Minimal residual discretization of a class of fully nonlinear elliptic PDE
Numerical Analysis
2025-07-03 v2 Numerical Analysis
Abstract
This work introduces finite element methods for a class of elliptic fully nonlinear partial differential equations. They are based on a minimal residual principle that builds upon the Alexandrov--Bakelman--Pucci estimate. Under rather general structural assumptions on the operator, convergence of conforming and discontinuous Galerkin methods is proven in the norm. Numerical experiments on the performance of adaptive mesh refinement driven by local information of the residual in two and three space dimensions are provided.
Keywords
Cite
@article{arxiv.2412.07568,
title = {Minimal residual discretization of a class of fully nonlinear elliptic PDE},
author = {Dietmar Gallistl and Ngoc Tien Tran},
journal= {arXiv preprint arXiv:2412.07568},
year = {2025}
}