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On the effects of dilute polymers on driven cavity turbulent flows
Alex Liberzon
*
*
Corresponding author for this work
School of Mechanical Engineering
International Collaboration for Turbulence Research
Research output
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Contribution to journal
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Article
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peer-review
12
Scopus citations
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Keyphrases
Dilute Polymers
100%
Turbulent Flow
100%
Reynolds Stress
100%
Driven Cavity
100%
Vorticity
40%
Velocity Correlation
40%
Velocity Field
20%
Evidence Support
20%
Particle Image Velocimetry
20%
Flow-based
20%
Vortex
20%
Spatial Distribution
20%
Constant Velocity
20%
Weak Correlation
20%
Liquid-solid
20%
Shear Flow
20%
Phenomenological Models
20%
Strain Rate
20%
Velocity Components
20%
Dilute Polymer Solutions
20%
Strain Field
20%
Spatial Fields
20%
Solid Boundary
20%
Fluctuating Velocity
20%
Polymerization Effect
20%
Turbulent Kinetic Energy Production
20%
Turbulent Velocity
20%
Cubic Lid-driven Cavity
20%
Two-dimensional Particle Image Velocimetry
20%
Engineering
Turbulent Flow
100%
Reynolds Stress
100%
Particle Image Velocimetry
40%
Vorticity
40%
Velocity Field
20%
Vortex
20%
Two Dimensional
20%
Strain Field
20%
Shear Flow
20%
Constant Velocity
20%
Energy Production
20%
Phenomenological Model
20%
Turbulent Kinetic Energy
20%
Rates of Strain
20%
Solid Boundary
20%
Fluctuating Velocity Component
20%
Turbulent Velocity
20%
Spatial Distribution
20%