The high-order maximum-principle-preserving integrating factor Runge-Kutta methods for nonlocal Allen-Cahn equation
Author:
Publisher
Elsevier BV
Subject
Computer Science Applications,Physics and Astronomy (miscellaneous),Applied Mathematics,Computational Mathematics,Modeling and Simulation,Numerical Analysis
Reference51 articles.
1. Total-variation-diminishing time discretizations;Shu;SIAM J. Sci. Stat. Comput.,1988
2. Unconditional energy stability analysis of a second order implicit-explicit local discontinuous Galerkin method for the Cahn-Hilliard equation;Song;J. Sci. Comput.,2017
3. Krylov implicit integration factor methods for spatial discretization on high dimensional unstructured meshes: application to discontinuous Galerkin methods;Chen;J. Comput. Phys.,2011
4. Strong stability preserving integrating factor Runge-Kutta methods;Isherwood;SIAM J. Numer. Anal.,2018
5. Numerical approximations for a phase field dendritic crystal growth model based on the invariant energy quadratization approach;Zhao;Int. J. Numer. Methods Eng.,2017
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1. A Linear Doubly Stabilized Crank-Nicolson Scheme for the Allen-Cahn Equation with a General Mobility;ADV APPL MATH MECH;2024
2. Energy stable and maximum bound principle preserving schemes for the Allen-Cahn equation based on the Saul’yev methods;Advances in Computational Mathematics;2024-04-29
3. Energy dissipation and maximum bound principle preserving scheme for solving a nonlocal ternary Allen-Cahn model;Computers & Mathematics with Applications;2024-02
4. A new high-order maximum-principle-preserving explicit Runge–Kutta method for the nonlocal Allen–Cahn equation;Journal of Computational and Applied Mathematics;2024-02
5. High-order unconditionally maximum-principle-preserving parametric integrating factor Runge-Kutta schemes for the nonlocal Allen-Cahn equation;Applied Numerical Mathematics;2023-12
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