English

Adaptive FE-BE Coupling for Strongly Nonlinear Transmission Problems with Coulomb Friction

Numerical Analysis 2013-08-13 v2 Analysis of PDEs

Abstract

We analyze an adaptive finite element/boundary element procedure for scalar elastoplastic interface problems involving friction, where a nonlinear uniformly monotone operator such as the p-Laplacian is coupled to the linear Laplace equation on the exterior domain. The problem is reduced to a boundary/domain variational inequality, a discretized saddle point formulation of which is then solved using the Uzawa algorithm and adaptive mesh refinements based on a gradient recovery scheme. The Galerkin approximations are shown to converge to the unique solution of the variational problem in a suitable product of L^p- and L^2-Sobolev spaces.

Keywords

Cite

@article{arxiv.0911.1433,
  title  = {Adaptive FE-BE Coupling for Strongly Nonlinear Transmission Problems with Coulomb Friction},
  author = {Heiko Gimperlein and Matthias Maischak and Elmar Schrohe and Ernst P. Stephan},
  journal= {arXiv preprint arXiv:0911.1433},
  year   = {2013}
}

Comments

27 pages, 3 figures