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NUMERICAL SIMULATION OF SHIPS IN HIGH SEAS USING A COUPLED SPH-FE APPROACH

机译:使用SPH-FE耦合方法对船舶进行数值模拟

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Ship designers and operators need to know the limit-state responses of a vessel in high sea-conditions, preferablyrnwithout resorting to expensive experiments. For accuracy reasons, the structural response of the vessel must also bernconsidered. Numerical simulation employing Smoothed Particle Hydrodynamics (SPH) for the fluids and FiniternElements (FE) for the structure within one piece of software can provide a predictive capability for this situation.rnIt will be demonstrated that the coupled SPH-FE approach can correctly predict the fluid-structure interaction (FSI)rneffects during the impact of a flexible cylinder on calm water, a scenario relevant to hull slamming for high speedrnvessels. FSI on a larger scale will be demonstrated by revealing the stresses in a flexible backbone structure of a 147mrnlong segmented model of a generic frigate as it experiences waves. Also discussed is a novel approach to generaternhigher-order free-surface waves in SPH, an essential part of the overall ship response simulation.
机译:船舶设计者和操作者需要了解在高海况下船只的极限状态响应,最好不要诉诸昂贵的实验。出于准确性的原因,还必须考虑容器的结构响应。在一个软件中使用平滑粒子流体动力学(SPH)进行流体和FiniternElements(FE)进行数值模拟可以为这种情况提供预测能力。rn将证明耦合的SPH-FE方法可以正确预测流体结构相互作用(FSI)在柔韧性水柱撞击平静水面时的影响,这是与高速船的船体撞击有关的情况。通过揭示通用护卫舰在遇到波浪时的147mrn长分段模型的柔性主干结构中的应力,可以更大规模地证明FSI。还讨论了一种在SPH中生成高阶自由表面波的新颖方法,这是整个船舶响应模拟的重要组成部分。

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