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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Modelling of fluid-structure interactions with the space-time finite elements: Arterial fluid mechanics
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Modelling of fluid-structure interactions with the space-time finite elements: Arterial fluid mechanics

机译:与时空有限元的流固耦合建模:动脉流体力学

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摘要

The stabilized space-time fluid-structure interaction (SSTFSI) techniques developed by the Team for Advanced Flow Simulation and Modeling (T·AFSM) are applied to FSI modelling in arterial fluid mechanics. Modelling of flow in arteries with aneurysm is emphasized. The SSTFSI techniques used are based on the deforming-spatial-domain/stabilized space-time (DSD/SST) formulation and include the enhancements introduced recently by the T·AFSM to increase the scope, accuracy, robustness and efficiency of these techniques. The arterial structures can be modelled with the membrane or continuum elements, both of which are geometrically nonlinear, and the continuum element can be made of linearly elastic or hyperelastic material. Test computations are presented for cerebral and abdominal aortic aneurysms and carotid-artery bifurcation, where the arterial geometries used in the computations are close approximations to the patient-specific image-based data.
机译:由高级流动模拟和建模团队(T·AFSM)开发的稳定的时空流体-结构相互作用(SSTFSI)技术已应用于动脉流体力学中的FSI建模。强调动脉瘤中动脉血流的建模。使用的SSTFSI技术基于变形空间域/稳定时空(DSD / SST)公式,并且包括T·AFSM最近引入的增强功能,以增加这些技术的范围,准确性,鲁棒性和效率。动脉结构可以用膜或连续体元素建模,这两者在几何上都是非线性的,并且连续体元素可以由线性弹性或超弹性材料制成。提出了针对大脑和腹部主动脉瘤和颈动脉分叉的测试计算方法,其中在计算中使用的动脉几何结构非常接近于患者特定的基于图像的数据。

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