A diffuse interface model is exploited to study in details the dynamics of a cavitation vapor bubble, by including phase change, transition to supercritical conditions, shock wave propagation and thermal conduction. The numerical experiments show that the actual dynamic is a sequence of collapses and rebounds demonstrating the importance of nonequilibrium phase changes. In particular the transition to supercritical conditions avoids the full condensation and leads to shockwave emission after the collapse and to successive bubble rebound
At the molecular scale, even in conditions of thermodynamic equilibrium, the fluids do not exhibit a...
Vapor bubbles are formed in liquids by two mechanisms: evaporation (temperature above the boiling th...
La cavitation est la transformation d'un liquide en vapeur qui est causée par une chute de pression ...
A diffuse interface model is exploited to study in details the dynamics of a cavitation vapor bubble...
In the present paper a diffuse interface approach is used to address the collapse of a sub-micron va...
In this paper a diffuse-interface model featuring phase change, transition to supercritical conditio...
In this Letter, the dynamics of a collapsing vapor bubble is addressed by means of a diffuse-interfa...
The cavitation phenomenon, namely the appearance and collapse of vapour/gas bubbles surrounded by th...
The collapse of a nano-bubble near a solid wall is addressed here exploiting a phase field model rec...
The nucleation of vapour bubbles in stretched or overheated (metastable) liquids is a complex phenom...
Vapor bubbles can be formed in liquids by increasing the temperature over the boiling threshold (eva...
Vapor bubbles are formed in liquids by two mechanisms: evaporation (temperature above the boiling th...
Cavitation is the transformation of a liquid into vapor which is caused by a pressure drop below the...
The interactions of bubbles with rigid and free boundaries have been well documented. Toroidal bubbl...
In the context of simulation of bubble dynamics and cavitation, even the simple problem of the colla...
At the molecular scale, even in conditions of thermodynamic equilibrium, the fluids do not exhibit a...
Vapor bubbles are formed in liquids by two mechanisms: evaporation (temperature above the boiling th...
La cavitation est la transformation d'un liquide en vapeur qui est causée par une chute de pression ...
A diffuse interface model is exploited to study in details the dynamics of a cavitation vapor bubble...
In the present paper a diffuse interface approach is used to address the collapse of a sub-micron va...
In this paper a diffuse-interface model featuring phase change, transition to supercritical conditio...
In this Letter, the dynamics of a collapsing vapor bubble is addressed by means of a diffuse-interfa...
The cavitation phenomenon, namely the appearance and collapse of vapour/gas bubbles surrounded by th...
The collapse of a nano-bubble near a solid wall is addressed here exploiting a phase field model rec...
The nucleation of vapour bubbles in stretched or overheated (metastable) liquids is a complex phenom...
Vapor bubbles can be formed in liquids by increasing the temperature over the boiling threshold (eva...
Vapor bubbles are formed in liquids by two mechanisms: evaporation (temperature above the boiling th...
Cavitation is the transformation of a liquid into vapor which is caused by a pressure drop below the...
The interactions of bubbles with rigid and free boundaries have been well documented. Toroidal bubbl...
In the context of simulation of bubble dynamics and cavitation, even the simple problem of the colla...
At the molecular scale, even in conditions of thermodynamic equilibrium, the fluids do not exhibit a...
Vapor bubbles are formed in liquids by two mechanisms: evaporation (temperature above the boiling th...
La cavitation est la transformation d'un liquide en vapeur qui est causée par une chute de pression ...