There is a large literature of numerical methods for phase field models from materials science. The prototype models are the Allen-Cahn and Cahn-Hilliard equations. We present four benchmark problems for these equations, with numerical results validated using several computational methods with different spatial and temporal discretizations. Our goal is to provide the scientific community with a reliable reference point for assessing the accuracy and reliability of future software for this important class of problem
For phase field equations of generalized Cahn-Hilliard type, we present an a posteriori error analys...
In this paper, we develop the energy law preserving method for a phase-field model of Cahn-Hilliard ...
For phase field equations of generalized Cahn-Hilliard type, we present an a posteriori error analys...
There is a large literature of numerical methods for phase field models from materials science. The ...
The Cahn-Hilliard equation is a classical phase-field model that describes the isothermal process of...
Phase-field models describe the motion of multiphase flows using smooth interfaces across which the ...
The Cahn–Hilliard equation is one of the most common models to describe phase separation processes o...
International audienceWe propose and analyse new stabilized time marching schemes for Phase Fields m...
International audienceWe propose and analyse new stabilized time marching schemes for Phase Fields m...
The goal of this project is to validate and evaluate developed numerical solvers that solve both the...
In some nonlinear reaction-diffusion equations of interest in applications, there are transition lay...
We consider fully practical finite element approximations of the nonlinear parabolic Cahn-Hilliard ...
Abstract. Our goal is to investigate the influence of the geometry and topology of the domain Ω on t...
The tutorial ACCH is one of a series of tutorials on the practical application of numerical path-con...
An investigation into Cahn-Hilliard equation was carried out through numerical simulation to identif...
For phase field equations of generalized Cahn-Hilliard type, we present an a posteriori error analys...
In this paper, we develop the energy law preserving method for a phase-field model of Cahn-Hilliard ...
For phase field equations of generalized Cahn-Hilliard type, we present an a posteriori error analys...
There is a large literature of numerical methods for phase field models from materials science. The ...
The Cahn-Hilliard equation is a classical phase-field model that describes the isothermal process of...
Phase-field models describe the motion of multiphase flows using smooth interfaces across which the ...
The Cahn–Hilliard equation is one of the most common models to describe phase separation processes o...
International audienceWe propose and analyse new stabilized time marching schemes for Phase Fields m...
International audienceWe propose and analyse new stabilized time marching schemes for Phase Fields m...
The goal of this project is to validate and evaluate developed numerical solvers that solve both the...
In some nonlinear reaction-diffusion equations of interest in applications, there are transition lay...
We consider fully practical finite element approximations of the nonlinear parabolic Cahn-Hilliard ...
Abstract. Our goal is to investigate the influence of the geometry and topology of the domain Ω on t...
The tutorial ACCH is one of a series of tutorials on the practical application of numerical path-con...
An investigation into Cahn-Hilliard equation was carried out through numerical simulation to identif...
For phase field equations of generalized Cahn-Hilliard type, we present an a posteriori error analys...
In this paper, we develop the energy law preserving method for a phase-field model of Cahn-Hilliard ...
For phase field equations of generalized Cahn-Hilliard type, we present an a posteriori error analys...