paper

Local discontinuous Galerkin method for a third order singularly perturbed problem of convection-diffusion type

arXiv:2210.13315

Abstract

The local discontinuous Galerkin (LDG) method is studied for a third-order singularly perturbed problem of the convection-diffusion type. Based on a regularity assumption for the exact solution, we prove almost (up to a logarithmic factor) energy-norm convergence uniformly in the perturbation parameter. Here, is the maximum degree of piecewise polynomials used in discrete space, and is the number of mesh elements. The results are valid for the three types of layer-adapted meshes: Shishkin-type, Bakhvalov-Shishkin type, and Bakhvalov-type. Numerical experiments are conducted to test the theoretical results.

21 pages, 22 figures