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Vortex interaction and mixing in a driven gaseous axisymmetric jet
T. R. Meyer
,
J. C. Dutton
, R. P. Lucht
Aerospace Engineering
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peer-review
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Keyphrases
Acoustic Forcing
50%
Axisymmetric Jet
100%
Coflow
100%
Cold Chemistry
50%
Convection Velocity
50%
Diffusion Layer
50%
Dissipation Field
50%
Entrainment
50%
Flourescence
50%
Flowing Fluid
100%
Fluid Volume Fractions
50%
Jet Flow
50%
Laser-induced
50%
Mixed Core
50%
Mixing Characteristics
50%
Mixing Properties
50%
Mixing State
50%
Molecular Diffusion
50%
Near-field
50%
Passive Scalar
50%
Planar Laser
50%
Pure Water
50%
Re-entrainment
100%
Scalar Dissipation
50%
Temporal Evolution
50%
Trailing Vortex
100%
Vortex
100%
Vortex Approach
50%
Vortex Convection
50%
Vortex Core
50%
Vortex Dynamics
50%
Vortex Formation
50%
Vortex Interactions
100%
Vortex Merging
50%
Vortex Mixing
100%
Vortex Pair
100%
Vortex Roll-up
100%
Vorticity
50%
Physics
Fluid Flow
100%
Fluid Jet
50%
Homogenizing
50%
Molecular Diffusion
50%
Vorticity
50%
Engineering
Axisymmetric
100%
Convection Velocity
7%
Core Region
15%
Diffusion Layer
7%
Fluid Flow
15%
Pure Fluid
7%
Temporal Evolution
7%
Vortex
100%
Vortex Dynamics
7%
Vorticity
7%