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Second-Surface Silvered Glass Solar Mirrors of Very High Reflectance

机译:高反射率的第二面镀银玻璃太阳镜

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摘要

This paper reports methods developed to maximize the overall reflectance second-surface silvered glass. The reflectance at shorter wavelengths is increased with the aid of a dielectric enhancing layer between the silver and the glass, while at longer wavelengths it is enhanced by use of glass with negligible iron content. The calculated enhancement of reflectance, compared to unenhanced silver on standard low-iron float glass, corresponds to a 4.4% increase in reflectance averaged across the full solar spectrum, appropriate for CSP, and 2.7% for CPV systems using triple junction cells. An experimental reflector incorporating these improvements, of drawn crown glass and a silvered second-surface with dielectric boost, was measured at NREL to have 95.4% solar weighted reflectance. For comparison, non-enhanced, wet-silvered reflectors of the same 4 mm thickness show reflectance ranging from 91.6 - 94.6%, depending on iron content. A potential drawback of using iron-free drawn glass is reduced concentration in high concentration systems because of the inherent surface errors. This effect is largely mitigated for glass shaped by slumping into a concave mold, rather than by bending.
机译:本文介绍了为最大限度提高第二面镀银玻璃的总反射率而开发的方法。借助于银和玻璃之间的介电增强层,可以在较短波长下提高反射率,而在较长波长下,通过使用铁含量可忽略不计的玻璃可以提高反射率。与标准低铁浮法玻璃上未增强的银相比,计算得出的反射率提高对应于整个太阳光谱的平均反射率提高4.4%(适用于CSP),而使用三结电池的CPV系统则提高2.7%。在NREL上测量了结合了这些改进的实验性反射器,该反射器包括拉制的冠状玻璃和带有电介质增强功能的镀银第二表面,具有95.4%的日光加权反射率。为了进行比较,相同厚度为4毫米的未增强的湿镀银反射镜的反射率范围为91.6-94.6%,具体取决于铁含量。使用无铁拉丝玻璃的潜在缺点是,由于固有的表面误差,在高浓度系统中浓度降低。对于通过塌陷到凹形模具中而不是通过弯曲而成形的玻璃,这种效果大大减轻了。

著录项

  • 来源
    《》|2011年|p.81080L.1-81080L.9|共9页
  • 会议地点 San Diego CA(US)
  • 作者单位

    College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., Tucson, AZ, USA 85721;

    College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., Tucson, AZ, USA 85721;

    College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., Tucson, AZ, USA 85721;

    National Renewable Energy Laboratory, 1617 Cole Blvd., Golden, CO, USA 80401-3305;

    Steward Observatory, Univ. of Arizona, 933 North Cherry Ave., Tucson, AZ, USA 85721;

    College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., Tucson, AZ, USA 85721,Steward Observatory, Univ. of Arizona, 933 North Cherry Ave., Tucson, AZ, USA 85721;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 太阳能技术;
  • 关键词

    thin film; silver; high reflectance; concentrating; solar; mirror; reflector; CPV; CSP;

    机译:薄膜;银;高反射率集中太阳镜子;反射器每次观看费用; CSP;

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