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Adaptive unified continuum FEM modeling of a 3D FSI benchmark problem

机译:3D FSI基准问题的自适应统一连续体有限元建模

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摘要

In this paper, we address a 3D fluid-structure interaction benchmark problem that represents important characteristics of biomedical modeling. We present a goal-oriented adaptive finite element methodology for incompressible fluid-structure interaction based on a streamline diffusion-type stabilization of the balance equations for mass and momentum for the entire continuum in the domain, which is implemented in the Unicorn/FEniCS software framework. A phase marker function and its corresponding transport equation are introduced to select the constitutive law, where the mesh tracks the discontinuous fluid-structure interface. This results in a unified simulation method for fluids and structures. We present detailed results for the benchmark problem compared with experiments, together with a mesh convergence study.
机译:在本文中,我们解决了代表生物医学建模的重要特征的3D流体-结构相互作用基准问题。我们基于Unicorn / FEniCS软件框架中实现的,针对该域中整个连续体的质量和动量平衡方程的流线扩散型稳定化,针对不可压缩的流固耦合提供了一种面向目标的自适应有限元方法,该方法在Unicorn / FEniCS软件框架中实现。引入相位标记函数及其相应的输运方程来选择本构律,其中网格跟踪不连续的流体-结构界面。这导致了对流体和结构的统一模拟方法。我们将基准问题的详细结果与实验进行比较,并进行网格收敛研究。

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