首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Flow past an Equilateral Triangular Bluff Obstacle: Computational Study of the Effect of Thermal Buoyancy on Flow Physics and Heat Transfer
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Flow past an Equilateral Triangular Bluff Obstacle: Computational Study of the Effect of Thermal Buoyancy on Flow Physics and Heat Transfer

机译:流动通过等边三角形钝壁障碍物:热浮力对流动物理和传热影响的计算研究

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摘要

The effect of thermal buoyancy on the wake dynamics and heat transfer characteristics of an isolated equilateral triangular cylinder in cross-flow configuration is considered here. Utilizing air (Pr=0.71) as an operating fluid computations are carried out for wide ranges of the Reynolds number (80 <= Re <= 160) and the Richardson number (-1 <= Ri <= 1). In the range of conditions studied here, flow was found to be two-dimensional and unsteady. Detailed flow physics and temperature field are visualized in terms of the streamlines, vorticity, and isotherm contours in close proximity to the cylinder. Further insights are provided by analyzing the influence of buoyancy on the overall force coefficients, and the time-averaged Nusselt number.
机译:这里考虑了热浮力对横流构造中的隔离等边三角形圆柱体的尾流动力学和传热特性的影响。利用空气(Pr = 0.71)作为工作流体,对雷诺数(80 <= Re <= 160)和理查森数(-1 <= Ri <= 1)的宽范围进行了计算。在这里研究的条件范围内,发现流动是二维且不稳定的。详细的流场物理场和温度场可以根据靠近圆柱体的流线,涡度和等温线轮廓进行可视化。通过分析浮力对整体力系数和时间平均努塞尔数的影响,可以提供进一步的见解。

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