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A mixed Eulerian-Lagrangian simulation of nonlinear wave interaction with a fluid-filled membrane breakwater

机译:非线性流体与充液膜防波堤相互作用的欧拉-拉格朗日混合模拟

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This paper introduces a time-domain potential flow method for simulating fully nonlinear wave interaction with a fluid-filled membrane mounted on the seabed. The numerical method is based on a mixed Eulerian-Lagrangian method, which tracks the free water surface and the membrane using a Lagrangian method and solves the flow fields inside and outside the membrane using an Eulerian method. To remove the numerical instability, a method that satisfies the no-flux condition on the membrane at any location and any time was developed to calculate the radial displacement of the membrane at every time step and a Fourier series expression for the radial displacement of the membrane was used to calculate the local curvature of the membrane accurately. Experimental results from an existing experimental study were used for model validation and verification. The response of the membrane and the nonlinear wave scattering were simulated. The simulation results show that the transmission coefficients of the fundamental waves, second harmonic free and locked waves approach zero when a resonant response of the membrane to waves occurs. Sample results of the simulated tension in the membrane and interior pressure are also included in the discussion.
机译:本文介绍了一种时域势流方法,用于模拟与安装在海床上的充液膜的完全非线性波相互作用。数值方法基于混合的欧拉-拉格朗日方法,该方法使用拉格朗日方法跟踪自由水表面和膜,并使用欧拉法求解膜内部和外部的流场。为了消除数值不稳定性,开发了一种在任何位置和任何时间都满足膜无通量条件的方法,以计算膜在每个时间步的径向位移以及膜径向位移的傅里叶级数表达式。用于精确计算膜的局部曲率。现有实验研究的实验结果用于模型验证和验证。模拟了膜的响应和非线性波散射。仿真结果表明,当膜对波的共振响应发生时,基波,无二次谐波和锁定波的传输系数接近零。讨论中还包括了模拟的膜片张力和内部压力的样本结果。

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