The dynamics of single droplets in a bounded shear flow is experimentally and numerically investigated for blends that contain one viscoelastic component. Results are presented for systems with a viscosity ratio of 1.5 and a Deborah number for the viscoelastic phase of 1. The numerical algorithm is a volume-of-fluid method for tracking the placement of the two liquids. First, we demonstrate the validation of the code with an existing boundary integral method and with experimental data for confined systems containing Newtonian components. This is followed by numerical simulations and experimental data for the combined effect of geometrical confinement and component viscoelasticity on the droplet dynamics after startup of shear flow at a mode...
Two-phase viscoelastic systems are computationally studied in a pressure-driven flow with a sudden c...
Using a counter rotating parallel plate shear flow cell, the shape relaxation of deformed droplets i...
A modified Volume-of-Fluid numerical method is developed to predict the transient deformation of a v...
The dynamics of single droplets in a bounded shear flow is experimentally and numerically investigat...
By using a counter rotating plate-plate device, single droplets in shear flow have been microscopica...
The transient droplet deformation and droplet orientation after inception of shear, the shape relaxa...
The deformation and breakup of Newtonian and viscoelastic droplets are studied in confined shear flo...
The dynamics of confined droplets in shear flow is investigated using computational and experimental...
The deformation and break-up of Newtonian/viscoelastic droplets are studied in confined shear flow. ...
A computational fluid dynamics algorithm that uses a volume of fluid method to model immiscible phas...
Using a counter rotating parallel plate shear flow cell, the shape relaxation of deformed droplets i...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Two-phase viscoelastic systems are computationally studied in a pressure-driven flow with a sudden c...
Using a counter rotating parallel plate shear flow cell, the shape relaxation of deformed droplets i...
A modified Volume-of-Fluid numerical method is developed to predict the transient deformation of a v...
The dynamics of single droplets in a bounded shear flow is experimentally and numerically investigat...
By using a counter rotating plate-plate device, single droplets in shear flow have been microscopica...
The transient droplet deformation and droplet orientation after inception of shear, the shape relaxa...
The deformation and breakup of Newtonian and viscoelastic droplets are studied in confined shear flo...
The dynamics of confined droplets in shear flow is investigated using computational and experimental...
The deformation and break-up of Newtonian/viscoelastic droplets are studied in confined shear flow. ...
A computational fluid dynamics algorithm that uses a volume of fluid method to model immiscible phas...
Using a counter rotating parallel plate shear flow cell, the shape relaxation of deformed droplets i...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Two-phase viscoelastic systems are computationally studied in a pressure-driven flow with a sudden c...
Using a counter rotating parallel plate shear flow cell, the shape relaxation of deformed droplets i...
A modified Volume-of-Fluid numerical method is developed to predict the transient deformation of a v...