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Behavior of a particle-laden flow in a spiral channel
Sungyon Lee
, Yvonne Stokes
, Andrea L. Bertozzi
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
30
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Scopus citations
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Keyphrases
Particle-laden Flow
100%
Slurry
100%
Vertical Axis
100%
Spiral Microchannel
100%
Spiral Separator
100%
Monodisperse
50%
Particle Dynamics
50%
Particle Concentration
50%
Steady State
50%
Flow Field
50%
Helix
50%
Gravity-driven
50%
Particle-fluid
50%
Monodisperse Particles
50%
Simultaneous Use
50%
Rectangular Channel
50%
Particle-based
50%
Mineral Processing
50%
Specific Gravity
50%
Gravitational Force
50%
Clear Fluids
50%
State Limit
50%
Segregation Mechanism
50%
Equilibrium Profile
50%
Centripetal Force
50%
Size Segregation
50%
Gravity Separator
50%
Spiral Geometry
50%
Thin Film Approximation
50%
Fluid Depth
50%
Engineering
Experimental Result
100%
Particle Concentration
100%
Rectangular Channel
100%
Theoretical Work
100%
Limit State
100%
Particle Dynamic
100%
Ore Treatment
100%
Gravitational Force
100%
Clear Fluid
100%
Slurry Particle
100%
Simultaneous Application
100%
Thin Films
100%
Centripetal Force
100%
Flow Distribution
100%
Material Science
Density (Specific Gravity)
100%
Thin Films
100%
Slurry Particle
100%
Physics
Steady State
100%
Thin Films
100%
Flow Distribution
100%
Chemical Engineering
Film
100%