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Generation of three-dimensional fully nonlinear water waves by a submerged moving object

机译:水下运动物体产生的三维完全非线性水波

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This paper describes a numerical investigation on the generation of three-dimensional (3D) fully nonlinear water waves by a submerged object moving at speeds varied from subcritical to supercritical conditions in an unbounded fluid domain. Considering a semispheroid as the moving object, simulations of the time evolutions of 3D free-surface elevation and flow field are performed. The present 3D model results are found to agree reasonably well with other published vertical two-dimensional (2D) and quasi-3D numerical solutions using Boussinesq-type models. Different from the 2D cases with near critical moving speeds, the 3D long-term wave pattern suggests that in addition to the circularly expanded upstream advancing solitonlike waves, a sequence of divergent and transverse waves are also developed behind the moving object. The velocity distributions and associated fluid-particle trajectories at the free-surface and middle layers are presented to show the 3D feature of the motion. The results under various vertical positions (referred as gap) of a moving object are also compared. It is found the gap has shown a substantial influence on the generated waves, especially in the wake region, when an object moves at a near critical or subcritical speed. However, the results under the case with a high supercritical moving speed indicate the gap has a negligible effect on the generated upstream and downstream waves.
机译:本文描述了一个数值研究,该数值研究是由一个水下物体在无界流体域中以从亚临界到超临界条件变化的速度运动而产生的三维(3D)完全非线性水波的。以半球体为运动对象,对3D自由表面标高和流场的时间演化进行了仿真。发现当前的3D模型结果与使用Boussinesq型模型的其他已发布的垂直二维(2D)和准3D数值解决方案相当吻合。与具有接近临界移动速度的2D情况不同,3D长期波动模式表明,除了圆形扩展的上游行进的孤子状波之外,在移动物体后面还产生了一系列发散和横波。给出了自由表面和中间层的速度分布和相关的流体粒子轨迹,以显示运动的3D特征。还比较了移动物体在各种垂直位置(称为间隙)下的结果。发现当物体以接近临界或亚临界的速度运动时,该间隙已对所产生的波表现出显着影响,尤其是在尾波区域。但是,在超临界移动速度较高的情况下的结果表明,间隙对所产生的上游和下游波的影响可忽略不计。

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