首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Scattering and specular reflection of solar reflector materials - Measurements and method to determine solar weighted specular reflectance
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Scattering and specular reflection of solar reflector materials - Measurements and method to determine solar weighted specular reflectance

机译:太阳能反射器材料的散射和镜面反射 - 测量和测定太阳加权镜面反射的方法

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摘要

Reflector materials directly affect the performance of concentrating solar applications such as solar thermal power plants or process heat installations. For concentrating collectors the specular reflectance and scattering of reflector materials in the near specular range is of special relevance for a good performance. In this article, we show characteristic bidirectional scatter and specular reflectance curves for solar materials, such as glass-based, polymer-based and aluminum-based reflectors, measured using the instrument VLABS, a commercial reflectometer and a spectrophotometer. The solar weighted specular reflectance is a relevant performance indicator, allowing the comparison of the different reflectors. However, usually it is not measured in solar laboratories. This is why this article presents a method for modelling of solar weighted specular reflectance based on hemispheric reflectance and single wavelength measurements. The model applies surface scatter theory and the concept of total integrated scatter. It allows to predict the specular reflectance for the solar spectral range. The application of the model to solar reflector materials with different surface roughness features and the impact of beam spread on the solar weighted specular reflectance is shown. The methodology allows for an improved evaluation and comparison of innovative reflector materials for solar applications.
机译:反射器材料直接影响集中太阳能应用的性能,如太阳能发电厂或工艺暖气装置。为了聚集收集器,近距离镜面范围内反射材料的镜面反射和散射具有特殊相关性,具有良好的性能。在本文中,我们显示了用于太阳能材料的特征双向散射和镜面反射曲线,例如玻璃基,基于聚合物和基于铝基反射器,使用仪器Vlabs,商业反射仪和分光光度计测量。太阳加权镜面反射率是一个相关的性能指标,允许比较不同的反射器。但是,通常它在太阳能实验室中没有测量。这就是为什么本文介绍了一种基于半球反射率和单波长测量来建造太阳加权镜面反射率的方法。该模型应用曲面散射理论和总集成散射的概念。它允许预测太阳光谱范围的镜面反射率。示出了模型在具有不同表面粗糙度特征的太阳能反射器材料和光束对太阳加权镜面反射率的影响。该方法允许改进的评估和比较太阳能应用的创新反射器材料。

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