AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and parallel computation to solve a multi-scale, time dependent, three dimensional, nonlinear set of coupled partial differential equations for three scalar field variables. The mathematical model represents the non-isothermal solidification of a metal alloy into a melt substantially cooled below its freezing point at the microscale. Underlying physical molecular forces are captured at this scale by a specification of the energy field. The time rate of change of the temperature, alloy concentration and an order parameter to govern the state of the material (liquid or solid) are controlled by the diffusion parameters and variational derivatives o...
We present a computational method for the simulation of the solidification of multicomponent alloys....
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
A recently developed numerical method for single-component phase-change problems is extended to trea...
We employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and paralle...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
Abstract. We review the application of advanced numerical techniques such as adaptive mesh refinemen...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
A fully implicit numerical method, based upon a combination of adaptively refined hierarchical meshe...
A fully implicit numerical method, based upon a combination of adaptively refined hierarchical meshe...
AbstractIn this paper we present some theoretical results for a system of nonlinear partial differen...
We present our computational method for binary alloy solidification which takes advantage of high pe...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
This paper shows how to move from a specification of free energy for the solidification of a binary ...
We present a computational method for the simulation of the solidification of multicomponent alloys....
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
A recently developed numerical method for single-component phase-change problems is extended to trea...
We employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and paralle...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
Abstract. We review the application of advanced numerical techniques such as adaptive mesh refinemen...
We review the application of advanced numerical techniques such as adaptive mesh refinement, implici...
A fully implicit numerical method, based upon a combination of adaptively refined hierarchical meshe...
A fully implicit numerical method, based upon a combination of adaptively refined hierarchical meshe...
AbstractIn this paper we present some theoretical results for a system of nonlinear partial differen...
We present our computational method for binary alloy solidification which takes advantage of high pe...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
This paper shows how to move from a specification of free energy for the solidification of a binary ...
We present a computational method for the simulation of the solidification of multicomponent alloys....
International audienceDendritic growth is computed with automatic adaptation of an anisotropic and u...
A recently developed numerical method for single-component phase-change problems is extended to trea...