Coupling dense and dilute granular flows in a high shear Mi-Pro granulator
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- Type
- dissertation
- Published
- 2014-01-01
- Cited by
- 0
- References
- 30
- OpenAlex
- https://openalex.org/W47643520
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:55149329
Keywords
Impeller, Rheology, Mechanics, Shear (geology), Materials science
References
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- Rheology of a dense granular material
- Kinetic theories for granular flow: inelastic particles in Couette flow and slightly inelastic particles in a general flowfield
- Scaleup of wet granulation processes: science not art
- Fluid dynamics simulation of the high shear mixing process
- Crucial role of sidewalls in granular surface flows: consequences for the rheology
- Dense fluid transport for inelastic hard spheres.
- A two-phase mixture theory for the deflagration-to-detonation transition (ddt) in reactive granular materials
- Instability in the evolution equations describing incompressible granular flow
- Rheophysics of dense granular materials: discrete simulation of plane shear flows.
- Parameter study of a kinetic-frictional continuum model of a disk impeller high-shear granulator
- Frictional–collisional constitutive relations for granular materials, with application to plane shearing
- Modeling dilute and dense granular flows in a high shear granulator
- Nucleation, growth and breakage phenomena in agitated wet granulation processes: a review
- CFD simulation of the high shear mixing process using kinetic theory of granular flow and frictional stress models
- The stress tensor in a granular flow at high shear rates
- The rheology of dense granular flows in a disc impeller high shear granulator
- Impact: the theory and physical behaviour of colliding solids.
- Locally averaged equations of motion for a mixture of identical spherical particles and a Newtonian fluid
- The effects of an impact velocity dependent coefficient of restitution on stresses developed by sheared granular materials
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