We report a study of the capillary pinching of a gas bubble by a wetting liquid inside a pinched channel. The capillary pinching induces very reproducible bubbling, at a very well-defined frequency. There are two regimes associated with drip and jet bubbling. In the latter, we show that highly monodispersed bubbles are formed by our pinched channel. The dynamics of the bubble formation also shows two distinct regimes: a long-duration elongation of the air bubble and a rapid relaxation of the interface after interface breakup. The slow regime depends on the flux imposed and the channel geometry. The rapid deformation dynamic regime depends very weakly on the boundary conditions. Scaling arguments are proposed in the context of the lubrication ...
We create air bubbles at the tip of a “bathtub vortex” which reaches to a finite depth. The bathtub ...
Immiscible fluid-fluid displacement in partial wetting continues to challenge our microscopic and ma...
3rd European Conference on Microfluidics (Mu Flu), Heidelberg, GERMANY, DEC, 2012International audie...
The formation of microscopically small droplets and bubbles with an accurately controlled and narrow...
This work aims to investigate the breakup dynamics of the gas-liquid interface during bubble formati...
The pinch-off of a bubble is an example of the formation of a singularity, exhibiting a characterist...
We describe the breakup of a confined gas thread in a cross-flowing stream of liquid at capillary nu...
The formation of bubbles by flow focusing of a gas and a liquid in a rectangular channel is shown to...
Pinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flowing and...
We have previously found [J. Eggers, M. A. Fontelos, D. Leppinen, and J. H. Snoeijer, Phys. Rev. Let...
Here we provide a theoretical framework describing the generation of the fast jet ejected vertically...
This work aims to investigate the breakup dynamics of the low-density gas and liquid interface durin...
AbstractPinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flo...
We report a detailed experimental characterization of the periodic bubbling regimes that take place ...
A model for snap-off of a gas thread in a constricted cornered pore is developed. The time for wetti...
We create air bubbles at the tip of a “bathtub vortex” which reaches to a finite depth. The bathtub ...
Immiscible fluid-fluid displacement in partial wetting continues to challenge our microscopic and ma...
3rd European Conference on Microfluidics (Mu Flu), Heidelberg, GERMANY, DEC, 2012International audie...
The formation of microscopically small droplets and bubbles with an accurately controlled and narrow...
This work aims to investigate the breakup dynamics of the gas-liquid interface during bubble formati...
The pinch-off of a bubble is an example of the formation of a singularity, exhibiting a characterist...
We describe the breakup of a confined gas thread in a cross-flowing stream of liquid at capillary nu...
The formation of bubbles by flow focusing of a gas and a liquid in a rectangular channel is shown to...
Pinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flowing and...
We have previously found [J. Eggers, M. A. Fontelos, D. Leppinen, and J. H. Snoeijer, Phys. Rev. Let...
Here we provide a theoretical framework describing the generation of the fast jet ejected vertically...
This work aims to investigate the breakup dynamics of the low-density gas and liquid interface durin...
AbstractPinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flo...
We report a detailed experimental characterization of the periodic bubbling regimes that take place ...
A model for snap-off of a gas thread in a constricted cornered pore is developed. The time for wetti...
We create air bubbles at the tip of a “bathtub vortex” which reaches to a finite depth. The bathtub ...
Immiscible fluid-fluid displacement in partial wetting continues to challenge our microscopic and ma...
3rd European Conference on Microfluidics (Mu Flu), Heidelberg, GERMANY, DEC, 2012International audie...