Optimization of Thermal Performance of Windows in Intermediate Housing in Cold and Dry Climate of Tabriz

S. Abdoli Naser, F. Haghparast, M. Singery, H. Sattari Sarbangholi
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引用次数: 4

Abstract

Windows in the building are the biggest elements of heat loss through convective heat transfer. The purpose of study is to select appropriate dimensions for windows relative to shell and appropriate glazing for windows, in order to achieve optimal pattern to reduce energy consumption. The research method is based on the simulation and research tool is DesignBuilder software. Therefore, amount of natural gas consumed annually in the studied building was received from the National Iranian Gas Company and then the basic research was modeled by software and after converting unit from kWh to m 3 and validating simulation results. In the next step, the range of 20% to 80% of window-to-wall-ratio, types of glazing and window height is considered and through parametric optimization, all conditions in the windows are simulated and analyzed for sensitivity index. The calculations confirm that in an intermediate residential building with a rotation of 12 degrees to the southeast in Tabriz, by reducing window-to-wall- ratio from 50% to 20% and replacing triples-glazed-glazing with a low-emission coating filled with argon gas with a transparent single-glazed glazing and UPVC frame and a canopy with a depth of 48cm and windows height of 1.5m, the heat losses were reduced by 60.34% and 75.24%, respectively.
大不里士寒冷干燥气候下中级住宅窗户热工性能优化研究
建筑物的窗户是通过对流传热损失热量的最大因素。研究的目的是选择合适的窗户相对于外壳的尺寸和合适的窗户玻璃,以达到最佳的格局,减少能源消耗。研究方法以仿真为基础,研究工具为DesignBuilder软件。因此,所研究建筑的年天然气消耗量从伊朗国家天然气公司获得,在单位由kWh转换为m3并验证仿真结果后,通过软件对基础研究进行建模。下一步,考虑窗墙比、玻璃类型和窗高在20% ~ 80%的范围内,通过参数优化,模拟并分析了窗内所有条件的灵敏度指数。计算证实,在大不里士一座向东南方向旋转12度的中间住宅建筑中,通过将窗墙比从50%降低到20%,用充满氩气的低排放涂层取代三层玻璃,采用透明单层玻璃和UPVC框架,以及深度为48厘米、窗户高度为1.5米的顶篷,热量损失分别减少了60.34%和75.24%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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