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Experimental and theoretical studies of various solar control window glasses for the reduction of cooling and heating loads in buildings across different climatic regions

机译:各种日光控制窗户玻璃减少不同气候区域建筑物的制冷和供暖负荷的实验和理论研究

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The glass material and position/orientation of windows are very important to control the heat gain in buildings. In this article, we studied the effect of different window glazing materials (such as bronze, green, grey, bronze-reflective, green-reflective, grey-reflective, gold-reflective, opal blue-reflective, and sapphire blue-reflective glass) in controlling the heat gain by the buildings. The spectral data of diverse window glasses have thus been measured in solar spectrum range of 300-2500nm. Moreover, the MATLAB codes have been developed to compute solar optical properties (including transmittance, reflectance, and absorbance), solar heat gain coefficient (SHGC), and heat transfer through the glazing material. Thermal analysis was carried out using a total of nine window glasses in eight coordinal directions (E, W, N, S, SE, SW, NE, and NW) against three climatic conditions (hot and dry, warm and humid and composite) in India. In terms of net annual cooling and heating cost savings per window, the grey reflective glass was found to be the most energy saving glass among all glasses tested in this study. The grey reflective glass exhibited the highest cost saving in net annual cooling and heating in all eight orientations across three climatic regions. The grey reflective glass saved the net cost of heating and cooling by $ 61.24 per annum in the south orientation of Jodhpur climatic conditions. (C) 2018 Elsevier B.V. All rights reserved.
机译:玻璃材料和窗户的位置/方向对于控制建筑物的热量获取非常重要。在本文中,我们研究了不同的玻璃窗材料(例如,青铜,绿色,灰色,青铜反射型,绿色反射型,灰色反射型,金反射型,蛋白石蓝反射型和蓝宝石蓝反射玻璃)的效果。控制建筑物的热量吸收。因此,已经在300-2500nm的太阳光谱范围内测量了各种窗玻璃的光谱数据。此外,已经开发出MATLAB代码以计算太阳光学特性(包括透射率,反射率和吸收率),太阳热增益系数(SHGC)和通过玻璃材料的热传递。针对三个气候条件(炎热干燥,温暖湿润和复合),在八个坐标方向(E,W,N,S,SE,SW,NE和NW)上使用总共九个玻璃窗进行了热分析。印度。就每窗每年节省的净制冷和供暖成本而言,灰色反射玻璃被认为是本研究中测试的所有玻璃中最节能的玻璃。在三个气候区域的所有八个方向上,灰色反光玻璃在年度净制冷和供暖方面均表现出最高的成本节省。在焦特布尔气候条件以南的方向,灰色反射玻璃每年节省的净加热和冷却成本为61.24美元。 (C)2018 Elsevier B.V.保留所有权利。

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