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Numerical simulations of turbulent flow around side-by-side circular piles with different spacing ratios

机译:不同间距比的并排圆桩周围湍流流动的数值模拟

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Numerical simulations of the turbulent flow around single and side-by-side piles at different spacing ratios (centre-to-centre distance to the pile diameter) with flow Reynolds number of 10~5 on the fixed flat-bed are presented. The calculations are performed using the computational fluid dynamics model, FLOW-3D, which solves the Navier-Stokes equations in three dimensions with a finite-volume method. The numerical results of time-averaged flow patterns around single and side-by-side piles are validated using the available experimental measurements. At the downstream of the single pile, dimensionless vortex shedding frequency (Strouhal number) is estimated as 0.22. The maximum values of bed shear stress around side-by-side piles at different spacing ratios are compared with the maximum values obtained for the single pile. Interactions of horseshoe vortices on different cases of side-by-side piles are studied. Numerical results show that the critical arrangement for which the largest bed shear stress was observed is the case with the spacing ratio of 3.
机译:给出了固定平板上不同雷诺数为10〜5的不同间距比(相对于桩直径的中心距)周围单桩和并排桩周围湍流的数值模拟。使用计算流体动力学模型FLOW-3D进行计算,该模型使用有限体积方法在三个维度上求解Navier-Stokes方程。使用可用的实验测量值验证了单桩和并排桩周围时间平均流型的数值结果。在单桩的下游,无因次涡流脱落频率(斯托洛哈尔数)估计为0.22。将不同间距比的并排桩周围的床层剪应力最大值与单桩获得的最大值进行比较。研究了马蹄涡在并排桩不同情况下的相互作用。数值结果表明,间距比为3的情况下,观察到最大的床层剪切应力的临界布置。

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