International audienceDendritic growth is computed with automatic adaptation of an anisotropic and unstructured finite element mesh. The energy conservation equation is formulated for solid and liquid phases considering an interface balance that includes the Gibbs-Thomson effect. An equation for a diffuse interface is also developed by considering a phase field function with constant negative value in the liquid and constant positive value in the solid. Unknowns are the phase field function and a dimensionless temperature, as proposed by [1]. Linear finite element interpolation is used for both variables, and discretization stabilization techniques ensure convergence towards a correct non-oscillating solution. In order to perform quantitati...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
An anisotropic phase-field model is used to simulate numerically dendritic solidification for a pure...
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
Dendritic growth is computed using a phase-field model with automatic adaptation of an anisotropic a...
Dendritic growth is computed using a phase-field model with automatic adaptation of an anisotropic a...
Dendritic growth is computed using a phase-field model with automatic adaptation of an anisotropic a...
La croissance dendritique est calculée en utilisant un modèle champ de phase avec adaptation automat...
A phase field model describing the solidification of a binary alloy is investigated. The location of...
A phase field model is used to numerically simulate the solidification of a pure material. We employ...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
We compute solutions of solutal phase-field models for dendritic growth of an isothermal binary allo...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
An anisotropic phase-field model is used to simulate numerically dendritic solidification for a pure...
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
Dendritic growth is computed using a phase-field model with automatic adaptation of an anisotropic a...
Dendritic growth is computed using a phase-field model with automatic adaptation of an anisotropic a...
Dendritic growth is computed using a phase-field model with automatic adaptation of an anisotropic a...
La croissance dendritique est calculée en utilisant un modèle champ de phase avec adaptation automat...
A phase field model describing the solidification of a binary alloy is investigated. The location of...
A phase field model is used to numerically simulate the solidification of a pure material. We employ...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
We compute solutions of solutal phase-field models for dendritic growth of an isothermal binary allo...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
In this work, we propose an efficient multi-mesh adaptive finite element method for simulating the d...
An anisotropic phase-field model is used to simulate numerically dendritic solidification for a pure...