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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Numerical simulation of wave interacting with a free rolling body
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Numerical simulation of wave interacting with a free rolling body

机译:波与自由滚动体相互作用的数值模拟

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摘要

ABSTRACT The present study numerically models the interaction between a regular wave and the roll motion of a rectangular floating structure. In order to simulate two-dimensional incompressible viscous two-phase flow in a numerical wave tank with the rectangular floating structure, the present study used the volume of fluid method based on the finite volume method. The sliding mesh technique is adopted to handle the motion of the rectangular floating structure induced by fluid-structure interaction. The effect of the wave period on the flow, roll motion and forces acting on the structure is examined by considering three different wave periods. The time variations of the wave height and the roll motion of the rectangular structure are in good agreement with experimental results for all wave periods. The present response amplitude operator is in good agreement with experimental results with the linear potential theory. The present numerical results effectively represent the entire process of vortex generation and evolution described by the experimental results. The longer wave period showed a different mechanism of the vortex evolution near each bottom corner of the structure compared to cases of shorter wave periods. In addition, the x-directional and z-directional forces acting on the structure are analyzed.
机译:摘要本研究从数值上模拟了规则波与矩形浮动结构的侧倾运动之间的相互作用。为了模拟具有矩形漂浮结构的数值波箱中的二维不可压缩粘性两相流,本研究采用基于有限体积法的流体体积法。采用滑动网格技术处理流固耦合引起的矩形漂浮结构的运动。通过考虑三个不同的波浪周期,可以检查波浪周期对流动,侧倾运动和作用在结构上的力的影响。矩形结构的波高和侧倾运动的时间变化与所有波周期的实验结果都非常吻合。目前的响应幅度算子与线性势理论的实验结果非常吻合。目前的数值结果有效地代表了实验结果所描述的涡旋产生和演化的整个过程。与较短波周期的情况相比,较长波周期在结构的每个底角附近显示出不同的涡旋演化机理。此外,分析了作用在结构上的x方向和z方向的力。

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