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Numerical simulation of solitary wave scattering by a circular cylinder array

机译:圆柱阵列孤立波散射的数值模拟

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The interaction of a solitary wave with an array of surface-piercing vertical circular cylinders is investigated numerically. The wave motion is modeled by a set of generalized Boussinesq equations. The governing equations are discretized using a finite element method. The numerical model is validated against the experimental data of solitary wave reflection from a vertical wall and solitary wave scattering by a vertical circular cylinder respectively. The predicted wave surface elevation and the wave forces on the cylinder agree well with the experimental data. The numerical model is then employed to study solitary wave scattering by arrays of two circular cylinders and four circular cylinders respectively. The effect of wave direction on the wave forces and the wave runup on the cylinders is quantified.
机译:数值研究了孤波与一系列穿孔垂直圆柱的相互作用。波浪运动由一组广义的Boussinesq方程建模。控制方程使用有限元方法离散化。分别利用垂直壁的孤立波反射和垂直圆柱体的孤立波散射的实验数据对数值模型进行了验证。预测的波表面高度和作用在圆柱体上的波力与实验数据吻合良好。然后利用数值模型分别通过两个圆柱和四个圆柱的阵列研究孤立波的散射。量化了波浪方向对波浪力和圆柱体上波浪波动的影响。

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