This article presents a complementary experimental and computational investigation of the effect of viscosity and flowrate on the dynamics of drop formation in the dripping mode. In contrast to previous studies, numerical simulations are performed with two popular commercial computational fluid dynamics (CFD) packages, CFX and FLOW-3D, both of which employ the volume of fluid (VOF) method. Comparison with previously published experimental and computational data and new experimental results reported here highlight the capabilities and limitations of the aforementioned packages
Microdrop impact and spreading phenomena are explored as an interface formation process using a rece...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
Computational fluid dynamics (CFD) modelling has been applied to study the behaviour of organic-aque...
Shear-induced droplet formation is important in many industrial applications, where the primary focu...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
AbstractA volume-of-fluid numerical method is used to predict the dynamics of shear-thinning liquid ...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
The breakup of drops in an inhomogeneous flow is the key to emulsification. Frequently, the local fl...
Formation of incompressible Newtonian liquid drops of density ρ, viscosity μ, and surface tension σ ...
Microdrop impact and spreading phenomena are explored as an interface formation process using a rece...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
Computational fluid dynamics (CFD) modelling has been applied to study the behaviour of organic-aque...
Shear-induced droplet formation is important in many industrial applications, where the primary focu...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
AbstractA volume-of-fluid numerical method is used to predict the dynamics of shear-thinning liquid ...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
A volume-of-fluid numerical method is used to predict the dynamics of drop formation from a nozzle w...
The breakup of drops in an inhomogeneous flow is the key to emulsification. Frequently, the local fl...
Formation of incompressible Newtonian liquid drops of density ρ, viscosity μ, and surface tension σ ...
Microdrop impact and spreading phenomena are explored as an interface formation process using a rece...
An experimental study of drop dynamics under shear is conducted for five fluid pairs: a reference Ne...
Computational fluid dynamics (CFD) modelling has been applied to study the behaviour of organic-aque...