New results on mixing times for viscous Newtonian and non-Newtonian fluids being homogenized with a helical ribbon impeller are presented. In particular, a recently developed technique to determine the macromixing kinetics of an impeller in a transparent vessel was applied to investigate the effects of rheological properties on mixing times. Significant differences were observed in the mixing times for viscous Newtonian and non-Newtonian fluids. Based on the new data obtained in this work, a correlation incorporating the elastic effects is proposed in terms of a Weissenberg number for predicting the mixing time as a function of the Reynolds number and the system geometry
AbstractThe mixing of ideal viscoelastic (Boger) fluids within a Kenics KM static mixer has been ass...
This paper reports on an experimental study of mixing intensification using speed modulation of a si...
This paper presents an analysis of the blending characteristics of axial flow high-speed impellers u...
AbstractThe mixing of high viscosity and viscoelastic fluids may be performed in industry using a “b...
Part AInternational audienceThis paper investigates the way of improving the mixing of highly viscou...
This work investigates the laminar mixing performance of viscoelastic fluids in laboratory-scale bat...
In this article, the data assembled regarding the mixing of Newtonian and shear thinning fluids by s...
The influence of shear thinning and viscoelasticity on the power required for the mixing of viscous ...
The present paper deals with the mixing of a highly viscous fluid by close-clearance impellers in cy...
helical ribbon impeller; viscoelastic liquids; mixing. (*) To whom correspondence to be addressed
A fundamental model of fluid circulation in polymerization reactors agitated by helical ribbon impel...
Fluid mixing plays an essential role in many microfluidic applications. Here, we compare the mixing ...
Mixing has the most common occurrence in process industries like chemical, food and polymer and play...
A blend time investigation for stirred tanks was conducted to study the effect of impeller type (A31...
Mixing of high viscous liquids at low Reynolds numbers often leadas to inefficient mixing due to the...
AbstractThe mixing of ideal viscoelastic (Boger) fluids within a Kenics KM static mixer has been ass...
This paper reports on an experimental study of mixing intensification using speed modulation of a si...
This paper presents an analysis of the blending characteristics of axial flow high-speed impellers u...
AbstractThe mixing of high viscosity and viscoelastic fluids may be performed in industry using a “b...
Part AInternational audienceThis paper investigates the way of improving the mixing of highly viscou...
This work investigates the laminar mixing performance of viscoelastic fluids in laboratory-scale bat...
In this article, the data assembled regarding the mixing of Newtonian and shear thinning fluids by s...
The influence of shear thinning and viscoelasticity on the power required for the mixing of viscous ...
The present paper deals with the mixing of a highly viscous fluid by close-clearance impellers in cy...
helical ribbon impeller; viscoelastic liquids; mixing. (*) To whom correspondence to be addressed
A fundamental model of fluid circulation in polymerization reactors agitated by helical ribbon impel...
Fluid mixing plays an essential role in many microfluidic applications. Here, we compare the mixing ...
Mixing has the most common occurrence in process industries like chemical, food and polymer and play...
A blend time investigation for stirred tanks was conducted to study the effect of impeller type (A31...
Mixing of high viscous liquids at low Reynolds numbers often leadas to inefficient mixing due to the...
AbstractThe mixing of ideal viscoelastic (Boger) fluids within a Kenics KM static mixer has been ass...
This paper reports on an experimental study of mixing intensification using speed modulation of a si...
This paper presents an analysis of the blending characteristics of axial flow high-speed impellers u...