A practically unconditionally gradient stable scheme for the N-component Cahn-Hilliard system

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초록

We present a practically unconditionally gradient stable conservative nonlinear numerical scheme for the N-component Cahn-Hilliard system modeling the phase separation of an N-component mixture. The scheme is based on a nonlinear splitting method and is solved by an efficient and accurate nonlinear multigrid method. The scheme allows us to convert the N-component Cahn-Hilliard system into a system of N - 1 binary Cahn-Hilliard equations and significantly reduces the required computer memory and CPU time. We observe that our numerical solutions are consistent with the linear stability analysis results. We also demonstrate the efficiency of the proposed scheme with various numerical experiments. (C) 2011 Elsevier B.V. All rights reserved.

키워드

N-component Cahn-Hilliard systemPractically unconditionally gradient stableNonlinear multigridPhase separationFinite differencePHASE-FIELD MODELADAPTIVE MESH REFINEMENTRAYLEIGH-TAYLOR INSTABILITYTENSION FORCE FORMULATIONDIFFUSE-INTERFACE MODELSSPINODAL DECOMPOSITIONMULTICOMPONENT SYSTEMSMULTIPHASE SYSTEMSTERNARY MIXTURESNUMERICAL-METHOD
제목
A practically unconditionally gradient stable scheme for the N-component Cahn-Hilliard system
저자
Lee, Hyun GeunChoi, Jeong-WhanKim, Junseok
DOI
10.1016/j.physa.2011.11.032
발행일
2012-02-15
유형
Article
저널명
Physica A: Statistical Mechanics and its Applications
391
4
페이지
1009 ~ 1019