Abstract
Two non-overlapping domain decomposition methods are presented for the mixed finite element formulation of linear elasticity with weakly enforced stress symmetry. The methods utilize either displacement or normal stress Lagrange multiplier to impose interface continuity of normal stress or displacement, respectively. By eliminating the interior subdomain variables, the global problem is reduced to an interface problem, which is then solved by an iterative procedure. The condition number of the resulting algebraic interface problem is analyzed for both methods. A multiscale mortar mixed finite element method for the problem of interest on non-matching multiblock grids is also studied. It uses a coarse scale mortar finite element space on the non-matching interfaces to approximate the trace of the displacement and impose weakly the continuity of normal stress. A priori error analysis is performed. It is shown that, with appropriate choice of the mortar space, optimal convergence on the fine scale is obtained for the stress, displacement, and rotation, as well as some superconvergence for the displacement. Computational results are presented in confirmation of the theory of all proposed methods.
Funder
National Science Foundation
U.S. Department of Energy
Subject
Applied Mathematics,Modelling and Simulation,Numerical Analysis,Analysis,Computational Mathematics
Reference47 articles.
1. Equilibrium finite elements for the linear elastic problem
2. Ambartsumyan I., Khattatov E., Nordbotten J.M. and Yotov I., A multipoint stress mixed finite element method for elasticity on quadrilateral grids. Preprint arXiv:1811.01928 [math.NA] (2018).
3. Ambartsumyan I., Khattatov E., Nordbotten J.M. and Yotov I., A multipoint stress mixed finite element method for elasticity on simplicial grids. Preprint arXiv:1805.09920 [math.NA] (2018).
4. Mixed Finite Element Methods on Nonmatching Multiblock Grids
5. A Multiscale Mortar Mixed Finite Element Method
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