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Full Description
Error Control, Adaptive Discretizations, and Applications, Part Four, Volume 61 highlights new advances, with this volume presenting interesting chapters written by an international board of authors. Chapters in this release cover Higher order discontinuous Galerkin finite element methods for the contact problems, Anisotropic Recovery-Based Error Estimators and Mesh Adaptation Tailored for Real-Life Engineering Innovation, Adaptive mesh refinement on Cartesian meshes applied to the mixed finite element discretization of the multigroup neutron diffusion equations, and more.
Other sections cover A posteriori error analysis for Finite Element approximation of some groundwater models Part I: Linear models, A posteriori error estimates for low frequency electromagnetic computations, and more.
Contents
1. Preface
2. Selling's decomposition and the anisotropic wave equation
Jean-Marie Mirebeau, Haloui Malik and Ludovic Metivier
3. Chapter name yet to be determined.
Michel Duprez and Franz Chouly
4. Anisotropic recovery-based error estimators and mesh adaptation for real-life engineering innovation
Simona Perotto, Erika Temellini, Nicola Ferro, Luca Liverotti and Giacomo Speroni
5. Tree-based adaptive finite element methods for deformable image registration
Ricardo Ruiz Baier and Nicolás Alejandro Barnafi Wittwer
6. Residual error estimators for Coulomb frictional contact
Patrick Hild, Rodolfo Araya and Franz Chouly
7. Chapter name yet to be determined.
Iain Smears
8. Parallel simulation and adaptive mesh refinement for 3D elasto- static contact mechanics problems between deformable bodies
Isabelle Ramière and Frederic Charles Lebon
9. Chapter name yet to be determined.
Andrea Cangiani and Georgoulis H. Emmanuil
10. Optimal adaptive implicit time stepping
Michael Feischl
11. A posteriori error analysis for Finite Element approximation of some groundwater models Part II: Richards equation and mixed finite element
Zoubida Mghazli
12. A posteriori error estimates and adaptivity for locally conservative methods
Martin Vohralik



