High Order Discretely Well-Balanced Methods for Arbitrary Hydrostatic Atmospheres

Authors

  • Jonas P. Berberich Department of Mathematics, Univeristy of W ¨urzburg, 97074 Würzburg, Germany.
  • Roger Käppeli
  • Praveen Chandrashekar
  • Christian Klingenberg

DOI:

https://doi.org/10.4208/cicp.OA-2020-0153

Keywords:

Finite-volume methods, well-balancing, hyperbolic balance laws, compressible Euler equations with gravity.

Abstract

We introduce novel high order well-balanced finite volume methods for the full compressible Euler system with gravity source term. They require no à priori knowledge of the hydrostatic solution which is to be well-balanced and are not restricted to certain classes of hydrostatic solutions. In one spatial dimension we construct a method that exactly balances a high order discretization of any hydrostatic state. The method is extended to two spatial dimensions using a local high order approximation of a hydrostatic state in each cell. The proposed simple, flexible, and robust methods are not restricted to a specific equation of state. Numerical tests verify that the proposed method improves the capability to accurately resolve small perturbations on hydrostatic states.

Published

2021-07-01

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How to Cite

High Order Discretely Well-Balanced Methods for Arbitrary Hydrostatic Atmospheres. (2021). Communications in Computational Physics, 30(3), 666-708. https://doi.org/10.4208/cicp.OA-2020-0153