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Comprehensive analysis on thermal and daylighting performance of glazing and shading designs on office building envelope in cooling-dominant climates

机译:在制冷为主的气候条件下,对办公建筑围护结构上的玻璃和遮阳设计的热和采光性能进行综合分析

摘要

Conducting energy-efficient designs on building window can be a solution to relieving the pressure caused by growing building energy consumption. In this paper, a series of simulation studies were carried out to evaluate the performance of several popular energy-efficient window designs in cooling-dominant climates. Both thermal and daylighting performance were considered during the analysis. Results indicate that among all designs studied, low-e glazing achieves a best performance, while double-layer glazing performs the worst. Energy-efficient designs on the east and west orientations are the most cost-effective in cooling-dominant climates. As latitude rises, the performance of window designs on the south orientation is getting better. It is also discovered that only in area very close to equator performance of north facing window designs is satisfactory. Furthermore, as the reflectivity of blind louver decreases, both thermal and daylighting performances drop.
机译:在建筑物窗户上进行节能设计可以缓解由建筑能耗增加引起的压力。在本文中,进行了一系列模拟研究,以评估几种流行的节能窗户设计在制冷为主的气候中的性能。分析期间同时考虑了热性能和采光性能。结果表明,在所有研究的设计中,低辐射玻璃的性能最佳,而双层玻璃的性能最差。在以降温为主的气候中,东西方向的节能设计是最具成本效益的。随着纬度的上升,朝南的窗户设计的性能会越来越好。还发现仅在非常接近朝北窗户设计的赤道性能的区域中才是令人满意的。此外,随着百叶窗板反射率的降低,热性能和采光性能均下降。

著录项

  • 作者

    Huang Y; Niu JL; Chung TM;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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