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Effect of fenestration geometrical factors on building energy consumption and performance evaluation of a new external solar shading device in warm and humid climatic condition

机译:开窗几何因素对建筑物能耗的影响以及新型湿热气候室外遮阳装置的性能评估

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摘要

Glazed facades are being increasingly used in modern buildings in order to improve the daylight availability in the interiors, offer better external views and also add to the architectural beauty of the building. However this increased usage of glazed facades is leading to higher solar gain inside the building which is becoming a major issue in hot climatic regions. External shadings are thus used to protect the buildings from direct solar radiation which cause high solar gain as well as discomfort due to glare. The present study summarizes the effect of geometrical factors like window to wall ratio (WWR) and window positioning on the heating, cooling and lighting energy consumption of a South facing building cell in warm and humid climate. The performances of different commonly used external solar shading devices have been compared. The study also proposes the design of an external shading device which, when compared with the existing shading designs, leads to reduction in annual energy consumption of the building. The simulations were carried out using building energy simulation program EnergyPlus for the warm and humid climate of Kolkata, India. In order to validate the applicability of the new shading in other locations experiencing similar climate, the performance of the proposed shading was also evaluated for two other locations-Naples in USA and Hanoi in Vietnam. In both of these cases the new shading offered better performance than the other existing shading designs.
机译:玻璃幕墙正越来越多地用于现代建筑中,以改善室内的日光利用率,提供更好的外部视野并增加建筑的建筑美感。然而,这种增加的玻璃幕墙使用量导致建筑物内更高的太阳能获取,这在炎热的气候区域成为一个主要问题。因此,外部遮阳用于保护建筑物免受太阳直射辐射的侵害,因为太阳直射辐射会导致高太阳光吸收以及由于眩光而引起的不适感。本研究总结了在温暖湿润的气候下,朝南建筑单元的采暖,制冷和照明能源消耗等几何因素对窗墙比(WWR)和窗位置的影响。比较了不同的常用外部遮阳设备的性能。该研究还提出了一种外部遮阳设备的设计,与现有的遮阳设计相比,它可以减少建筑物的年度能耗。使用用于印度加尔各答温暖湿润气候的建筑能源模拟程序EnergyPlus进行了模拟。为了验证这种新型遮阳在其他气候相似地区的适用性,还对另外两个地点(美国那不勒斯和越南河内)进行了评估。在这两种情况下,新的遮阳都比其他现有的遮阳设计提供更好的性能。

著录项

  • 来源
    《Solar Energy》 |2018年第7期|94-104|共11页
  • 作者

    Ghosh Amrita; Neogi Subhasis;

  • 作者单位

    Jadavpur Univ, Sch Energy Studies, Kolkata 700032, India;

    Jadavpur Univ, Sch Energy Studies, Kolkata 700032, India;

  • 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

    Building; Window; Shading; Energy;

    机译:建筑;窗户;阴影;能源;

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