Multirate Time Iterative Scheme with Multiphysics Finite Element Method for a Nonlinear Poroelasticity

Multirate Time Iterative Scheme with Multiphysics Finite Element Method for a Nonlinear Poroelasticity

Year:    2024

Author:    Zhihao Ge, Hairun Li, Tingting Li

Journal of Computational Mathematics, Vol. 42 (2024), Iss. 2 : pp. 597–616

Abstract

In this paper, a multirate time iterative scheme with multiphysics finite element method is proposed and analyzed for the nonlinear poroelasticity model. The original problem is reformulated into a generalized nonlinear Stokes problem coupled with a diffusion problem of a pseudo pressure field by a new multiphysics approach. A multiphysics finite element method is adopted for the spatial discretization, and the generalized nonlinear Stokes problem is solved in a coarse time step and the diffusion problem is solved in a finer time step. The proposed algorithm is a decoupled algorithm, which is easily implemented in computation and reduces greatly computation cost. The stability analysis and the convergence analysis for the multirate iterative scheme with multiphysics finite element method are given. Some numerical tests are shown to demonstrate and validate the analysis results.

You do not have full access to this article.

Already a Subscriber? Sign in as an individual or via your institution

Journal Article Details

Publisher Name:    Global Science Press

Language:    English

DOI:    https://doi.org/10.4208/jcm.2207-m2021-0373

Journal of Computational Mathematics, Vol. 42 (2024), Iss. 2 : pp. 597–616

Published online:    2024-01

AMS Subject Headings:   

Copyright:    COPYRIGHT: © Global Science Press

Pages:    20

Keywords:    Nonlinear poroelasticity model Multiphysics finite element method Multirate iterative scheme.

Author Details

Zhihao Ge

Hairun Li

Tingting Li