The Johnson-Krizek-Mercier elasticity element in any dimensions
Numerical Analysis
2025-07-18 v4 Numerical Analysis
Abstract
Mixed methods for linear elasticity with strongly symmetric stresses of lowest order are studied in this paper. On each simplex, the stress space has piecewise linear components with respect to its Alfeld split (which connects the vertices to barycenter), generalizing the Johnson--Mercier two-dimensional element to higher dimensions. Further reductions in the stress space in the three-dimensional case (to 24 degrees of freedom per tetrahedron) are possible when the displacement space is reduced to local rigid displacements. Proofs of optimal error estimates of numerical solutions and improved error estimates via postprocessing and the duality argument are presented.
Keywords
Cite
@article{arxiv.2403.13189,
title = {The Johnson-Krizek-Mercier elasticity element in any dimensions},
author = {Jay Gopalakrishnan and Johnny Guzman and Jeonghun J. Lee},
journal= {arXiv preprint arXiv:2403.13189},
year = {2025}
}
Comments
33 pages, 1 figure