A second-order structure-preserving discretization for the Cahn-Hilliard/Allen-Cahn system with cross-kinetic coupling

08/03/2023
by   Aaron Brunk, et al.
0

We study the numerical solution of a Cahn-Hilliard/Allen-Cahn system with strong coupling through state and gradient dependent non-diagonal mobility matrices. A fully discrete approximation scheme in space and time is proposed which preserves the underlying gradient flow structure and leads to dissipation of the free-energy on the discrete level. Existence and uniqueness of the discrete solution is established and relative energy estimates are used to prove optimal convergence rates in space and time under minimal smoothness assumptions. Numerical tests are presented for illustration of the theoretical results and to demonstrate the viability of the proposed methods.

READ FULL TEXT

page 17

page 18

research
09/08/2022

A structure-preserving variational discretization scheme for the Cahn-Hilliard Navier-Stokes system

We propose and analyze a novel structure-preserving space-time variation...
research
08/31/2021

An asymptotic-preserving discretization scheme for gas transport in pipe networks

We consider the simulation of barotropic flow of gas in long pipes and p...
research
04/21/2020

The parabolic p-Laplacian with fractional differentiability

We study the parabolic p-Laplacian system in a bounded domain. We deduce...
research
12/11/2019

Iterative Coupling for Fully Dynamic Poroelasticity

We present an iterative coupling scheme for the numerical approximation ...
research
05/19/2020

Analysis for Allen-Cahn-Ohta-Nakazawa Model in a Ternary System

In this paper we study the global well-posedness of the Allen-Cahn Ohta-...
research
02/10/2021

Relative energy estimates for the Cahn-Hilliard equation with concentration dependent mobility

Based on relative energy estimates, we study the stability of solutions ...
research
10/28/2019

Image Morphing in Deep Feature Spaces: Theory and Applications

This paper combines image metamorphosis with deep features. To this end,...

Please sign up or login with your details

Forgot password? Click here to reset