Error analysis for a finite difference scheme for axisymmetric mean curvature flow of genus-0 surfaces
Numerical Analysis
2021-10-20 v2 Numerical Analysis
Abstract
We consider a finite difference approximation of mean curvature flow for axisymmetric surfaces of genus zero. A careful treatment of the degeneracy at the axis of rotation for the one dimensional partial differential equation for a parameterization of the generating curve allows us to prove error bounds with respect to discrete - and -norms for a fully discrete approximation. The theoretical results are confirmed with the help of numerical convergence experiments. We also present numerical simulations for some genus-0 surfaces, including for a non-embedded self-shrinker for mean curvature flow.
Keywords
Cite
@article{arxiv.2010.09666,
title = {Error analysis for a finite difference scheme for axisymmetric mean curvature flow of genus-0 surfaces},
author = {Klaus Deckelnick and Robert Nürnberg},
journal= {arXiv preprint arXiv:2010.09666},
year = {2021}
}
Comments
24 pages, 4 figures