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Effect of surface roughening on increasing the spectral selectivity of cermet solar selective absorbers

机译:表面粗糙化对提高金属陶瓷太阳能选择性吸收剂光谱选择性的影响

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The spectral selectivity of Cu-Al{sub}2O{sub}3 cermet solar absorbers was studied theoretically and experimentally in different layer designs. The results showed clearly that, by increasing the substrate temperature during film deposition, the desired random roughness features will be created on the surface of the cermet, which leads to higher selectivity. Theoretical simulation showed that a single cermet structure with the assistance of an anti-reflection layer, results in the best optical properties. Instead of such a structure, which is sensitive to fine thickness control, it was tried experimentally to increase the selectivity of a single cermet structure as much as possible using a roughness template layer. Surface roughening using such a layer design increased the solar absorptance from 0.840 to 0.956 while keeping the thermal emittance almost unchanged at about 0.028.
机译:对Cu-Al {sub} 2O {sub} 3金属陶瓷太阳能吸收剂在不同层设计中的光谱选择性进行了理论和实验研究。结果清楚地表明,通过在膜沉积过程中提高基板温度,可以在金属陶瓷的表面上产生所需的随机粗糙度特征,从而导致更高的选择性。理论仿真表明,在抗反射层的帮助下,单一金属陶瓷结构具有最佳的光学性能。代替这种对精细厚度控制敏感的结构,已尝试通过使用粗糙度模板层来尽可能提高单个金属陶瓷结构的选择性。使用这样的层设计的表面粗糙化使太阳吸收率从0.840增加到0.956,同时保持热发射率几乎不变在约0.028。

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