The breakup of confined drops in shear flow between parallel plates is investigated as a function of viscosity ratio and confinement ratio. Using a boundary-integral method for numerical simulations and a counter-rotating experimental device, critical capillary numbers in shear flow are obtained. It is observed that different viscosity ratios yield different trends with increasing confinement ratio: a low viscosity ratio drop shows an increase in critical capillary number, at a viscosity ratio of unity no major trend is seen, and the critical capillary number for a high viscosity ratio drop decreases significantly. A generalized explanation for all viscosity ratios is that confinement affects the orientation of the drop with respect to the ...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
This study is to understand confinement effect on the dynamical behaviour of a droplet immersed in a...
© 2014 The Society of Rheology. The effects of geometrical confinement and viscosity ratio on drople...
The breakup of confined drops in shear flow between parallel plates is investigated as a function of...
The breakup of confined drops in shear flow between parallel plates is investigated as a function of...
The breakup of confined drops in shear flow between parallel plates is investigated as a function of...
The effects of geometrical confinement and viscosity ratio on droplet coalescence in shear flow are ...
The effects of geometrical confinement and viscosity ratio on droplet coalescence in shear flow are ...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
This study is to understand confinement effect on the dynamical behaviour of a droplet immersed in a...
© 2014 The Society of Rheology. The effects of geometrical confinement and viscosity ratio on drople...
The breakup of confined drops in shear flow between parallel plates is investigated as a function of...
The breakup of confined drops in shear flow between parallel plates is investigated as a function of...
The breakup of confined drops in shear flow between parallel plates is investigated as a function of...
The effects of geometrical confinement and viscosity ratio on droplet coalescence in shear flow are ...
The effects of geometrical confinement and viscosity ratio on droplet coalescence in shear flow are ...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
Droplet breakup in systems with either a viscoelastic matrix or a viscoelastic droplet is studied mi...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
A slender-body analysis is presented for the deformation and break-up of a highly confined and highl...
This study is to understand confinement effect on the dynamical behaviour of a droplet immersed in a...
© 2014 The Society of Rheology. The effects of geometrical confinement and viscosity ratio on drople...