English

DoD stabilization for higher-order advection in two dimensions

Numerical Analysis 2023-01-10 v1 Computational Engineering, Finance, and Science Numerical Analysis

Abstract

When solving time-dependent hyperbolic conservation laws on cut cell meshes one has to overcome the small cell problem: standard explicit time stepping is not stable on small cut cells if the time step is chosen with respect to larger background cells. The domain of dependence (DoD) stabilization is designed to solve this problem in a discontinuous Galerkin framework. It adds a penalty term to the space discretization that restores proper domains of dependency. In this contribution we introduce the DoD stabilization for solving the advection equation in 2d with higher order. We show an L2L^2 stability result for the stabilized semi-discrete scheme for arbitrary polynomial degrees pp and provide numerical results for convergence tests indicating orders of p+1p+1 in the L1L^1 norm and between p+12p+\frac 1 2 and p+1p+1 in the LL^{\infty} norm.

Keywords

Cite

@article{arxiv.2301.02799,
  title  = {DoD stabilization for higher-order advection in two dimensions},
  author = {Florian Streitbürger and Gunnar Birke and Christian Engwer and Sandra May},
  journal= {arXiv preprint arXiv:2301.02799},
  year   = {2023}
}
R2 v1 2026-06-28T08:05:52.493Z