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The influence of nonlinearities on the symmetric hydrodynamic response of a 10,000 TEU container ship

机译:非线性对10,000 TEU集装箱船对称水动力响应的影响

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摘要

The prediction of wave-induced motions and loads is of great importance for the design of marine structures. Linear potential flow hydrodynamic models are already used in different parts of the ship design development and appraisal process. However, the industry demands for design innovation and the possibilities offered by modern technology imply the need to also understand the modelling assumptions and associated influences of nonlinear hydrodynamic actions on ship response. At first instance, this paper presents the taxonomy of different Fluid Structure Interaction (FSI) methods that may be used for the assessment of ship motions and loads. Consequently, it documents in a practical way the effects of weakly nonlinear hydrodynamics on the symmetric wave-induced responses for a 10,000TEU Container ship. It is shown that the weakly nonlinear FSI models may be useful for the prediction of symmetric wave-induced loads and responses of such ship not only in way of amidships but also at the extremities of the hull. It is concluded that validation of hydrodynamic radiation and diffraction forces and their respective influence on ship response should be especially considered for those cases where the variations of the hull wetted surface in time may be noticeable.
机译:波浪引起的运动和载荷的预测对于海洋结构的设计非常重要。线性势流水动力模型已经用于船舶设计开发和评估过程的不同部分。但是,行业对设计创新的需求以及现代技术提供的可能性意味着还需要了解建模假设以及非线性流体动力作用对船舶响应的影响。首先,本文介绍了可用于评估船舶运动和载荷的不同流体相互作用(FSI)方法的分类。因此,它以实用的方式记录了10,000TEU集装箱船的弱非线性流体动力学对对称波感应响应的影响。结果表明,弱非线性FSI模型不仅可以在舰船中部而且可以在船体的末端用于对称波浪感应载荷的预测以及这种船的响应。结论是,对于那些船体湿润表面随时间变化可能明显的情况,应特别考虑水动力辐射和衍射力的验证及其对船舶响应的影响。

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