A decoupling and linearizing discretization for poroelasticity with nonlinear permeability
Preprint, 2021

We analyze a semi-explicit time discretization scheme of first order for poroelasticity with nonlinear permeability provided that the elasticity model and the flow equation are only weakly coupled. The approach leads to a decoupling of the equations and, at the same time, linearizes the nonlinearity without the need of further inner iteration steps. Hence, the computational speed-up is twofold without a loss in the convergence rate. We prove optimal first-order error estimates by considering a related delay system and investigate the method numerically for different examples with various types of nonlinear displacement-permeability relations.

linearization

nonlinear poroelasticity

time discretization

decoupling

Author

Robert Altmann

University of Augsburg

Roland Maier

University of Gothenburg

Chalmers, Mathematical Sciences, Applied Mathematics and Statistics

Subject Categories

Computational Mathematics

More information

Latest update

9/5/2022 8