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Stereoscopic PIV measurements of a supersonic axisymmetric base flow
James V. Favale
, Ruben Hortensius
,
Gregory S. Elliott
,
Craig Dutton
Aerospace Engineering
Mechanical Science and Engineering
Materials Research Laboratory
Research output
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Dive into the research topics of 'Stereoscopic PIV measurements of a supersonic axisymmetric base flow'. Together they form a unique fingerprint.
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Keyphrases
PIV Measurement
100%
Baseflow
100%
Velocity Vector Field
100%
Stereoscopic PIV
100%
Eigenmodes
66%
Proper Orthogonal Decomposition
66%
High-resolution
33%
Flow Model
33%
Flow Field
33%
Real-world Application
33%
Mean Flow
33%
Flow Statistics
33%
Rocket
33%
Unpowered
33%
Velocity Components
33%
Stereoscopic Particle Image Velocimetry
33%
Energy Convergence
33%
Flow Turbulence
33%
Mean Velocity
33%
Turbulence Statistics
33%
Wake Region
33%
Supersonic Flow
33%
Decomposition Analysis
33%
Reynolds Stress
33%
Turbulence Level
33%
Instantaneous Velocity
33%
Velocity Statistics
33%
Levels of Organization
33%
Component Information
33%
Global Organizations
33%
Full Flow
33%
Instantaneous Image
33%
Flow Organization
33%
Engineering
Vector Field
100%
Axisymmetric
100%
Velocity Vector
100%
Base Flow
100%
Eigenmode
66%
Proper Orthogonal Decomposition
66%
High Resolution
33%
Particle Image Velocimetry
33%
Velocity Component
33%
Flow Model
33%
Instantaneous Velocity
33%
Supersonic Flow
33%
Reynolds Stress
33%
Physics
Supersonics
100%
Base Flow
100%
Velocity Vector
100%
High Resolution
33%
Particle Image Velocimetry
33%
Supersonic Flow
33%
Chemical Engineering
Velocity Measurement
100%