基于Fabry-Perot谐振腔的高温选择性太阳能吸热器

Hao Wang, Liping Wang
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引用次数: 2

摘要

在这项工作中,我们研究了由金属和介电薄膜制成的多层选择性太阳能吸收体的设计,制造和表征。由于法布里-珀罗共振和抗反射效应,所研究的选择性吸收剂在太阳光谱范围内的理论光谱吸收率高于95%,红外发射率低于5%。在制造方面,不同的材料在高温下进行测试,以获得具有最佳热稳定性的结构。利用溅射、化学气相沉积和电子束蒸发技术制备了不同材料的结构。用傅里叶变换红外光谱仪对热处理前后结构的近法向反射率进行了表征。同时,利用卢瑟福后向散射光谱分析了加热过程中的扩散和氧化条件。此外,还考虑了更好的材料选择和制造技术,以构建具有更好的高温热稳定性的太阳能吸收体样品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-temperature selective solar thermal absorber based on Fabry-Perot resonance cavity
In this work, we investigate the design, fabrication and characterization of a multilayer selective solar absorber made of metallic and dielectric thin films. The investigated selective absorber exhibits theoretical spectral absorptance higher than 95% within solar spectrum and infrared emittance lower than 5%, due to the Fabry-Perot resonance and antireflection effect. In terms of fabrication, different materials are tested under high temperatures in order to obtain the structure with best thermal stability. Structures with different materials are fabricated with sputtering, chemical vapor deposition and electron beam evaporation techniques. The near normal reflectance is characterized with a Fourier Transform Infrared spectrometer for these structures before and after heat treatment. Meanwhile, Rutherford backscattering Spectroscopy is employed to analyze the diffusion and oxidation conditions during the heating process. Moreover, better material choice and fabrication techniques are considered to construct solar absorber sample with better high temperature thermal stability.
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