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Simulation of wave-body interaction : a desingularized method coupled with acceleration potential

机译:波体相互作用的仿真:一种结合加速势的去奇化方法

摘要

A two-dimensional, potential-theory based, fully nonlinear numerical wave tank (NWT) is developed for the simulation of wave-body interaction. In this NWT, the concept of acceleration potential is adopted in addition to the velocity potential. Both potentials are solved using the desingularized boundary integral equation method (DBIEM). By tapping the strength of the DBIEM, a new acceleration-potential solving method is proposed, which turns the originally implicit kinematic boundary condition on the surface of a passively moving body into an explicit one. Unlike the other existing methods such as the mode decomposition method, the indirect method and the iterative method, the present method requires solving of only one boundary value problem to determine the acceleration potential, and hence significantly enhances the computational efficiency. Using this NWT, the nonlinear interaction between a freely floating barge and various incident waves is investigated. It is confirmed that the new acceleration potential solving method outperforms other existing methods, saving at least 45% of the computational time.
机译:开发了一种基于势能理论的二维全非线性数值储罐(NWT),用于模拟波体相互作用。在该NWT中,除了速度势之外,还采用了加速度势的概念。使用去奇化边界积分方程法(DBIEM)可以解决这两个电位。通过利用DBIEM的强度,提出了一种新的加速势求解方法,该方法将被动运动物体表面上的原始隐式运动边界条件转换为显式运动边界条件。不同于模式分解方法,间接方法和迭代方法之类的其他现有方法,本方法仅需要解决一个边界值问题来确定加速度潜力,从而显着提高了计算效率。使用该NWT,研究了自由漂浮的驳船与各种入射波之间的非线性相互作用。可以肯定的是,新的加速潜力求解方法优于其他现有方法,可节省至少45%的计算时间。

著录项

  • 作者

    Wang L; Tang H; Wu Y;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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