This work describes the development of a continuum phase field model that can describe static as well as dynamic wetting scenarios on the nano- and microscale. The model reaches this goal by a direct integration of an equation of state as well as a direct integration of the dissipative properties of a specific fluid, which are both obtained from molecular simulations. The presented approach leads to good agreement between the predictions of the phase field model and the physical properties of the regarded fluid. The implementation of the model employs a mixed finite element formulation, a newly developed semi-implicit time integration scheme, as well as the concept of hyper-dual numbers. This ensures a straightforward and robust exc...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In order to be able to predict the static solution of three dimensional wetting scenarios, a free en...
To understand how the motion of a droplet on a surface can be controlled by wettability gradients is...
Dynamic wetting of component surfaces can be investigated by finite element phase field simulations....
Dynamic wetting of component surfaces can be investigated by finite element phase field simulations....
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In the proposed phase field model a continuous order parameter indicates the phase distribution (liq...
The motion of the three-phase contact line between two immiscible fluids and a solid surface arises ...
The motion of the three-phase contact line between two immiscible fluids and a solid surface arises ...
We propose a new numerical method to solve the Cahn-Hilliard equation coupled with non-linear wettin...
We propose a new numerical method to solve the Cahn-Hilliard equation coupled with non-linear wettin...
Molecular dynamics (MD) and volume of fluid (VOF) are powerful methods for the simulation of dynamic...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In order to be able to predict the static solution of three dimensional wetting scenarios, a free en...
To understand how the motion of a droplet on a surface can be controlled by wettability gradients is...
Dynamic wetting of component surfaces can be investigated by finite element phase field simulations....
Dynamic wetting of component surfaces can be investigated by finite element phase field simulations....
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In the proposed phase field model a continuous order parameter indicates the phase distribution (liq...
The motion of the three-phase contact line between two immiscible fluids and a solid surface arises ...
The motion of the three-phase contact line between two immiscible fluids and a solid surface arises ...
We propose a new numerical method to solve the Cahn-Hilliard equation coupled with non-linear wettin...
We propose a new numerical method to solve the Cahn-Hilliard equation coupled with non-linear wettin...
Molecular dynamics (MD) and volume of fluid (VOF) are powerful methods for the simulation of dynamic...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
In our daily life and many of industrial applications, we usually find fluids which interact with so...
In our daily life and many of industrial applications, we usually find fluids which interact with so...