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Laminar Natural Convection in Isosceles Triangular Roofs in Wintertime Conditions

机译:冬季等腰三角形屋顶的层流自然对流

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摘要

In this work, numerical analysis of steady laminar natural convection in a roof with an isosceles triangular cross section has been performed for wintertime conditions. Base angles varying from 15° to 75°, that is, with corresponding aspect ratios between 0.13 and 1.87, have been used for Rayleigh numbers ranging from 10~3 to 10~5. The inclined and the base walls are maintained at cold and hot, respectively, representing the wintertime conditions. To perform the computational analysis, the finite-volume method is used for the discretization of the governing equations. The effects of the Rayleigh number and base angle on the flow field and heat transfer are analyzed. The detailed streamline patterns and temperature distributions are presented. The variation in the average convective Nusselt numbers versus Rayleigh numbers and base angles is given. The present study aims to help designers and builders to select the most suitable isosceles triangular roof base angle from an energy-saving point of view. It is found that roofs having low base angles are not suitable for wintertime conditions because of high heat transfer rates from the isosceles triangular attic space of the building.
机译:在这项工作中,对冬季条件下具有等腰三角形横截面的屋顶中稳定层流自然对流进行了数值分析。底角从15°到75°不等,即相应的纵横比在0.13到1.87之间,用于瑞利数范围从10〜3到10〜5。倾斜壁和底壁分别保持在冷和热状态,代表冬季条件。为了进行计算分析,有限体积方法用于控制方程的离散化。分析了瑞利数和底角对流场和传热的影响。给出了详细的流线型式和温度分布。给出了平均对流努塞尔数相对于瑞利数和底角的变化。本研究旨在帮助设计师和建筑商从节能的角度选择最合适的等腰三角形屋顶基础角度。发现具有低底角的屋顶不适合冬季条件,因为来自建筑物等腰三角形阁楼空间的传热率很高。

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