Monolithic parabolic regularization of the MHD equations and entropy principles

06/20/2022
by   Tuan Anh Dao, et al.
0

We show at the PDE level that the monolithic parabolic regularization of the equations of ideal magnetohydrodynamics (MHD) is compatible with all the generalized entropies, fulfills the minimum entropy principle, and preserves the positivity of density and internal energy. We then numerically investigate this regularization for the MHD equations using continuous finite elements in space and explicit strong stability preserving Runge-Kuta methods in time. The artificial viscosity coefficient of the regularization term is constructed to be proportional to the entropy residual of MHD. It is shown that the method has a high order of accuracy for smooth problems and captures strong shocks and discontinuities accurately for non-smooth problems.

READ FULL TEXT

page 22

page 23

page 24

research
05/03/2021

High-order space-time finite element methods for the Poisson-Nernst-Planck equations: Positivity and unconditional energy stability

We present a novel class of high-order space-time finite element schemes...
research
11/16/2021

High-order Positivity-preserving L2-stable Spectral Collocation Schemes for the 3-D compressible Navier-Stokes equations

This paper extends a new class of positivity-preserving, entropy stable ...
research
11/05/2021

First-order positivity-preserving entropy stable spectral collocation scheme for the 3-D compressible Navier-Stokes equations

In this paper, we extend the positivity-preserving, entropy stable first...
research
12/16/2021

A high-order residual-based viscosity finite element method for the ideal MHD equations

We present a high order, robust, and stable shock-capturing technique fo...
research
09/20/2022

A high-order artificial compressibility method based on Taylor series time-stepping for variable density flow

In this paper, we introduce a fourth-order accurate finite element metho...

Please sign up or login with your details

Forgot password? Click here to reset