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Numerical simulations of free-surface waves past two vertically aligned horizontal circular cylinders

机译:经过两个垂直排列的水平圆柱体的自由面波的数值模拟

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A two-dimensional numerical model based on Navier-Stokes equations is employed to simulate free surface waves past two vertically aligned horizontal circular cylinders. The volume of fluid method is used to capture the characteristics of the free surface. The numerical simulations of free surface waves past a partially-submerged horizontal circular cylinder with different submerged depths and wave heights are carried out as validation studies of the present numerical model. The numerical results agree well with the published experimental results obtained by Dixon et al. (1979) in terms of vertical hydrodynamic forces. Free surface waves past two vertically aligned horizontal circular cylinders are computed using the validated numerical model. The influences of the spacing between the two cylinders on the vertical hydrodynamic forces on and the free surface elevations around the cylinders are investigated in the present study. The results indicate that the vertical spacing between the two cylinders has a significant effect on the vertical hydrodynamic forces of the cylinder at the lower location, while the vertical hydrodynamic forces of the cylinder at the upper location can be only affected when the vertical spacing is small.
机译:采用基于Navier-Stokes方程的二维数值模型来模拟经过两个垂直对齐的水平圆柱体的自由表面波。流体体积法用于捕获自由表面的特征。进行了自由表面波通过部分淹没的水平圆柱体的数值模拟,具有不同的淹没深度和波高作为当前数值模型的验证研究。数值结果与Dixon等人获得的已发表实验结果非常吻合。 (1979)在垂直流体动力方面。使用经过验证的数值模型计算通过两个垂直对齐的水平圆柱体的自由表面波。在本研究中,研究了两个圆柱体之间的间隔对圆柱体上垂直流体动力的影响以及圆柱体周围的自由表面高度。结果表明,两个圆柱体之间的垂直间距对下部位置圆柱体的垂直水动力有显着影响,而上部位置的圆柱体垂直水动力仅在垂直间距较小时受到影响。 。

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