首页> 外文会议>William froude conference: advances in theoretical and applied hydrodynamics - past and future >COUPLING BETWEEN FLEXIBLE SHIP AND LIQUID SLOSHING USING POTENTIAL FLOW ANALYSIS AND ITS EFFECT ON WAVE-INDUCED LOADS
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COUPLING BETWEEN FLEXIBLE SHIP AND LIQUID SLOSHING USING POTENTIAL FLOW ANALYSIS AND ITS EFFECT ON WAVE-INDUCED LOADS

机译:势能分析法在挠性船体与液体晃动之间的耦合及其对波浪载荷的影响

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In this paper the potential flow approach adopted in previous investigations for the coupling effect between rigid body ship motion and sloshing is extended to the flexible ship-partially filled tank system, using the de-singularised Rankine source method. The unified method is verified by applying it to the sloshing in a partially filled rectangular tank with a flexible wall. The main aim of this paper is to investigate the influence of hull flexibility on the hydrodynamic forces and moments associated with liquid sloshing and the effect of sloshing on wave-induced responses. The coupling effect between flexible ship and sloshing is illustrated for an idealized LNG carrier in beam regular waves, considering different partial filling scenarios. Symmetric and antisymmetric responses, such as bending and torsional moments, in beam regular waves are investigated with and without coupling effect from liquid sloshing. From the limited numerical comparisons, it is found that liquid sloshing has an influence on the response of distortional as well as rigid modes, i.e. wave-induced motions and loads.
机译:本文采用去奇化朗肯源方法,将先前研究中采用的潜在流动方法扩展为刚体船运动与晃荡之间的耦合效应,扩展到柔性船体部分填充水箱系统。通过将其应用于带有柔性壁的部分填充矩形水箱中的晃荡,验证了统一方法。本文的主要目的是研究船体柔韧性对与液体晃动有关的流体动力和力矩的影响,以及晃荡对波浪感应响应的影响。考虑到不同的局部填充情况,说明了理想的液化天然气船在波束规则波中的挠性船与晃荡之间的耦合效应。研究了在有或没有液体晃动耦合效应的情况下,束规则波中的对称和反对称响应,例如弯曲和扭转力矩。从有限的数值比较中发现,液体晃动对变形模式和刚性模式的响应有影响,即波浪引起的运动和载荷。

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