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Convective heat transfer in domed skylight cavities

机译:天窗型腔中的对流传热

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摘要

Domed skylights are important architectural design elements that deliver daylight and solar heat into buildings, and connect the building's occupants to the outdoor environment. Despite the widespread use of domed skylights, there is limited information on the convective heat transfer within cavities of multi-glazed domes. This information is required to evaluate the thermal performance of domed skylights for product rating purposes, or to evaluate the heat loss or gain of installed skylights in buildings. This article presents a numerical study on the laminar natural convection in horizontal concentric domed cavities heated from the inside surface. A commercial CFD package is used to solve for the flow and temperature fields. The results show that for large cavity gap spacing-to-radius ratios, the cavity flow is mono-cellular and steady state. For small gap spacing ratios, however, the cavity flow may be multi-cellular and transient periodic. Practical correlations for the heat transfer coefficient as a function of the cavity shape and gap spacing ratio are developed for both flow regimes. The critical gap spacing ratio that yields the maximum Nusselt number is quantified for each cavity shape.
机译:圆顶天窗是重要的建筑设计元素,可将日光和太阳热传递给建筑物,并将建筑物的居住者连接到室外环境。尽管穹顶天窗得到了广泛使用,但有关多层玻璃穹顶腔内对流传热的信息有限。需要此信息来评估圆顶天窗的热性能以进行产品评级,或评估建筑物中已安装天窗的热量损失或增加。本文对从内表面加热的水平同心圆拱形腔中的层流自然对流进行了数值研究。商业CFD软件包用于解决流场和温度场。结果表明,对于大的腔隙间距与半径比,腔流是单细胞且稳定的状态。然而,对于小的间隙间隔比,腔流可以是多细胞的并且是瞬时周期性的。在两种流动方式下,都将传热系数作为腔体形状和间隙间距比的函数进行了实用的关联。对于每种腔体形状,可量化产生最大Nusselt数的临界间隙间距比。

著录项

  • 来源
    《Journal of building performance simulation》 |2010年第4期|p.269-287|共19页
  • 作者单位

    Fuel and Fuel Channel Safety Branch, Chalk River Laboratories, Atomic Energy of Canada Ltd, Ontario, K0J 1P0, Canada;

    rnInstitute for Research in Construction, National Research Council of Canada, 1200 Montreal Road, Building M-24, Ottawa,Ontario, K1A 0R6, Canada;

    Department of Mechanical and Industrial Engineering, Ryerson University, 350 Victoria Street,Toronto, Ontario, M5B 2K3, Canada;

    Department of Chemical Engineering, Ryerson University, 350 Victoria Street, Toronto,Ontario, M5B 2K3, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    natural laminar convection; domed cavity; domed skylight; glazing;

    机译:自然层流对流圆顶腔圆顶天窗玻璃;

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