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An XFEM Based Fixed-Grid Approach for 3D Fluid-Structure Interaction

机译:基于XFEM的3D流体结构相互作用的固定网方法

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This paper gives an overview on our recent research activities on a fixed grid fluid-structure interaction scheme that can be applied to the interaction of most general structures with incompressible flow. The developed approach is based on an extended Finite Element Method (XFEM) based strategy to allow moving interfaces on fixed Eulerian fluid grids. The enriched Eulerian fluid field and the Lagrangian structural field are partitioned and iteratively coupled using Lagrange multiplier techniques for non-matching grids. The approach allows the simulation of the interaction of thin and bulky structures exhibiting large deformations. Extensions towards automatic adaptivity and fluid boundary layer meshes are sketched and the principle applicability to contact simulations of submerged structures are presented.
机译:本文概述了我们最近关于固定电网流体结构相互作用方案的研究活动,可以应用于大多数通用结构具有不可压缩流的相互作用。开发方法基于基于扩展的有限元方法(XFEM)策略,以允许在固定欧拉流体网格上移动界面。富含欧拉流体场和拉格朗日结构场被划分,并使用拉格朗日乘法技术进行迭代地耦合,用于非匹配网格。该方法允许模拟薄型和笨重结构表现出大变形的结构。绘制了朝向自动适应性和流体边界层网的延伸,并提出了与接触浸没结构模拟的原理适用性。

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