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Assessment of advanced RANS models ability to predict a turbulent swept liquid metal flow over a wire in a channel

机译:评估高级RANS模型的能力,以预测通道中导线上的湍流扫掠液态金属流动

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This paper presents the assessment of different Reynolds-averaged Navier-Stokes (RANS) based turbulence models against the direct numerical simulation (DNS) reference data of turbulent swept flow over a wire in a channel which is topologically equivalent to a wire-wrapped sub-channel assembly in the liquid metal reactor. Computational grids were generated to archive the low y(+) wall treatment approach condition. All the candidate turbulence models were compared to the DNS results both qualitatively and quantitatively under three different crossflow conditions. RANS based CFD results were compared to time-averaged DNS results regarding the flow structure, turbulent kinetic energy, and wall shear stress at each particular location defined by a flow structure along the cross-flow direction. Computation times were measured between each model with appropriate solution convergence strategy. In terms of the flow structure, two-equation and four-equation models were found to over-predict the size of the primary recirculation bubble. The seven-equation model is also over-predicting the recirculation zone as a result of the inclusion of SSG formulations for the pressure-strain term, but this model is clearly outperforming the other models' predictions in terms of local velocity profiles, turbulent kinetic energy distributions, and the shear stress alignments within reasonable computation time.
机译:本文针对基于通道的导线上湍流扫掠流的直接数值模拟(DNS)参考数据,对基于雷诺平均Navier-Stokes(RANS)的湍流模型进行了评估,该数据在拓扑上等效于导线包裹的子通道,液态金属反应器中的通道组件。生成计算网格以存档低y(+)壁处理方法条件。在三种不同的错流条件下,将所有候选湍流模型与DNS结果进行了定性和定量比较。将基于RANS的CFD结果与关于流动结构,湍动能和沿横流方向由流动结构定义的每个特定位置处的壁切应力的时间平均DNS结果进行比较。使用合适的解决方案收敛策略,测量了每个模型之间的计算时间。在流动结构方面,发现二方程和四方程模型高估了一次再循环气泡的大小。由于包含了压力应变项的SSG公式,七方程模型也对再循环区域进行了过度预测,但是就局部速度曲线,湍动能而言,该模型明显优于其他模型的预测分布,以及合理计算时间内的剪应力对齐。

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