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首页> 外文期刊>International Applied Mechanics >FLUID-STRUCTURE INTERACTION WITH AN APPLICATION TO A BODY IMMERSED AND ANCHORED IN A FLUID FLOW
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FLUID-STRUCTURE INTERACTION WITH AN APPLICATION TO A BODY IMMERSED AND ANCHORED IN A FLUID FLOW

机译:流体-结构相互作用及其在浸入式锚固流中的应用

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摘要

In this paper, an implicit coupling algorithm for fluid-structure interaction problems with under-time steps for the solid is presented. Its implementation on two configurations is achieved by using the CASTEM finite-elements code. First, the free oscillations of a cylinder in an annular fluid domain where its movement is determined by the coupled fluid-solid action is considered in the case of viscous fluid. It should be noted that the implicit coupling algorithm gives the best prediction of the structure oscillations. The under-time steps for the solid are introduced in order to obtain better results. Then, an application whose final objective is to model a floating barrage is studied. The main goal of this application is to predict the displacements of a ring completely immersed and anchored by a cable to the lower boundary of the fluid domain. The finite-element discretization of the Navier-Stokes equations in the ALE formulation is used
机译:在本文中,提出了一种含固相下步长的流固耦合问题的隐式耦合算法。通过使用CASTEM有限元代码,可以在两种配置下实现其实现。首先,在粘性流体的情况下,考虑圆柱体在环形流体域中的自由振荡,在该流体域中其运动由耦合的流体-固体作用决定。应该注意的是,隐式耦合算法给出了结构振动的最佳预测。为了获得更好的结果,引入了固体的时间不足步骤。然后,研究了其最终目标是对浮动弹幕进行建模的应用程序。此应用程序的主要目标是预测完全浸没在电缆中并锚定到流体域下边界的环的位移。使用ALE公式中的Navier-Stokes方程的有限元离散化

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