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Fluid-structure interaction analysis of ship-ship collisions

机译:船舶碰撞的流固耦合分析

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The Arbitrary Lagrangian Eulerian (ALE) fluid-structure interaction (FSI) method is widely used to simulate ship-ship/ship-ice collisions, in which hydrodynamics are incorporated to estimate a more realistic and reliable collision response. The purpose of this paper was to use the ALE FSI method for parametric studies on ship collision results, in which the contact force and the ship motions were calculated simultaneously. Numerical simulations of a collision between two identical ships have been conducted using the ALE FSI analysis technique of the LS-DYNA code, in which the surrounding fluid flow was explicitly modeled. The effects of the forward velocity of the struck ship, the mass of the struck ship and the collision angle on collision response were investigated. Furthermore, the analytical method based on momentum conservation and the constant added mass (CAM) method in which the hydrodynamic effects were treated as a constant added mass were applied to calculate energy dissipation. The results were compared with those in the FSI method. Discussions and conclusions are presented. (C) 2017 Elsevier Ltd. All rights reserved.
机译:任意拉格朗日欧拉(ALE)流体-结构相互作用(FSI)方法被广泛用于模拟船-船/船与冰的碰撞,其中并入了流体动力学以评估更现实和可靠的碰撞响应。本文的目的是将ALE FSI方法用于船舶碰撞结果的参数研究,其中可以同时计算接触力和船舶运动。已经使用LS-DYNA代码的ALE FSI分析技术对两艘相同船只之间的碰撞进行了数值模拟,其中对周围的流体流动进行了显式建模。研究了撞船前进速度,撞船质量和碰撞角对碰撞响应的影响。此外,基于动量守恒的分析方法和将水动力效应视为恒定添加质量的恒定添加质量(CAM)方法应用于计算能耗。将结果与FSI方法中的结果进行比较。提出了讨论和结论。 (C)2017 Elsevier Ltd.保留所有权利。

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