An Embedded SDG Method for the Convection-Diffusion Equation

Authors

  • Siu Wun Cheung Department of Mathematics, Texas A&M University, USA
  • Eric T. Chung Department of Mathematics, The Chinese University of Hong Kong (CUHK), Hong Kong SAR

Keywords:

Embedded method, staggered discontinuous Galerkin method, convection-diffusion equation.

Abstract

In this paper, we present an embedded staggered discontinuous Galerkin method for the convection-diffusion equation. The new method combines the advantages of staggered discontinuous Galerkin (SDG) and embedded discontinuous Galerkin (EDG) method, and results in many good properties, namely local and global conservations, free of carefully designed stabilization terms or flux conditions and high computational efficiency. In applying the new method to convection-dominated problems, the method provides optimal convergence in potential and suboptimal convergence in flux, which is comparable to other existing DG methods, and achieves $L$stability by making use of a skew-symmetric discretization of the convection term, irrespective of diffusivity. We will present numerical results to show the performance of the method.

Published

2019-02-22

Issue

Section

Articles