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首页> 外文期刊>Water resources research >Assessing the predictive capabilities of isotropic, eddy viscosity Reynolds-averaged turbulence models in a natural-like meandering channel
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Assessing the predictive capabilities of isotropic, eddy viscosity Reynolds-averaged turbulence models in a natural-like meandering channel

机译:评估自然曲折通道中各向同性,涡粘度雷诺平均湍流模型的预测能力

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摘要

The predictive capabilities of an isotropic, eddy viscosity turbulence model for closing the unsteady Reynolds-averaged Navier-Stokes (RANS) equations are systematically investigated by simulating turbulent flow through a field-scale meandering channel and comparing the computed results with the large-eddy simulation (LES) of the same flow recently reported by Kang and Sotiropoulos (2011). To facilitate the comparison of the two turbulence models, both RANS simulation and LES are carried on exactly the same grid with the same numerical method. The comparisons show that while the RANS model captures the curvature-driven secondary flow within the bend, it fails completely to predict other key flow features in the channel, which are predicted by the LES and also observed in flow visualization experiments. These features include the inner and outer bank shear layers, the outer bank secondary cell, and the inner bank horizontal recirculation zone. By analyzing the results of the LES, we conclusively show that flow features not predicted by the RANS calculation are located in regions of the flow with high levels of turbulence anisotropy. The extent of these regions and, consequently, the degree of disagreement between the RANS and LES predictions are shown to depend on the stream geometry and the flow rate. Our results underscore the major challenges confronting the computationally expedient, isotropic RANS models, which are widely used today in three-dimensional hydrodynamic and morphodynamic simulations.
机译:通过模拟流经田间尺度曲折通道的湍流并将计算结果与大涡模拟进行比较,系统地研究了各向同性涡粘度湍流模型对关闭非稳态雷诺平均Navier-Stokes(RANS)方程的预测能力。 (LES)与Kang和Sotiropoulos(2011)最近报道的流量相同。为了便于比较两个湍流模型,在相同的网格上使用相同的数值方法进行了RANS模拟和LES。比较结果表明,尽管RANS模型捕获弯头内由曲率驱动的二次流,但它无法完全预测通道中的其他关键流特征,这些特征是由LES预测的,并且也可以在流可视化实验中观察到。这些特征包括内部和外部堤坝剪切层,外部堤坝二次电池和内部堤坝水平再循环区。通过分析LES的结果,我们可以得出结论,未通过RANS计算预测的流动特征位于湍流各向异性程度较高的区域。这些区域的范围以及相应的RANS和LES预测之间的不一致程度显示出取决于流的几何形状和流速。我们的结果强调了在计算上方便的各向同性的RANS模型所面临的主要挑战,这些模型今天已广泛用于三维流体动力学和形态动力学仿真中。

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  • 来源
    《Water resources research》 |2012年第6期|p.W06505.1-W06505.12|共12页
  • 作者单位

    St.Anthony Falls Laboratory, Department of Civil Engineering, Uni versity of Minnesota, Twin Cities, Minneapolis, Minnesota, USA;

    St.Anthony Falls Laboratory, Department of Civil Engineering, University of Minnesota, Twin Cities, 2 Third Ave. SE, Minneapolis, MN 55414, USA;

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