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Turbulent natural convection in an air-filled isosceles triangular enclosure

机译:充气等腰三角形外壳中的湍流自然对流

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This paper addresses turbulent natural convection of air confined in an isosceles triangular enclosure representing conventional attic spaces of houses and buildings with pitched roofs and horizontally suspended ceilings. The values to be considered are H = 0.86 m and 2.73 m for the height while the values 1.72 m and 5.46 m were assigned to the width, W, such as the aspect ratio H/Wremains 0.5. The third dimension of the cavity is considered long enough for the flow to be considered 2D. The base wall is heated at 20 ℃ and the inclined walls are cooled at 0 ℃. This combination of factors leads to large Rayleigh numbers equal to 1.58 x 10~9 and 5 x 10~(10). Turbulence is modeled by a low-Reynolds-number k-ε model. The system of governing equations, subject to the proper boundary conditions is solved with the finite volume method. Second-order-accurate QUICK and SIMPLE schemes were used for the discretization of the convective terms and the pressure-velocity coupling, respectively. The velocity and temperature distributions were calculated at different locations in the cavity and their mean quantities are presented. The local and average Nusselt numbers and the wall shear stresses are also presented. Since to the knowledge of the authors, no previous results on turbulent thermal convection in this geometry exist, the validation of the numerical code was performed by comparing velocity and temperature profiles against recent experimental measurements, obtained for a square cavity. Satisfactory agreement was observed.
机译:本文研究的是等腰三角形封闭空间内空气的湍流自然对流,该空间代表具有倾斜屋顶和水平悬吊天花板的房屋和建筑物的常规阁楼空间。对于高度,要考虑的值为H = 0.86 m和2.73 m,而将宽度W分配为值1.72 m和5.46 m,例如纵横比H / W仍为0.5。腔的三维尺寸被认为足够长,以至于流动被认为是二维的。将底壁加热到20℃,将倾斜壁冷却到0℃。这些因素的组合导致较大的瑞利数等于1.58 x 10〜9和5 x 10〜(10)。湍流由低雷诺数k-ε模型建模。用有限体积法求解在适当边界条件下的控制方程组。使用二阶精确的QUICK和SIMPLE方案分别对流项和压力-速度耦合进行离散化。计算腔中不同位置的速度和温度分布,并给出其平均值。还显示了局部和平均Nusselt数以及壁面剪应力。由于据作者所知,以前没有关于这种几何形状中湍流热对流的结果,因此通过将速度和温度曲线与针对正方形腔体获得的最新实验测量值进行比较,来验证数字代码。观察到令人满意的一致性。

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