ABSTRACT: The vast majority of solid–liquid mixing studies have focused on high Reynolds number applications with configurations and impeller geometries adapted to this type of regime. However, the mixing of particles in a viscous fluid is an essential element of many contemporary industries. We used the computational fluid dynamics-discrete element method model previously developed in our group to investigate solid–liquid mixing with close-clearance impellers in the laminar regime of operation. We compared different geometries, that is, the double helical ribbon, anchor, Paravisc™, and Maxblend™ impellers. We investigated the impact of fluid viscosity and compared the results with those obtained with the pitched blade turbine, a more commo...
Red. serii Monografie : Wodziński, PiotrBased on years of industrial experience and laboratory tests...
Design and operation of mixing systems using agitated vessels is a difficult task due to the challen...
Anchor impellers are used specially for highly viscous flow, with the viscosity ranging from 10 to 1...
ABSTRACT: In chemical engineering, numerous processes require the suspension of particles in a lamin...
Application of large blade impellers to turbulent single-phase and two-phase mixing is investigated ...
ABSTRACT: Although viscous solid–liquid mixing plays a key role in the industry, the vast majority o...
The effect of multiple Intermig impeller configuration on hydrodynamics and mixing performance in a ...
The project of chemical processes and equipments is a task that demands a significant experimental s...
Design of the impeller blade is a determining factor in power consumption and mixing quality, which ...
Laminar mixing in stirred vessels is often inefficient due to the presence of flowstructures generat...
Particle suspension in Newtonian fluids of viscosities from 0.01 to 1 Pa s have been studied using R...
The impeller design is the most crucial parameter to enhance the performance of stirred tanks. The c...
ABSTRACT: Mixing applications operating in the laminar regime are used in numerous industrial proces...
The effect of impeller clearance and liquid level on the critical impeller speed (Njs) for various r...
A poor understanding of mixing dynamics may lead to major economic losses in numerous industries due...
Red. serii Monografie : Wodziński, PiotrBased on years of industrial experience and laboratory tests...
Design and operation of mixing systems using agitated vessels is a difficult task due to the challen...
Anchor impellers are used specially for highly viscous flow, with the viscosity ranging from 10 to 1...
ABSTRACT: In chemical engineering, numerous processes require the suspension of particles in a lamin...
Application of large blade impellers to turbulent single-phase and two-phase mixing is investigated ...
ABSTRACT: Although viscous solid–liquid mixing plays a key role in the industry, the vast majority o...
The effect of multiple Intermig impeller configuration on hydrodynamics and mixing performance in a ...
The project of chemical processes and equipments is a task that demands a significant experimental s...
Design of the impeller blade is a determining factor in power consumption and mixing quality, which ...
Laminar mixing in stirred vessels is often inefficient due to the presence of flowstructures generat...
Particle suspension in Newtonian fluids of viscosities from 0.01 to 1 Pa s have been studied using R...
The impeller design is the most crucial parameter to enhance the performance of stirred tanks. The c...
ABSTRACT: Mixing applications operating in the laminar regime are used in numerous industrial proces...
The effect of impeller clearance and liquid level on the critical impeller speed (Njs) for various r...
A poor understanding of mixing dynamics may lead to major economic losses in numerous industries due...
Red. serii Monografie : Wodziński, PiotrBased on years of industrial experience and laboratory tests...
Design and operation of mixing systems using agitated vessels is a difficult task due to the challen...
Anchor impellers are used specially for highly viscous flow, with the viscosity ranging from 10 to 1...