. These comparisons indicated that the TPET composite surface had a relative heat efficiency of 76.8% of that of the conventional solar heating surface and a relative temperature difference of 75.0% of that of the conventional radiative cooling surface, with little difference in cooling power.
机译:提出了用于太阳能加热和辐射冷却的光谱选择性表面。它在太阳辐射带和大气窗口带(即0.2〜3μm和8〜13μm)中具有高的光谱吸收率(发射率),而在太阳辐射和太阳辐射带以外的其他频带中具有低的吸收率(发射率)。大气窗口波长(即3〜8μm或13μm以上)。试制了一种类型的复合表面样品,将钛基日光选择性吸收涂层与聚对苯二甲酸乙二醇酯(TPET)结合在一起。样品测试表明,TPET复合材料表面在太阳加热和辐射冷却波长的光谱中具有明显的光谱选择性。在白天和晚上都测试了在不同的天空条件下或表面的不同倾斜角度下TPET表面的平衡温度。还进行了TPET复合材料表面和其他三个典型表面之间的数值分析和比较。这些比较表明,TPET复合材料表面的相对热效率为常规太阳能加热表面的76.8%,相对温度差为常规辐射冷却表面的75.0%,而冷却功率几乎没有差异。

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