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Spectral effects on the transmittance, solar heat gain, and performance rating of glazing systems

机译:光谱对玻璃系统的透射率,太阳热增益和性能等级的影响

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摘要

This study investigates the potential changes in Solar Heat Gain Coefficient (SHGC) and Visible Transmittance (VT) ratings of vertical or tilted glazing systems that would result from a deliberate change in the reference spectrum used as Spectral Weighting Function (SWF). This SWF is necessary to evaluate broadband-average optical properties from their spectral values, and obtain the desired rating of such bulk properties. The SWFs currently specified by rating institutions in Europe and North America for SHGC and VT are now outdated, and their inadequacies are discussed. Six potential replacements, which have been recently adopted by ASTM are described, including three direct irradiance spectra and three global irradiance spectrum incident on tilted surfaces of various tilts (20°, 37° and 90°). Some of these spectra have been tailored for use in building energy applications, including Building-Integrated Photovoltaics (BIPV). The effect of tilt on the U-factor and hence SHGC of glazing systems used for skylights on roofs is discussed, using a representative data-set of 37 glazing system specimens. The spectral effects on SHGC induced by a change in the current North American SWF are also obtained for this dataset, and show small to moderate deviations from current ratings (-2% to +7% for windows, and -3% to +11% for skylights). The variations in VT are within ±2% for most glazing systems. To remove the current inconsistency in the SWFs used for SHGC and VT, it is recommended that a single SWF be used for both properties. For improved accuracy and reliance on active standards, it is also recommended that the SWF for SHGC and VT be either one of the two recent ASTM G197-08 global irradiance spectra, depending on application (incidence on a vertical surface for window applications, and incidence on a 20°-tilted surface for skylight applications). No change in colorimetric calculations (based on the D65 illuminant) is recommended, however.
机译:这项研究调查了垂直或倾斜玻璃系统的太阳热增益系数(SHGC)和可见光透射率(VT)等级的潜在变化,这些变化可能是由用作光谱加权函数(SWF)的参考光谱的故意变化引起的。此SWF对于从其光谱值评估宽带平均光学特性并获得此类整体特性的所需额定值而言是必需的。目前,欧洲和北美的评级机构为SHGC和VT指定的SWF已过时,并对其不足之处进行了讨论。描述了ASTM最近已采用的六种潜在替代物,包括三个直接辐照光谱和三个入射在各种倾斜度(20°,37°和90°)的倾斜表面上的全局辐照光谱。这些光谱中的某些光谱是为建筑物能源应用量身定制的,包括建筑集成光伏(BIPV)。利用37个玻璃系统标本的代表性数据集,讨论了倾斜对U因子的影响,以及屋顶天窗玻璃系统的SHGC的影响。此数据集还获得了由当前北美SWF的变化引起的对SHGC的光谱影响,并且显示出与当前额定值的偏差小到中等(对于窗口,偏差为-2%至+ 7%,对于-3%为+ 11%天窗)。对于大多数玻璃系统,VT的变化在±2%以内。要消除用于SHGC和VT的SWF中当前的不一致之处,建议对两个属性都使用一个SWF。为了提高准确性和对现行标准的依赖,还建议将SHGC和VT的SWF用作两个最近的ASTM G197-08全球辐照光谱之一,具体取决于应用程序(窗户应用在垂直表面的入射角和入射角)。在20°倾斜的表面上以用于天窗应用)。但是,建议不要对色度计算进行任何更改(基于D65光源)。

著录项

  • 来源
    《Solar Energy》 |2009年第6期|940-953|共14页
  • 作者单位

    Solar Consulting Services, P.O. Box 392. Colebrook. NH 03576, USA;

    Sunergy Consulting, P.O. Box 4642, Annapolis. MD 21403, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solar spectrum; window; transmittance; solar heat gains; SHGC; BIPV;

    机译:太阳光谱窗口;透射率太阳热量获取;SHGC;太阳能光伏;
  • 入库时间 2022-08-18 00:26:40

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