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A model for analyzing the thermal performance of roof configurations with flat inclined surfaces

机译:分析具有平坦倾斜表面的屋顶构型的热性能的模型

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The development of a thermal model, followed by a generalized computational tool that analyses thermal performance of roofs with four inclined surfaces and a ceiling by considering dynamic environmental and operating conditions, changes of roof geometry and materials is presented here. Roof elements are analyzed based on finite-volume method with implicit formulation. View factors of roof enclosures are calculated numerically. Experimental results, obtained for six actual building roofs under tropical climatic conditions of Sri Lanka, indicated that the thermal model is capable of replicating the actual temperature profiles with an average accuracy of 1.1 degrees C. Ceiling temperature of common roofs were found to be 10 degrees C above the ambient temperature, which could even rise up to15 degrees C in hot days. The model was successfully used to compare roofs and quantify the thermal effects of different parameters. For instance, changes in geometrical parameters led ceiling temperature to change by 5 degrees C, highlighting the importance of roof geometry. Out of the widely used three roofing materials in Sri Lanka, clay tile roofing has showed the best thermal performance. Compared to clay tiles, asbestos and steel roofing can have a maximum ceiling temperature rise of 4 degrees C and 6 degrees C, respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:一个热模型的开发,然后是一个通用的计算工具,该工具通过考虑动态环境和运行条件来分析具有四个倾斜表面和一个天花板的屋顶的热性能,并介绍了屋顶几何形状和材料的变化。基于有限体积法和隐式公式分析屋顶单元。屋顶围护结构的视野系数是通过数值计算的。在斯里兰卡的热带气候条件下对六个实际建筑物屋顶进行的实验结果表明,该热模型能够复制平均温度为1.1摄氏度的实际温度曲线。发现常见屋顶的天花板温度为10摄氏度C高于环境温度,在炎热的天气中甚至可能上升到15摄氏度。该模型已成功用于比较屋顶并量化不同参数的热效应。例如,几何参数的变化导致天花板温度变化了5摄氏度,突出了屋顶几何形状的重要性。在斯里兰卡广泛使用的三种屋面材料中,粘土瓦屋面表现出最佳的热性能。与粘土砖相比,石棉和钢质屋顶的最高天花板温度分别升高了4摄氏度和6摄氏度。 (C)2015 Elsevier B.V.保留所有权利。

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