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The influence of fluid structure interaction modelling on the dynamic response of ships subject to collision and grounding

机译:流体结构相互作用建模对船舶碰撞和接地的动态响应的影响

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Analysis of the dynamic response of ships in accident scenarios requires a realistic idealisation of environmental and operational conditions by multi-physics models. This paper presents a procedure that simulates the influence of strongly coupled FSI effects on the dynamic response of ships involved in typical collision and grounding events. Our method couples an explicit 6-DoF structural dynamic finite element scheme with a hydrodynamic method accounting for (a) 6-DoF potential flow hydrodynamic actions; (b) the influence of evasive ship speed in the way of contact and (c) the effects of hydrodynamic resistance based on a RANS CFD model. Multi-physics simulations for typical accident scenarios involving passenger ships confirm that suitable FSI modelling may be critical for either collision or grounding events primarily because of the influence of hydrodynamic restoring forces.
机译:事故情景中船舶动态响应的分析需要通过多物理模型对环境和运营条件的现实理想。本文介绍了一种模拟强耦合FSI影响对典型碰撞和接地事件船舶动态响应的影响。我们的方法将明确的6-DOF结构动态有限元方案与流体动力学方法核对(a)6-dof电位流体动力学作用; (b)回报船速度以接触方式的影响和(c)基于RAN CFD模型的流体动力学抗性的影响。涉及乘客船舶的典型事故情景的多物理模拟确认,由于流体动力恢复力的影响,适用于碰撞或接地事件的适当的FSI建模可能是至关重要的。

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