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Optimization of Windows for Daylighting and Energy Consumption for South Facade in Office Building in Hot and Dry Climate of India

机译:印度炎热干旱气候办公楼南门面卫浴优化窗户

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The windows have a great influence on daylighting in the interior of the building and are considered as an important element for energy-efficient buildings. The size of the opening area, its orientation, and shading device affect the inside illumination. This study assesses the relation between heating, cooling, and daylighting and provides solutions for opening in an office building. The study focuses on the effect of changing Window Wall Ratio (WWR), sill level, window height, number of windows, glazing materials, and shading device on daylight in the built environment. The consequences of the two objectives, i.e., daylight and energy consumption are contradictory in terms of openings. Therefore, optimizing the window area is essential in low-energy buildings. Optimization has been done for the south facade by computer-generated models and simulations. This study covers the essential factors of daylight and energy, i.e., daylight autonomy, useful daylight illuminance, daylight uniformity, total load, and optimization of fenestration design.
机译:窗户对建筑物内部的迎风有很大影响,被认为是节能建筑的重要因素。开口面积,其取向和遮光装置的尺寸会影响内部照明。本研究评估了加热,冷却和日光之间的关系,并为办公楼开口提供了解决方案。该研究侧重于改变窗壁比(WWR),窗台水平,窗口高度,窗户,玻璃材料和遮光装置在建筑环境中的遮蔽装置的影响。两种目标的后果,即日光和能源消耗在开口方面是矛盾的。因此,优化窗口区域在低能量建筑物中是必不可少的。通过计算机生成的模型和仿真对南方外观进行了优化。本研究涵盖了日光和能量的基本因素,即日光自主性,有用的日光照度,日光均匀性,总载荷和更优化的更新设计。

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