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Numerical modeling of interaction of a current with a circular cylinder near a rigid bed

机译:电流与刚性床附近圆柱体相互作用的数值模拟

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摘要

The numerical modeling of 2D turbulent flow around a smooth horizontal circular cylinder near a rigid bed with gap ratio G/D = 0.3 at Reynolds number Re_D=9500 is investigated. Ansys~® 10.0-FLOTRAN program package is used to solve the governing equations by FEM, and the performance of the standard k- ε, standard k -ω, and SST turbulence models are examined. A sensitivity study for the three turbulence models is carried out on three computational meshes with different densities near the cylinder surface. The computational velocity fields and the Strouhal numbers from the present simulations are compared with those obtained from the PIV measurement. It is found that the time-averaged velocity field of the flow in the proximity of the cylinder is closely affected by the mesh resolution near the cylinder surface, and the mesh refinement in radial direction improves the results of present simulations. The shedding of vortices in the cylinder wake is not predicted by k - ε model on all the three meshes. The results for the time-averaged velocity field show that the numerical modeling using either of k-ω and SST turbulence models on the finest mesh used on the cylinder surface is reasonably successful.
机译:研究了在雷诺数为Re_D = 9500时,间隙比为G / D = 0.3的刚性床附近光滑水平圆柱体周围二维湍流的数值模型。 Ansys〜®10.0-FLOTRAN程序包用于通过FEM求解控制方程,并检查了标准k-ε,标准k-ω和SST湍流模型的性能。在圆柱表面附近具有不同密度的三个计算网格上对三种湍流模型进行了敏感性研究。将当前模拟的计算速度场和Strouhal数与从PIV测量获得的速度场和Strouhal数进行比较。发现在圆柱体附近的流的时间平均速度场受到圆柱体表面附近的网格分辨率的密切影响,并且沿径向方向的网格细化改进了当前模拟的结果。在所有三个网格上,都无法通过k-ε模型预测圆柱尾流中涡流的脱落。时间平均速度场的结果表明,在圆柱表面上使用的最细网格上使用k-ω和SST湍流模型中的任何一种进行数值建模是相当成功的。

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