A stabilized linear finite element method for anisotropic poroelastodynamics with application to cardiac perfusion
We propose a variational multiscale method stabilization of a linear finite element method for nonlinear poroelasticity. Our approach is suitable for the implicit time integration of poroelastic formulations in which the solid skeleton is anisotropic and incompressible. A detailed numerical methodol...
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Veröffentlicht in: | Computer methods in applied mechanics and engineering 2023-02, Vol.405, p.115877, Article 115877 |
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