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VERTICAL MOTION RESPONSE OF A SUBMERGED BODY INDUCED BY INTERFACIAL SOLITARY WAVES

机译:界面孤波诱发的水下人体垂直运动响应

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A simple time-domain numerical model is established to consider the interfacial solitary wave actions on submerged body and the body's vertical motion. The vertical drag and inertial force on the moving submerged body induced by interfacial solitary wave is computed by Morison equation. The motion equation is solved by the fourth-order Runge-Kutta method. A horizontal submerged slender circular cylinder beneath the interface with forward speed is considered in this paper. The calculations show that when the depression internal solitary wave keeps close to the submerged body, the vertical forces on the body, including interfacial solitary wave force and buoyance, change greatly and the body moves downward with a great displacement in a short time. The main reason which results in the great vertical motion is the decrease of buoyance when submerged body moves into the less density water layer. It can be concluded that the great threat to submarine's navigation is the density variation caused by interfacial solitary wave. The parameter effect of forward speed of the submerged body is also investigated.
机译:建立了一个简单的时域数值模型来考虑界面对孤立物体的波作用以及物体的垂直运动。利用Morison方程计算界面孤立波在水下运动物体上的垂直阻力和惯性力。通过四阶Runge-Kutta方法求解运动方程。本文考虑了在界面下方具有向前速度的水平浸没细长圆柱体。计算表明,当凹陷内孤立波靠近水下物体时,作用在物体上的垂直力,包括界面孤立波力和浮力,将发生很大变化,并且物体在短时间内以较大的位移向下移动。导致大的垂直运动的主要原因是当被淹没的物体移动到密度较小的水层时浮力降低。可以得出结论,潜艇航行的最大威胁是界面孤立波引起的密度变化。还研究了潜水器前进速度的参数影响。

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