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Non-linear water waves generated by impulsive motion of submerged obstacles

机译:淹没障碍物的脉冲运动产生的非线性水波

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A fully non-linear problem on unsteady water waves generated by an impulsively moving obstacle is studied analytically. Our method involves reduction of the Euler equations to the integral-differential system for the wave elevation together with normal and tangential fluid velocities at a free surface. Exact model equations are derived in explicit form in a case where an isolated obstacle is presented by a totally submerged elliptic cylinder. A small-time asymptotic solution is constructed for a cylinder which starts with constant acceleration from rest. It is demonstrated that the leading-order solution terms describe several wave regimes such as the formation of non-stationary splash jets by vertical rising or vertical submersion of the obstacle; the generation of diverging waves is also observed.
机译:分析性地研究了由脉冲运动障碍物产生的不稳定水波的完全非线性问题。我们的方法包括将Euler方程简化为波高的积分微分系统,以及在自由表面上的法向和切向流体速度。在完全淹没椭圆圆柱体表示孤立障碍物的情况下,以显式形式导出精确模型方程。针对从静止状态开始恒定加速度开始的圆柱体,构造了一个短时渐近解。事实证明,前导解项描述了几种波浪状态,例如通过障碍物的垂直上升或垂直浸没形成的非平稳飞溅射流;还观察到发散波的产生。

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