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A numerical model for 3-D floating body motion in nonlinear waves using the BEM

机译:使用BEM的非线性波的三维浮体运动的数值模型

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A numerical model is developed for 3-D floating body motions in frilly nonlinear waves using the BEM. This BEM solves simultaneously the boundary integral equations for the velocity and acceleration fields and the motion equations of a floating body with six-degrees of freedom. The movement of the nodes on the free water surface is evaluated in accordance with the 3-D motion of fluid particle by the Mixed Eularian Lagrangian method (MEL) and it satisfies strictly satisfy the dynamic boundary condition on the water surface. After that, by the coordinate transformation of the six-degrees of freedom motions, the movement of arbitrary nodes on the body surface is evaluated and updated for the next time step. Validity of this numerical model is verified through comparisons with theoretical solutions of nonlinear waves such as the 5th order Stokes and the 3rd order Cnoidal waves, computed results by a fully nonlinear 2D-BEM, and 3-D experimental results of a moored floating plant barge.
机译:使用BEM的Frilly非线性波的3-D漂浮体动力开发了一个数值模型。该BEM同时解决了速度和加速度场的边界积分方程以及具有六个自由度的浮体的运动方程。根据混合的Eularian拉格朗日方法(MEL)的流体粒子的3-D运动,评价节点对自由水表面的运动,并且它满足了严格满足水面上的动态边界条件。之后,通过坐标转换六度自由运动,在下次步骤中评估和更新主体表面上任意节点的移动。通过与第五阶股票和第三阶CNOIDAL波等非线性波的理论解的比较来验证该数值模型的有效性,通过完全非线性2D-BEM计算的结果,由停泊浮厂驳船的3-D实验结果计算。

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