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首页> 外文期刊>Communications in numerical methods in engineering >Space-time finite element computation of arterial fluid-structure interactions with patient-specific data
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Space-time finite element computation of arterial fluid-structure interactions with patient-specific data

机译:时空有限元计算动脉液-结构相互作用与患者特定数据

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摘要

The stabilized space-time fluid-structure interaction (SSTFSI) technique developed by the team for advanced flow simulation and modeling is applied to the computation of arterial fluid-structure interaction (FSI) with patient-specific data. The SSTFSI technique is based on the deforming-spatial-domain/stabilized space-time formulation and is supplemented with a number of special techniques developed for arterial FSI. These include a recipe for pre-FSI computations that improve the convergence of the FSI computations, using an estimated zero-pressure arterial geometry, layers of refined fluid mechanics mesh near the arterial walls, and a special mapping technique for specifying the velocity profile at an inflow boundary with non-circular shape. In the test computations reported here, we focus on a patient-specific middle cerebral artery segment with aneurysm, where the arterial geometry is based on computed tomography images.
机译:由该团队开发的,用于高级流量模拟和建模的稳定时空流体-结构相互作用(SSTFSI)技术被用于计算具有患者特定数据的动脉流体-结构相互作用(FSI)。 SSTFSI技术基于变形空间域/稳定的时空公式,并补充了为动脉FSI开发的许多特殊技术。其中包括用于FSI之前计算的方法,该方法可使用估计的零压力动脉几何形状,在动脉壁附近啮合的精细流体力学层来改进FSI计算的收敛性,以及用于指定在FSI处的速度分布的特殊映射技术。流入边界为非圆形。在此处报告的测试计算中,我们重点研究具有动脉瘤的患者特定的大脑中动脉段,其中动脉的几何结构基于计算机断层扫描图像。

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