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Thermal performance and experimental assessment of building orientations in the United Arab Emirates (UAE)

机译:阿拉伯联合酋长国建筑取向的热性能和实验评估(阿联酋)

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摘要

In hot arid regions like the UAE, it is of the utmost importance to evaluate and determine the best building orientation. Consequently, the aim of this paper is to investigate thermal performance of building orientations in the UAE. In order to test the thermal performance of building orientations in Sharjah, a real lab-scale house was constructed. It was divided into two zones; one oriented toward the north (M1) and the other one was oriented toward the south (M2). An infrared (IR) camera generated thermographs of each orientation (on one day) and average mean temperatures were recorded over 5 months. The Temperature Difference Ratio (TDR), Time Lag (T-g), and Decrement Factor (DF) were tested. It was concluded that: (1) The south orientation had a 9.4% higher temperature than the north orientation; (2) M2 had 3% higher outdoor humidity; (3) M2 had a DF that was 0.01 degrees higher than M1; (4) M1 had a TDR that was 0.162 degrees higher than M2; (5) M2 had an average time lag (H) that was 1.838 h lower than M1. The paper also reveals more interesting findings, which were analyzed, thoroughly tested and discussed.
机译:在像阿联酋这样的热干旱地区,评估和确定最佳建筑方向至关重要。因此,本文的目的是调查阿联酋建筑方向的热性能。为了测试沙迦建筑取向的热性能,建造了一个真实的实验室规模的房子。它被分为两个区域;朝向北方(M1)的一个定向,另一个面向南方(M2)。红外线(IR)相机产生的每个取向(一天)的温度计和平均平均温度超过5个月。测试温差比(TDR),时间延迟(T-G)和减量系数(DF)。得出结论是:(1)南方定位比北方定位高9.4%; (2)M2具有3%的室外湿度; (3)M2具有比M1高0.01度的DF; (4)M1具有比M2高0.162度的TDR; (5)M2的平均时间滞后(h)为1.838小时,低于M1。本文还揭示了更有趣的发现,分析,彻底测试和讨论。

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