ANA LYSIS OF THE FLOW AND THERMAL FIELDS IN BOBTAIL ROOFS HEATED FROM THE BASE WALL

O. Kamiyo
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Abstract

Analysis of airflow and thermal characteristics of attics of bobtail-shaped pitched roofs heated through a horizontally suspended ceiling is numerically carried out in this study. Pitch angles of 14o, 18o, 30o, and 45o within the standard pitch roof range are selected. The configuration falls within Rayleigh number 3.19 x 105  Ra  2.04 x 107. A finite-volume CFD code was used to solve the mass, momentum, and energy conservation equations governing the problem. The results obtained indicate a strong influence on the shape and angle of the roof. At lower roof pitches, the flow field is characterized by multiple counter-rotating vortices asymmetrically arranged within the enclosures. Eight cells in the 14o enclosure were reduced to five in the 45o roof pitch. The size and rotating strength of a vortex increase from the left corner to the middle of the enclosures. At higher pitch angles, the vertical wall obstructed the flow leading to a number of distorted cells. The maximum velocity within the aerodynamic boundary layer along the base wall occurs at Y=0.02 with the values U=0.013 and U=0.028 in the 14o and 45o enclosures respectively. The thermal field portrays a convection system of rising hot plumes from the base wall and descending cold jets from the inclined walls; all enclosed by thin boundary layers along the walls. Graphical plots of velocity and temperature variations along some cross-sections within the enclosures enable the prediction of some important heat and flow parameters.  
底墙加热短尾屋顶的流场和热场分析
本文采用数值方法分析了短尾形斜屋顶经水平吊顶加热后阁楼的气流和热特性。在标准的俯仰角范围内可选择140度、180度、300度和45度的俯仰角。该配置属于瑞利号3.19 × 105Ra2.04 × 107。一个有限体积的CFD代码被用来求解控制问题的质量、动量和能量守恒方程。得到的结果表明,顶板的形状和角度有很大的影响。在较低的屋顶螺距下,流场的特征是在外壳内不对称地排列着多个反向旋转的漩涡。140度屋顶的8个单元减少到45度屋顶的5个单元。旋涡的大小和旋转强度从外壳的左角到中间增加。在较大的俯仰角下,垂直壁面阻碍了流动,导致了一些扭曲的单元。沿基底壁面的气动边界层内最大速度出现在Y=0.02处,在140度和45度罩型处U=0.013和U=0.028。热场描绘了从基底壁上上升的热羽流和从倾斜壁上下降的冷射流的对流系统;它们都被沿壁面的薄边界层包围着。速度和温度沿外壳内一些横截面变化的图形图可以预测一些重要的热和流动参数。
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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24 weeks
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