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Numerical evaluation of the mixed convective heat transfer in a double-pane window integrated with see-through a-Si PV cells with low-e coatings

机译:双窗格窗口中混合对流传热的数值评估,该窗口与带有低辐射涂层的透明a-Si PV电池集成在一起

摘要

This study presents a two-dimensional numerical analysis for thermal control strategies on potential energy savings in a double-pane window integrated with see-through a-Si photovoltaic (PV) cells with low-emittance (low-e) coatings. Both heat transmission through the air gap by combined convection and radiation, and air flow patterns within the cavity of the window were considered. The convection-conducting mechanisms in the cavity of the double-pane window have been closely investigated in this paper. Based on numerical predictions, the effect of Rayleigh number on airflow patterns was investigated for low Rayleigh numbers in the range of 10 3Ra10 5. The effect of the low-e coatings on the glazing U-value was also explored in this paper. It was found that a large quantity of heat transfer by radiation could be reduced. This novel glazing system could help engineers' design in more advanced window systems with building-integrated photovoltaic (BIPV) applications in modern buildings.
机译:这项研究提出了一个二维数值分析,用于热控制策略在与低透射率(low-e)涂层的透明a-Si光伏(PV)电池集成的双窗格窗口中的潜在节能效果。考虑了通过对流和辐射相结合的方式通过气隙的热传递,以及窗腔内的空气流动模式。本文对双层玻璃窗腔内的对流传导机理进行了深入研究。基于数值预测,研究了在10 3Ra10 5范围内低瑞利数下瑞利数对气流模式的影响。本文还探讨了低e涂层对玻璃U值的影响。已经发现,可以减少通过辐射的大量热传递。这种新颖的玻璃系统可以帮助工程师在更先进的窗户系统中进行设计,并在现代建筑中使用建筑物集成的光伏(BIPV)应用。

著录项

  • 作者

    Han J; Lu L; Yang H;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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