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A direct coupling numerical method for solving three-dimensional interaction problems of wave and floating structures

机译:解决波浪与浮体三维相互作用的直接耦合数值方法

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In this article, a direct numerical method is developed to solve three-dimensional interaction problems of wave and floating structures. In the problem formulation, the diffracted wave and radiated wave by the structure are represented as one induced wave potential. The wave field is simulated using a boundary element method, and the structure motions are of six degrees of freedom. In the solution procedure, the structural motions are expressed in terms of wave potentials, which are then substituted into the wave model. The created linear algebraic system is then calculated. The present numerical model is used to simulate a floating rectangular cuboid deployed in a wave channel, and the results are compared with a theory to confirm the accuracy. The present numerical model is further used to calculate a floating structure deployed in an open sea to show the capability of the three-dimensional computation.
机译:在本文中,开发了一种直接数值方法来解决波浪和浮体结构的三维相互作用问题。在问题的表述中,由结构引起的衍射波和辐射波被表示为一个感应波电位。使用边界元方法模拟波场,并且结构运动具有六个自由度。在求解过程中,以波势表示结构运动,然后将其代入波模型。然后计算创建的线性代数系统。该数值模型用于模拟波浪通道中漂浮的矩形长方体,并将结果与​​理论进行比较以确认其准确性。本数值模型还被用来计算部署在公海中的浮动结构,以显示三维计算的能力。

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