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Contribution towards the second-moment closure modelling of separating turbulent flows

机译:对分离湍流的第二步闭合建模的贡献

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Six cases of turbulent flows over backward-facing steps and in sudden plane and axisymmetric expansions at a range of Reynolds numbers were analyzed computationally, using two variants of high-Re number second-moment closures and a new model which accounts separately for low-Re number, wall blockage and pressure reflection effects, thus allowing integration up to the wall. Attention was focused on a back-step flow at a step-height Reynolds number of 5000, for which detailed data were recently supplied both by experiments (Jovic, S. and Driver, D. M., Backward-facing step measurements at low Reynolds number, Re-H=5000, TM 108807, NASA, 1994, 1993) and by direct numerical simulation (Le, H., Moin, P. and Kim, J., Direct numerical simulation of turbulent dow over a backward-facing step. J. Fluid Mech. 1997, 330, 349. The new model (shown earlier to reproduce well several classes of equilibrium and nonequilibrium wall-parallel flows) improved the predictions of most mean and turbulent dow properties, and particularly the turbulent stress budget in all three characteristic dow subregions: separating, reattachment and recovery zones; Anomalous performances of some popular Reynolds-stress models are also analyzed and possible causes of the models' deficiencies and their elimination are discussed. It is demonstrated that the introduction of a new term in the invariant form into the E-equation to suppress the excessive growth of the turbulence scale obviates the anomaly and better reproduces the streamline pattern. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 26]
机译:使用高Re数第二矩闭合的两个变体和分别考虑低Re的新模型,通过计算分析了六种湍流在反向台阶上以及在一系列雷诺数下的突然平面和轴对称膨胀中的湍流的情况数量,壁障和压力反射效应,从而允许集成到壁上。注意力集中在步高雷诺数为5000的后退流上,最近通过实验(Jovic,S。和Driver,DM)提供了详细的数据,低雷诺数时的向后步长测量,Re -H = 5000,TM 108807,NASA,1994,1993),并通过直接数值模拟(Le,H.,Moin,P。和Kim,J。,湍流道的直接数值模拟在向后的步骤上进行)。 Fluid Mech。1997,330,349.新模型(较早显示,可以很好地再现几类平衡和非平衡的壁面平行流动)改进了对大多数平均和湍流道性质的预测,尤其是在所有三个特征中的湍流应力预算陶氏子区域:分离,重新附着和恢复带;还分析了一些流行的雷诺应力模型的反常性能,并讨论了模型缺陷和消除的可能原因,并证明了inv中引入新术语将变体形式转化为E方程以抑制湍流尺度的过度增长可消除异常并更好地重现流线型。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:26]

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