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A Fast Simulation Method for Damaged Ship Dynamics

机译:船舶动力学受损的快速仿真方法

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Ship accidents that entail flooding may lead to disastrous consequences which could be avoided or mitigated based on the knowledge of damaged ship dynamics. The dynamic behaviour of a damaged hull is a complex phenomenon involving the interaction of the flooded water and the ship motions. The presence of a damage opening allows water flow into and out from the compartment, which further complicates the mathematical description of the problem. A fast simulation method, based on the lumped mass approach, is developed and presented. The lumped mass path in space depends on free-surface inclinations that differ from the ship angles of the roll and pitch. The viscous effects in the floodwater dynamics are implemented based on the model for the dissipation of the energy of standing waves in rectangular rooms. The method applies to both the transient stage of flooding and to the dynamic behaviour of a flooded ship in regular waves. In the first case, viscous effects are implemented considering the water in the compartment variable with time. Several case studies are carried out on three different hull models: Transient stage of flooding, roll decay of the damaged hull, and steady state responses in waves are simulated and compared with available experimental data.
机译:涉及洪水的船舶事故可能会导致灾难性后果,基于对受损船舶动力学的了解,可以避免或减轻灾难性后果。受损船体的动态行为是一个复杂的现象,涉及洪水和船舶运动的相互作用。损坏开口的存在允许水流入和流出隔室,这进一步使问题的数学描述变得复杂。提出并提出了一种基于集总质量方法的快速仿真方法。空间中的集总质量路径取决于自由表面倾斜度,该自由表面倾斜度与横滚和俯仰的船舰角度不同。基于用于消散矩形房间中驻波能量的模型,实现了洪水动力学中的粘性效应。该方法既适用于洪水的过渡阶段,也适用于规则波浪中船舶的动态行为。在第一种情况下,考虑到隔室中的水随时间变化,会产生粘性效应。在三种不同的船体模型上进行了一些案例研究:模拟了洪水的过渡阶段,受损船体的侧倾衰减以及波浪中的稳态响应,并将其与可用的实验数据进行了比较。

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