International audienceWe develop and analyse the first second-order phase-field model to combine melting and dissolution in multi-component flows. This provides a simple and accurate way to simulate challenging phase-change problems in existing codes. Phase-field models simplify computation by describing separate regions using a smoothed phase field. The phase field eliminates the need for complicated discretisations that track the moving phase boundary. However standard phase-field models are only first-order accurate. They often incur an error proportional to the thickness of the diffuse interface. We eliminate this dominant error by developing a general framework for asymptotic analysis of diffuse-interface methods in arbitrary geometrie...
The motion of microstructural interfaces is important in modeling materials that undergo twinning an...
We present a phase field model which approximates a one-phase Stefan-like problem with a kinetic con...
Multiphase flows are generally modeled assuming that the different phases are separated by an interf...
International audienceWe develop and analyse the first second-order phase-field model to combine mel...
In this paper, the modelling of phase change in an incompressible two-phase flow solver is detailed ...
We review the phase field (otherwise called diffuse interface) model for fluid flows, where all quan...
Many material phase transformations are controlled by mass transport induced by diffusion. To better...
While the phase-field methodology is widely adopted for simulating two-phase flows, the simulation o...
Fluid-solid interactions have wide-ranging implications for science, engineering, and the global cli...
The phase-field model of solidification is extended to include the effects of fluid flow in the melt...
In this paper we focus on melting and solidification processes described by phase-field models and o...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
We consider a porous medium with a pore space that is completely filled by three different phases: t...
Multiphase flows play a central role in problems related to the environment and industry. Common, b...
AbstractThis paper describes progress on a consistent approach for multi-phase flow modelling with p...
The motion of microstructural interfaces is important in modeling materials that undergo twinning an...
We present a phase field model which approximates a one-phase Stefan-like problem with a kinetic con...
Multiphase flows are generally modeled assuming that the different phases are separated by an interf...
International audienceWe develop and analyse the first second-order phase-field model to combine mel...
In this paper, the modelling of phase change in an incompressible two-phase flow solver is detailed ...
We review the phase field (otherwise called diffuse interface) model for fluid flows, where all quan...
Many material phase transformations are controlled by mass transport induced by diffusion. To better...
While the phase-field methodology is widely adopted for simulating two-phase flows, the simulation o...
Fluid-solid interactions have wide-ranging implications for science, engineering, and the global cli...
The phase-field model of solidification is extended to include the effects of fluid flow in the melt...
In this paper we focus on melting and solidification processes described by phase-field models and o...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
We consider a porous medium with a pore space that is completely filled by three different phases: t...
Multiphase flows play a central role in problems related to the environment and industry. Common, b...
AbstractThis paper describes progress on a consistent approach for multi-phase flow modelling with p...
The motion of microstructural interfaces is important in modeling materials that undergo twinning an...
We present a phase field model which approximates a one-phase Stefan-like problem with a kinetic con...
Multiphase flows are generally modeled assuming that the different phases are separated by an interf...