梅立泉
- 教授
- Supervisor of Doctorate Candidates
- Supervisor of Master's Candidates
- E-Mail:
- Date of Employment:1997-07-01
- Education Level:With Certificate of Graduation for Doctorate Study
- Professional Title:教授
- Status:Employed
- Alma Mater:西安交通大学
- College:School Of Mathematics And Statistics
- Discipline:Mathematics
- Papers
Numerical approximation of the two-component PFC models for binary colloidal crystals: efficient, decoupled, and second-order unconditionally energy stable schemes
Release Time:2025-04-30 Hits:
- Date:2025-04-30
- Title of Paper:Numerical approximation of the two-component PFC models for binary colloidal crystals: efficient, decoupled, and second-order unconditionally energy stable schemes
- Journal:Journal of Scientific Computing
- Summary:In this paper, we consider numerical approximations for the two-component PFC models for binary colloidal crystals. In addition to the Cahn-Hilliard type two-component PFC model that is commonly used for considering mass conservation, we also derived a new Allen--Cahn type two-component PFC model by using the $L^2$-gradient flow and add two nonlocal Lagrange multipliers to the system to conserve the mass for each component. For these two types of two-component PFC models, the stabilized Scalar Auxiliary Variable (SAV) approach is adopted to develop efficient, decoupled, second-order accurate, and linear numerical schemes, where a new scalar auxiliary variable is introduced to reformulate the models, and two extra linear stabilization terms are added to improve the stability and keep the required accuracy thus allowing large time steps. These schemes are unconditionally energy stable, mass conservative and require solving only four linear equations with constant coefficients at each time step. Numerical examples are performed to demonstrate the accuracy and energy stability of the proposed schemes, and numerous 2D and 3D simulations are also presented to show a variety of complex binary ordered patterns of phase
transformation. - Co-author:Qi Li, Liquan Mei
- Volume:88
- Page Number:60
- Translation or Not:No
- Date of Publication:2021-07-22
