A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bounce against a horizontal glass plate. The multiscale nature of the problem, where the bubble size is on the millimetre range and the film drainage process happens on the micrometre to nanometre scale requires the combined use of different modelling techniques. On the macro scale we solve the full Navier-Stokes equations in cylindrical coordinates to model bubble rise whereas modelling film drainage on the micro scale is based on lubrication theory because the film Reynolds number becomes much smaller than unity. Quantitative predictions of this model are compared with experimental data obtained using synchronised high-speed cameras. Video rec...
Collision between a gas bubble and a rigid surface is a fundamental fluid mechanic process, both lar...
The interaction of a bubble with solid surfaces, hydrophobic and hydrophilic, was investigated. When...
a r t i c l e i n f o different length scales. Identifying the bubble interface and its deformation ...
A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bou...
A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bou...
A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bou...
Collisions between millimeter-size bubbles in water against a glass plate are studied using high-spe...
A force balance model has been developed to predict the terminal velocity of a sub-millimetric bubbl...
Nanoscale interfaces among liquids, solids and gases determine the macroscopic dynamics of a bubble ...
The rising process of a bubble occurs in several natural and industrial apparatuses. This process is...
A force balance model has been developed to predict the terminal velocity of a sub-millimetric bubbl...
A force balance model for the rise and impact of air bubbles in a liquid against rigid horizontal su...
ABSTRACT: A force balance model for the rise and impact of air bubbles in a liquid against rigid hor...
Using Arbitrary Lagrangian-Eulerian method on an adaptive moving unstructured mesh, we carry out nu-...
Using an arbitrary Lagrangian-Eulerian method on an adaptive moving unstructured mesh, we carry out ...
Collision between a gas bubble and a rigid surface is a fundamental fluid mechanic process, both lar...
The interaction of a bubble with solid surfaces, hydrophobic and hydrophilic, was investigated. When...
a r t i c l e i n f o different length scales. Identifying the bubble interface and its deformation ...
A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bou...
A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bou...
A theoretical model has been developed to analyse bubble rise in water and subsequent impact and bou...
Collisions between millimeter-size bubbles in water against a glass plate are studied using high-spe...
A force balance model has been developed to predict the terminal velocity of a sub-millimetric bubbl...
Nanoscale interfaces among liquids, solids and gases determine the macroscopic dynamics of a bubble ...
The rising process of a bubble occurs in several natural and industrial apparatuses. This process is...
A force balance model has been developed to predict the terminal velocity of a sub-millimetric bubbl...
A force balance model for the rise and impact of air bubbles in a liquid against rigid horizontal su...
ABSTRACT: A force balance model for the rise and impact of air bubbles in a liquid against rigid hor...
Using Arbitrary Lagrangian-Eulerian method on an adaptive moving unstructured mesh, we carry out nu-...
Using an arbitrary Lagrangian-Eulerian method on an adaptive moving unstructured mesh, we carry out ...
Collision between a gas bubble and a rigid surface is a fundamental fluid mechanic process, both lar...
The interaction of a bubble with solid surfaces, hydrophobic and hydrophilic, was investigated. When...
a r t i c l e i n f o different length scales. Identifying the bubble interface and its deformation ...