FLEXI: A high order discontinuous Galerkin framework for hyperbolic-parabolic conservation laws
Nico Krais, Andrea Beck, Thomas Bolemann, Hannes Frank, David Flad,, Gregor Gassner, Florian Hindenlang, Malte Hoffmann, Thomas Kuhn, Matthias, Sonntag, Claus-Dieter Munz

TL;DR
FLEXI is an open-source high-order discontinuous Galerkin framework designed for efficiently solving hyperbolic-parabolic conservation laws, with a focus on stability, reproducibility, and usability in high-performance computing environments.
Contribution
This work introduces FLEXI, a comprehensive, open-source high-order discontinuous Galerkin framework tailored for fluid dynamics simulations, emphasizing practical implementation and community usability.
Findings
Demonstrates FLEXI's capability in solving compressible Navier-Stokes equations
Showcases the framework's stability and reproducibility features
Provides sample applications illustrating FLEXI's versatility
Abstract
High order (HO) schemes are attractive candidates for the numerical solution of multiscale problems occurring in fluid dynamics and related disciplines. Among the HO discretization variants, discontinuous Galerkin schemes offer a collection of advantageous features which have lead to a strong increase in interest in them and related formulations in the last decade. The methods have matured sufficiently to be of practical use for a range of problems, for example in direct numerical and large eddy simulation of turbulence. However, in order to take full advantage of the potential benefits of these methods, all steps in the simulation chain must be designed and executed with HO in mind. Especially in this area, many commercially available closed-source solutions fall short. In this work, we therefor present the FLEXI framework, a HO consistent, open-source simulation tool chain for solving…
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