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Modelling and convergence in arterial wall simulations using a parallel FETI solution strategy

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  • D. Brands
  • A. Klawonn
  • O. Rheinbach
  • J. Schröder

Abstract

Arterial walls are characterised by nearly incompressible, anisotropic, hyperelastic material behaviour. Several polyconvex material functions representing such materials are considered and adjusted to experimental data. For all of these functions and for different parameter sets numerical simulations using a three-dimensional model of a diseased artery are performed. A finite element tearing and interconnecting-dual primal domain decomposition algorithm is used to solve the linearised systems of equations. The numerical performance of the different models is discussed with respect to convergence of the linear and nonlinear solvers.

Suggested Citation

  • D. Brands & A. Klawonn & O. Rheinbach & J. Schröder, 2008. "Modelling and convergence in arterial wall simulations using a parallel FETI solution strategy," Computer Methods in Biomechanics and Biomedical Engineering, Taylor & Francis Journals, vol. 11(5), pages 569-583.
  • Handle: RePEc:taf:gcmbxx:v:11:y:2008:i:5:p:569-583
    DOI: 10.1080/10255840801949801
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