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Numerical simulation of an axisymmetric separated and reattached flow over a longitudinal blunt circular cylinder

机译:纵向钝圆柱体上轴对称分离和再附着流的数值模拟

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This article presents a numerical investigation of turbulent flow in an axisymmetric separated and reattached flow over a longitudinal blunt circular cylinder. The governing equations were discretized by the finite-volume method and SIMPLER method was applied to solve the equations on a staggered grid. The turbulent flow was numerically simulated using the standard k-ε, Abe-Kondoh-Nagano (AKN) and Shear Stress Transport (SST) turbulence models. The comparisons made between numerical results and experimental measurements showed that the SST model is superior to other models in the present calculation. Computations were performed for three different Reynolds numbers of 6000, 10 000 and 20 000 based on the cylinder diameter. To our knowledge, this study represents the first numerical investigation of the present flow configuration. The computational results were validated with the available experimental data of reattachment length, mean velocity distribution and wall static pressure coefficient in the turbulent blunt circular cylinder flows. Further, other characteristics of the flow, such as turbulent kinetic energy, pressure, streamlines, and the velocity vectors are discussed. The results show that the main characteristics of the turbulence flow in the separation region, such as reattachment length or velocity profiles, are nearly independent of the Reynolds number. The obtained results showed that a secondary separation bubble may appear in the main separation bubble near the leading edge. Furthermore, it was found that the turbulent kinetic energy has a large effect on the formation of the secondary bubble.
机译:本文提出了在一个纵向钝圆柱体上的一个轴对称分离和重新附着的湍流中的湍流数值研究。用有限体积法离散控制方程,并采用SIMPLER方法在交错网格上求解方程。使用标准k-ε,Abe-Kondoh-Nagano(AKN)和剪切应力传递(SST)湍流模型对湍流进行了数值模拟。数值结果与实验测量结果的比较表明,在目前的计算中,SST模型优于其他模型。根据圆柱直径,对三种不同的雷诺数6000、10000和20000进行了计算。据我们所知,该研究代表了当前流动结构的首次数值研究。计算结果得到了湍流钝圆柱流中重装长度,平均速度分布和壁静压系数的可用实验数据的验证。此外,还讨论了流动的其他特征,例如湍动能,压力,流线和速度矢量。结果表明,分离区域内湍流的主要特征(如重新附着长度或速度分布图)几乎与雷诺数无关。所得结果表明,在前缘附近的主分离泡中可能出现第二分离泡。此外,已发现湍动能对次级气泡的形成具有很大的影响。

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