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Scale-to-scale anisotropy in homogeneous turbulence
Douglas W. Carter, Filippo Coletti
Aerospace Engineering and Mechanics
Research output
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Contribution to journal
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Article
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peer-review
32
Scopus citations
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Dive into the research topics of 'Scale-to-scale anisotropy in homogeneous turbulence'. Together they form a unique fingerprint.
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Keyphrases
Anisotropy
100%
Homogeneous Turbulence
100%
Velocity Components
75%
Turbulence
50%
Reynolds number
50%
Isotropy
50%
Integral Length
50%
Transverse Component
25%
Velocity Fluctuation
25%
Longitudinal Velocity
25%
Particle Image Velocimetry
25%
Axial Direction
25%
Downscaling
25%
Root-mean-square Velocity
25%
Eddy Size
25%
Kolmogorov Length Scale
25%
Scaling Exponent
25%
Kolmogorov
25%
Mean Flow
25%
Air Jet
25%
Velocity Gradient
25%
Radial Direction
25%
Longitudinal Component
25%
Spatially Correlated
25%
Intermittency
25%
Inertial Range
25%
Quantitative Value
25%
Qualitative Behavior
25%
Sixth Order
25%
Large Scale Anisotropies
25%
Mean Shear
25%
Velocity Difference
25%
Taylor Microscale
25%
Velocity Structure Function
25%
Varying Resolution
25%
Flatness Factor
25%
Fluctuation Range
25%
Engineering
Velocity Component
100%
Homogeneous Turbulence
100%
Reynolds' Number
66%
Spatial Distribution
66%
Anisotropic
33%
Particle Image Velocimetry
33%
Axial Direction
33%
Velocity Fluctuation
33%
Velocity Gradient
33%
Root Mean Square
33%
Radial Direction
33%
Structure Function
33%
Taylor Microscale
33%
Kolmogorov Length
33%
Sixth Order
33%
Kolmogorov Scale
33%
Scaling Exponent
33%
Flatness Factor
33%
Mean-Square Velocity
33%
Eddy Size
33%
Longitudinal Velocity
33%