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Numerical analysis of turbulent flow in a rotating U-bend with roughened walls

机译:壁面粗糙的U形弯管内湍流的数值分析

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A numerical analysis has been performed for a developing turbulent flow in a rotating U-bend of strong curvature with rib-roughened walls using an anisotropic turbulent model. In this calculation, an algebraic Reynolds stress model is used to precisely predict Reynolds stresses, and a boundary-fitted coordinate system is introduced as a method of coordinate transformation to set the exact boundary conditions along the complicated shape of U-bend with rib-roughened walls. Calculated results for mean velocity and Reynolds stresses are compared to the experimental data in order to validate the proposed numerical method and the algebraic Reynolds stress model. Although agreement is certainly not perfect in all details, the present method can predict characteristic velocity profiles and reproduce the separated flow generated near the outer wall, which is located just downstream of the curved duct. The Reynolds stresses predicted by the proposed turbulent model agree well with the experimental data, except in regions of flow separation.
机译:使用各向异性湍流模型,对带有曲折肋壁的强曲率旋转U形弯中不断发展的湍流进行了数值分析。在此计算中,使用代数雷诺应力模型精确预测雷诺应力,并引入边界拟合坐标系作为坐标转换的方法,以沿着复杂的U形弯折并加肋粗化设置精确的边界条件墙壁。将平均速度和雷诺应力的计算结果与实验数据进行比较,以验证所提出的数值方法和代数雷诺应力模型。尽管在所有细节上肯定不是完美的协议,但是本方法可以预测特征速度曲线并重现在外壁附近产生的分离流,该外壁位于弯曲管道的下游。所提出的湍流模型预测的雷诺应力与实验数据吻合得很好,除了在流动分离区域。

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