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3D fluid–structure-contact interaction based on a combined XFEM FSI and dual mortar contact approach

机译:基于XFEM FSI和双重砂浆接触方法的3D流体-结构-接触相互作用

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摘要

Finite deformation contact of flexible solids embedded in fluid flows occurs in a wide range of engineering scenarios. We propose a novel three-dimensional finite element approach in order to tackle this problem class. The proposed method consists of a dual mortar contact formulation, which is algorithmically integrated into an eXtended finite element method (XFEM) fluid–structure interaction approach. The combined XFEM fluid–structure-contact interaction method (FSCI) allows to compute contact of arbitrarily moving and deforming structures embedded in an arbitrary flow field. In this paper, the fluid is described by instationary incompressible Navier–Stokes equations. An exact fluid–structure interface representation permits to capture flow patterns around contacting structures very accurately as well as to simulate dry contact between structures. No restrictions arise for the structural and the contact formulation. We derive a linearized monolithic system of equations, which contains the fluid formulation, the structural formulation, the contact formulation as well as the coupling conditions at the fluid–structure interface. The linearized system may be solved either by partitioned or by monolithic fluid–structure coupling algorithms. Two numerical examples are presented to illustrate the capability of the proposed fluid–structure-contact interaction approach.
机译:嵌入流体中的柔性固体的有限变形接触发生在广泛的工程场景中。我们提出了一种新颖的三维有限元方法来解决这一问题类别。所提出的方法由双重砂浆接触配方组成,该配方通过算法集成到扩展的有限元方法(XFEM)的流固耦合方法中。结合使用XFEM流体-结构-接触相互作用方法(FSCI),可以计算嵌入在任意流场中的任意运动和变形结构的接触。在本文中,流体是用平稳不可压缩的Navier–Stokes方程描述的。精确的流体-结构界面表示可以非常精确地捕获接触结构周围的流动模式,并模拟结构之间的干接触。对于结构和接触配方没有限制。我们推导出一个线性化的整体方程组,其中包含流体配方,结构配方,接触配方以及流体-结构界面的耦合条件。线性化系统可以通过分区或整体式流固耦合算法求解。给出了两个数值示例,以说明所提出的流固耦合接触方法的能力。

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