Anisotropic residual based a posteriori mesh adaptation in 2D: element based approach
Abstract
An element based adaptation method is developed for an anisotropic a posteriori error estimator. The adaptation does not make use of a metric, but instead equidistributes the error over elements using local mesh modifications. Numerical results are reported, comparing with three popular anisotropic adaptation methods currently in use. It was found that the new method gives favourable results for controlling the energy norm of the error in terms of degrees of freedom at the cost of increased CPU usage. Additionally, we considered a new variant of the estimator. The estimator is shown to be conditionally equivalent to the exact error. We provide examples of adapted meshes with the estimator, and show that it gives greater control of the error compared with the original estimator.
Cite
@article{arxiv.1609.00854,
title = {Anisotropic residual based a posteriori mesh adaptation in 2D: element based approach},
author = {Edward Boey and Yves Bourgault and Thierry Giordano},
journal= {arXiv preprint arXiv:1609.00854},
year = {2016}
}
Comments
27 pages, submitted to Journal of Computational and Applied Mathematics updated figures in Section 4 for readability, results unchanged