A priori error estimates of two monolithic schemes for Biot's consolidation model

Author:

Gu Huipeng12,Cai Mingchao3ORCID,Li Jingzhi4,Ju Guoliang2

Affiliation:

1. Department of Mathematics Southern University of Science and Technology Shenzhen China

2. Department of High Performance Computing, National Supercomputing Center in Shenzhen Shenzhen China

3. Department of Mathematics Morgan State University Baltimore Maryland USA

4. Department of Mathematics & National Center for Applied Mathematics Shenzhen & SUSTech International Center for Mathematics Southern University of Science and Technology Shenzhen China

Abstract

AbstractThis paper concentrates on a priori error estimates of two monolithic schemes for Biot's consolidation model based on the three‐field formulation introduced by Oyarzúa et al. (SIAM J Numer Anal, 2016). The spatial discretizations are based on the Taylor–Hood finite elements combined with Lagrange elements for the three primary variables. We employ two different schemes to discretize the time domain. One uses the backward Euler method, and the other applies the combination of the backward Euler and Crank‐Nicolson methods. A priori error estimates show that both schemes are unconditionally convergent with optimal error orders. Detailed numerical experiments are presented to validate the theoretical analysis.

Funder

National Natural Science Foundation of China

Guangdong Provincial Key Laboratory Of Computational Science And Material Design

National Science Foundation of Sri Lanka

Publisher

Wiley

Subject

Applied Mathematics,Computational Mathematics,Numerical Analysis,Analysis

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