Adding an intermediate phase (gaseous or granular) between a drop and a surface prevent the wetting of the liquid. We study experimentally the consequences of the presence of this phase on the movement of liquid drops. In a first part, we focus on situations of non-wetting induced by the presence of a gaseous film between the liquid and the surface. One consequence of this film is to set in motion a Leindenfrost drop on a hot asymmetric (ratchet-like) surface. We found that the asymmetric flow of gas through the vapor film between the droplet and the surface causes the propulsion of the drop by rocket effect. Conversely, the thin film insulation may induce additional viscous dissipation as observed for example in the rebound of a soap bubbl...
We investigate in several experiments the link between dissipation and deformable liquid interfaces....
Liquid interfaces may undergo important deformations when subjected to flows. In the first part, we ...
In this experimental thesis, we are interested in droplets collisions involving asymmetric interface...
Adding an intermediate phase (gaseous or granular) between a drop and a surface prevent the wetting ...
Adding an intermediate phase (gaseous or granular) between a drop and a surface prevent the wetting ...
Through several experiments, we investigate situations for which interfaces play a major role on the...
The interfacial phenomena in multiphase flows widely exist in numerous industrial processes. Drops a...
Biphasic flows in porous media generally lead to the emulsification of one phase into the other. Thi...
Biphasic flows in porous media generally lead to the emulsification of one phase into the other. Thi...
Biphasic flows in porous media generally lead to the emulsification of one phase into the other. Thi...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
We investigate in several experiments the link between dissipation and deformable liquid interfaces....
We investigate in several experiments the link between dissipation and deformable liquid interfaces....
Liquid interfaces may undergo important deformations when subjected to flows. In the first part, we ...
In this experimental thesis, we are interested in droplets collisions involving asymmetric interface...
Adding an intermediate phase (gaseous or granular) between a drop and a surface prevent the wetting ...
Adding an intermediate phase (gaseous or granular) between a drop and a surface prevent the wetting ...
Through several experiments, we investigate situations for which interfaces play a major role on the...
The interfacial phenomena in multiphase flows widely exist in numerous industrial processes. Drops a...
Biphasic flows in porous media generally lead to the emulsification of one phase into the other. Thi...
Biphasic flows in porous media generally lead to the emulsification of one phase into the other. Thi...
Biphasic flows in porous media generally lead to the emulsification of one phase into the other. Thi...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
This thesis is devoted to the bubble(s) and solid particle(s) interactions near the surface of a liq...
We investigate in several experiments the link between dissipation and deformable liquid interfaces....
We investigate in several experiments the link between dissipation and deformable liquid interfaces....
Liquid interfaces may undergo important deformations when subjected to flows. In the first part, we ...
In this experimental thesis, we are interested in droplets collisions involving asymmetric interface...