Pinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flowing and countercurrent flow focusing geometries, was investigated using an incompressible three-phase axisymmetric Volume of Fluid–Continuum Surface Force (VOF–CSF) numerical model. The model showed good agreement with the experimental drop generation and was capable of predicting formation of core/shell droplets in dripping, narrowing jetting and widening jetting regimes. In dripping and widening jetting regimes, the presence of a vortex flow around the upstream end of the necking thread facilitates the jet break-up. No vortex flow was observed in narrowing jetting regime and pinch-off occurred due to higher velocity at the downstream end of the co...
Microfluidic devices can be used to produce highly controlled and monodisperse double or multiple em...
While shear emulsification is a well understood industrial process, geometrical confinement in micro...
We report a study of the capillary pinching of a gas bubble by a wetting liquid inside a pinched cha...
Pinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flowing and...
AbstractPinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flo...
Hypothesis - Predicting formation mode of double emulsion drops in microfluidic emulsification is cr...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
<div><div>Supplementary video file 1 for Prediction and control of drop formation modes in microflui...
Supplementary Information files for Prediction and control of drop formation modes in microfluidic g...
The regimes of drop generation were studied in a Dolomite microfluidic device which combined both hy...
Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capilla...
<p>This thesis explores relevant fluid dynamic processes for the formation of uniformly sized drople...
Microfluidic devices can be used to produce highly controlled and monodisperse double or multiple em...
While shear emulsification is a well understood industrial process, geometrical confinement in micro...
We report a study of the capillary pinching of a gas bubble by a wetting liquid inside a pinched cha...
Pinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flowing and...
AbstractPinch-off of a compound jet in 3D glass capillary microfluidic device, which combines co-flo...
Hypothesis - Predicting formation mode of double emulsion drops in microfluidic emulsification is cr...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
<div><div>Supplementary video file 1 for Prediction and control of drop formation modes in microflui...
Supplementary Information files for Prediction and control of drop formation modes in microfluidic g...
The regimes of drop generation were studied in a Dolomite microfluidic device which combined both hy...
Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capilla...
<p>This thesis explores relevant fluid dynamic processes for the formation of uniformly sized drople...
Microfluidic devices can be used to produce highly controlled and monodisperse double or multiple em...
While shear emulsification is a well understood industrial process, geometrical confinement in micro...
We report a study of the capillary pinching of a gas bubble by a wetting liquid inside a pinched cha...