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Extensive characterisation of a high Reynolds number decelerating boundary layer using advanced optical metrology
C. Cuvier
, S. Srinath
, M. Stanislas
, J. M. Foucaut
, J. P. Laval
, C. J. Kähler
, R. Hain
, S. Scharnowski
, A. Schröder
, R. Geisler
, J. Agocs
, A. Röse
, C. Willert
, J. Klinner
, O. Amili
, C. Atkinson
, J. Soria
Aerospace Engineering and Mechanics
Research output
:
Contribution to journal
›
Article
›
peer-review
38
Scopus citations
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Keyphrases
Boundary Layer
100%
High Reynolds number
100%
Optical Metrology
100%
High-resolution
50%
Numerical Simulation
50%
Turbulence
50%
Turbulent Boundary Layers
50%
Numerical Investigation
50%
Large-scale Structure
50%
Particle Image Velocimetry Technique
50%
Near-wall
50%
Stereoscopic Particle Image Velocimetry
50%
Turbulent Boundary Layer Flow
50%
Adverse Pressure Gradient
50%
SCMOS Camera
50%
Near-wall Measurements
50%
Engineering
Boundary Layer
100%
Particle Image Velocimetry
100%
Turbulent Boundary Layer
100%
High Reynolds Number
100%
Layer Flow
50%
Scale Structure
50%
Adverse Pressure Gradient
50%
High Resolution
50%
Boundary Condition
50%
Chemical Engineering
Velocity Measurement
100%