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TIME-DOMAIN SIMULATION OF SECOND-ORDER WAVE DIFFRACTION IN IRREGULAR WAVE

机译:不规则波中二阶波衍射的时域模拟

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A time-domain second-order method is presented to simulate three-dimensional (3D) wave-body interaction. In the approach, Taylor series expansions are applied to the free surface boundary conditions, and Stokes perturbation procedure is then used to establish corresponding boundary value problem at first-order and second-order on the time-independent surfaces. A Boundary Element Method (BEM), based on Rankine source, is used to calculate wave field at each time step. Multi-Transmitting Formula coupled with Damping Zone method (MTF+DZ) is employed as radiation condition to minimize the wave reflection. A stable Integral form of Free surface Boundary Condition (IFBC) is used to update velocity potential on the free surface. The present method is applied to compute the second-order Stokes wave diffraction of bottom-mounted circular cylinder first, and then to compute the irregular second-order Stokes wave diffraction of truncated cylinder in infinite water depth with three wave components. It is shown that long time simulation can be done with stability, and the model can be used to time-domain simulation of nonlinear irregular wave-body interaction.
机译:提出了一种时域二阶方法来模拟三维(3D)波体相互作用。在该方法中,将泰勒级数展开应用于自由曲面的边界条件,然后使用斯托克斯摄动过程在与时间无关的曲面上建立一阶和二阶的相应边值问题。基于朗肯源的边界元方法(BEM)用于计算每个时间步长的波场。采用多传输公式结合阻尼区方法(MTF + DZ)作为辐射条件,以最小化波反射。自由表面边界条件(IFBC)的稳定积分形式用于更新自由表面上的速度势。该方法适用于首先计算底部安装圆柱的二阶斯托克斯波衍射,然后计算无限大水深中具有三个波分量的截断圆柱的不规则二阶斯托克斯波衍射。结果表明,可以长时间稳定地进行仿真,并且该模型可以用于非线性不规则波体相互作用的时域仿真。

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