A linear convex splitting scheme for the Cahn–Hilliard equation with a high‐order polynomial free energy

Author:

Lee Seunggyu12,Yoon Sungha3,Kim Junseok4ORCID

Affiliation:

1. Division of Applied Mathematical Sciences Korea University Sejong Republic of Korea

2. Biomedical Mathematics Group, Pioneer Research Center for Mathematical and Computational Sciences Institute for Basic Science Daejeon Republic of Korea

3. Institute of Mathematical Sciences Ewha Womans University Seoul Republic of Korea

4. Department of Mathematics Korea University Seoul Republic of Korea

Abstract

AbstractIn this article, we present an unconditionally energy stable linear scheme for the Cahn–Hilliard equation with a high‐order polynomial free energy. The classical Cahn–Hilliard equation does not satisfy the maximum principle; hence the order parameter can be shifted out of the minimum values of the double‐well potential. We adopt a high‐order polynomial potential to diminish this effect and employ the efficient linear convex splitting scheme. Since the stabilizing factor gradually increases as the degree of potential becomes greater, we modify a non‐physical part of potential as a fourth‐order polynomial to reduce the stabilizing factor. Numerical results as well as theoretical results demonstrate the accuracy and energy stability of our method. Furthermore, we verify that some limitations arising from applications of the classical Cahn–Hilliard model can be resolved by adopting a high‐order free energy.

Funder

Ministry of Education

Ministry of Science and ICT, South Korea

Ministry of Science, ICT and Future Planning

Publisher

Wiley

Subject

Applied Mathematics,General Engineering,Numerical Analysis

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