首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Comparison of vacuum glazing thermal performance predicted using two- and three-dimensional models and their experimental validation
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Comparison of vacuum glazing thermal performance predicted using two- and three-dimensional models and their experimental validation

机译:二维和三维模型预测的真空玻璃热性能的比较及其实验验证

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摘要

Thermal performance of vacuum glazing predicted by using two-dimensional (2-D) finite element and three-dimensional (3-D) finite volume models are presented. In the 2-D model, the vacuum space, including the pillar arrays, was represented by a material whose effective thermal conductivity was determined from the specified vacuum space width, the heat conduction through the pillar array and the calculated radiation heat transfer between the two interior glass surfaces within the vacuum gap. In the 3-D model, the support pillar array was incorporated and modelled within the glazing unit directly. The predicted difference in overall heat transfer coefficients between the two models for the vacuum window simulated was less than 3%. A guarded hot box calorimeter was used to determine the experimental thermal performance of vacuum glazing. The experimentally determined overall heat transfer coefficient and temperature profiles along the central line of the vacuum glazing are in very good agreement with the predictions made using the 2-D and 3-D models.
机译:提出了利用二维(2-D)有限元和三维(3-D)有限体积模型预测的真空玻璃的热性能。在二维模型中,包括柱阵列的真空空间由一种材料表示,该材料的有效导热率是由指定的真空空间宽度,通过柱阵列的热传导以及计算的两者之间的辐射热传递确定的真空间隙内的玻璃内部表面。在3-D模型中,将支撑柱阵列直接合并到玻璃单元中并建模。对于模拟的真空窗口,两个模型之间的总传热系数的预计差异小于3%。使用带防护的热箱量热仪确定真空玻璃的实验热性能。实验确定的沿着真空玻璃中心线的整体传热系数和温度曲线与使用2-D和3-D模型所做的预测非常吻合。

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