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Numerical simulation of fully nonlinear wave interaction with submerged structures: Fixed or subjected to constrained motion

机译:完全非线性波与水下结构相互作用的数值模拟:固定或受约束的运动

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The interaction between fully nonlinear water waves and fully submerged fixed or moving structures is investigated. A three-dimensional numerical wave tank model, based on potential theory is extended to include a submerged horizontal or vertical cylinder of arbitrary cross section. The vertical cylinder is allowed to have a constrained motion while attached to a rigid cable, which could represent the submerged payload of an offshore crane vessel subjected to wave actions. In this fully nonlinear time-domain approach, the higher-order boundary element method is used to solve the mixed boundary value problem based on an Eulerian description at each time step. The 4th-order Runge-Kutta scheme is adopted to update the free water surface boundary conditions expressed in a Lagrangian formulation. Interaction between waves and a submerged fixed horizontal cylinder is then computed by the model and compared with experimental and other numerical results. After that, a parametric study is performed to obtain numerical results for the vertical cylinder undergoing forced pitch motions. More simulations are carried out to investigate the hydrodynamic features of the submerged vertical cylinder in water waves attached to a cable for constrained motion and moving towards the sea bed at a constant velocity.
机译:研究了完全非线性的水波与完全淹没的固定或移动结构之间的相互作用。基于势能理论的三维数值波箱模型被扩展为包括具有任意横截面的浸没式水平或垂直圆柱体。垂直圆柱体在连接到刚性电缆时可以被限制运动,这可以表示经受波浪作用的海上起重机船的水下有效载荷。在这种完全非线性的时域方法中,使用高阶边界元方法基于每个时间步的欧拉描述来解决混合边值问题。采用四阶Runge-Kutta方案来更新以拉格朗日公式表示的自由水表面边界条件。然后,通过模型计算波浪与水下固定水平圆柱之间的相互作用,并将其与实验和其他数值结果进行比较。此后,进行参数研究以获得垂直圆柱体进行强制俯仰运动的数值结果。进行了更多的模拟来研究浸没式垂直圆柱体在附着于电缆上的水波中的水动力特性,以限制运动并以恒定速度向海床移动。

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