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使用双相有限元法进行组织-流体界面分析。

Tissue-fluid interface analysis using biphasic finite element method.

作者信息

Unnikrishnan G U, Unnikrishnan V U, Reddy J N

机构信息

Department of Mechanical Engineering, Texas A&M University, College Station, TX, USA.

出版信息

Comput Methods Biomech Biomed Engin. 2009 Apr;12(2):165-72. doi: 10.1080/10255840903091387.

Abstract

Numerical studies on fluid-structure interaction have primarily relied on decoupling the solid and fluid sub-domains with the interactions treated as external boundary conditions on the individual sub-domains. The finite element applications for the fluid-structure interactions can be divided into iterative algorithms and sequential algorithms. In this paper, a new computational methodology for the analysis of tissue-fluid interaction problems is presented. The whole computational domain is treated as a single biphasic continuum, and the same space and time discretisation is carried out for the sub-domains using a penalty-based finite element model. This procedure does not require the explicit modelling of additional boundary conditions or interface elements. The developed biphasic interface finite element model is used in analysing blood flow through normal and stenotic arteries. The increase in fluid flow velocity when passing through a stenosed artery and the drop in pressure at the region are captured using this method.

摘要

关于流固相互作用的数值研究主要依赖于将固体和流体子域解耦,将相互作用视为各个子域上的外部边界条件。流固相互作用的有限元应用可分为迭代算法和顺序算法。本文提出了一种用于分析组织 - 流体相互作用问题的新计算方法。整个计算域被视为一个单一的双相连续体,并使用基于罚函数的有限元模型对各子域进行相同的空间和时间离散化。该过程不需要额外边界条件或界面单元的显式建模。所开发的双相界面有限元模型用于分析通过正常和狭窄动脉的血流。使用该方法可以捕捉到流体通过狭窄动脉时流速的增加以及该区域的压力下降。

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