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A fully nonlinear wave interaction with an array of submerged cylinders by NURBS numerical wave tank and acceleration potential

机译:NURBS数值波箱与淹没圆柱阵列的完全非线性波相互作用和加速度势

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摘要

A numerical wave tank (NWT) is developed to study fully nonlinear wave interaction with a fixed submerged single cylinder, dual cylinders and cylinder arrays. The high-order boundary element method (BEM) based on non-uniform rational B-spline (NURBS) is used to obtain the boundary values in the Eulerian frame. The material node approach is used to trace the free surface particles in the Lagrangian manner. The fourth-order Runge-Kutta time integration scheme is applied to update the boundary values and positions. Spatial derivatives of boundary values are also computed by NURBS. To evaluate the hydrodynamic pressure on the objects, the time derivative of the velocity potential is calculated by the acceleration potential formulation. Hydrodynamic forces on a single cylinder and dual cylinders are computed and compared with the experimental measurement and former numerical simulations. For arrays of cylinders, free surface elevation is obtained and diffraction problems are solved.
机译:开发了一个数值波箱(NWT),以研究固定的水下单缸,双缸和缸阵列的完全非线性波相互作用。基于非均匀有理B样条(NURBS)的高阶边界元法(BEM)被用于获得欧拉框架中的边界值。材料节点方法用于以拉格朗日方式跟踪自由表面粒子。应用四阶Runge-Kutta时间积分方案来更新边界值和位置。边界值的空间导数也由NURBS计算。为了评估物体上的流体动力压力,通过加速势公式来计算速度势的时间导数。计算了单缸和双缸上的流体动力,并与实验测量值和以前的数值模拟进行了比较。对于圆柱阵列,获得了自由表面高度并且解决了衍射问题。

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