Diffuse and sharp interface models represent two alternatives to describe phase transitions with an interface between two coexisting phases. The two model classes can be independently formulated. Thus there arises the problem whether the sharp limit of the diffuse model fits into the setting of a corresponding sharp interface model. We call a diffuse model admissible if its sharp limit produces interfacial jump conditions that are consistent with the balance equations and the 2nd law of thermodynamics for sharp interfaces. We use special cases of the viscous Cahn- Hilliard equation to show that there are admissible as well as non-admissible diffuse interface models
In this thesis we rigorously prove that the Cahn-Larché system converges to a modified Hele-Shaw pro...
In this article, we study the behaviour of the Abels-Garcke-Grün Navier-Stokes-Cahn- Hilliard diffus...
We discuss the sharp interface limit of a diffuse interface model for a two-phase flow of two partly...
Diffuse and sharp interface models represent two alternatives to describe phase transitions with an ...
Diffuse and sharp interface models represent two alternatives to describe phase transitions with an ...
We introduce a diffuse interface model describing the evolution of a mixture of two different viscou...
A new diffuse interface model for a two-phase ow of two incompressible fluids with different densit...
In this contribution, we investigate a diffuse interface model for quasi-incompressible flows. We de...
We introduce a new thermodynamically consistent diffuse interface model of AllenCahn/NavierStokes ty...
A new diffuse interface model for a two-phase flow of two incompressible fluids with different dens...
In this contribution, we investigate a diffuse interface model for quasi–incompressible flows. We de...
This work introduces a new thermodynamically consistent diffuse model for two-component flows of inc...
We discuss the sharp interface limit of a diffuse interface model for a two-phase flow of two partly...
We study the equilibria of liquid--vapor phase transitions of a single substance at constant tempera...
We study the equilibria of liquid--vapor phase transitions of a single substance at constant tempera...
In this thesis we rigorously prove that the Cahn-Larché system converges to a modified Hele-Shaw pro...
In this article, we study the behaviour of the Abels-Garcke-Grün Navier-Stokes-Cahn- Hilliard diffus...
We discuss the sharp interface limit of a diffuse interface model for a two-phase flow of two partly...
Diffuse and sharp interface models represent two alternatives to describe phase transitions with an ...
Diffuse and sharp interface models represent two alternatives to describe phase transitions with an ...
We introduce a diffuse interface model describing the evolution of a mixture of two different viscou...
A new diffuse interface model for a two-phase ow of two incompressible fluids with different densit...
In this contribution, we investigate a diffuse interface model for quasi-incompressible flows. We de...
We introduce a new thermodynamically consistent diffuse interface model of AllenCahn/NavierStokes ty...
A new diffuse interface model for a two-phase flow of two incompressible fluids with different dens...
In this contribution, we investigate a diffuse interface model for quasi–incompressible flows. We de...
This work introduces a new thermodynamically consistent diffuse model for two-component flows of inc...
We discuss the sharp interface limit of a diffuse interface model for a two-phase flow of two partly...
We study the equilibria of liquid--vapor phase transitions of a single substance at constant tempera...
We study the equilibria of liquid--vapor phase transitions of a single substance at constant tempera...
In this thesis we rigorously prove that the Cahn-Larché system converges to a modified Hele-Shaw pro...
In this article, we study the behaviour of the Abels-Garcke-Grün Navier-Stokes-Cahn- Hilliard diffus...
We discuss the sharp interface limit of a diffuse interface model for a two-phase flow of two partly...