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THE REYNOLDS STRESS IN CHANNEL FLOWS FROM A LAGRANGIAN TREATMENT OF THE TURBULENCE MOMENTUM

机译:拉格朗日处理湍流动量的通道流动中的雷诺应力

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We have developed a mechanistic approach for determination of the Reynolds stress, using a Lagrangian analysis of turbulent momentum. Analysis and comparison with DNS and experimental data point toward the soundness of this approach (Lee, 2018). von Karman constant, the inner layer thickness and the Reynolds stress itself are all recovered through this approach, in agreement with DNS data. In addition, the turbulent flow profiles can be calculated iteratively using the basic Reynolds-averaged Navier-Stokes equation, in conjunction with the current transport equation for the Reynolds stress. In this work, we explore these and further uses of the current approach in solving turbulent flow dynamics.
机译:我们已经使用湍流动量的拉格朗日分析开发了一种确定雷诺应力的机械方法。与DNS和实验数据的分析和比较表明该方法的合理性(Lee,2018)。 von Karman常数,内层厚度和雷诺应力本身都可以通过此方法恢复,与DNS数据一致。另外,可以使用基本的雷诺平均Navier-Stokes方程,结合雷诺应力的当前输运方程,迭代地计算湍流剖面。在这项工作中,我们将探讨当前方法在解决湍流动力学方面的这些以及其他用途。

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