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Small-scale structure and energy transfer in homogeneous turbulence
Douglas W. Carter
, Filippo Coletti
Aerospace Engineering and Mechanics
Research output
:
Contribution to journal
›
Article
›
peer-review
38
Scopus citations
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Dive into the research topics of 'Small-scale structure and energy transfer in homogeneous turbulence'. Together they form a unique fingerprint.
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Keyphrases
Structure Transfer
100%
Energy Transfer
100%
Energy Cascade
100%
Homogeneous Turbulence
100%
Enstrophy
100%
Small-scale Structures
100%
High-resolution
33%
Probability Distribution
33%
Shear Flow
33%
Tube Type
33%
Energy Flux
33%
Specific Production
33%
Self-similarity
33%
Strong Correlation
33%
Reynolds number
33%
Random Variables
33%
Sheet-like
33%
Velocity Measurement
33%
Long Tail
33%
Physical Space
33%
Kolmogorov
33%
Small-scale Turbulence
33%
Energy Transfer Properties
33%
Mean Flow
33%
Production Mechanism
33%
Velocity Gradient
33%
Turbulent Structure
33%
Advection-dominated
33%
High Strain
33%
Zero Mean
33%
Amplitude Modulation
33%
Transverse Direction
33%
Energy Forms
33%
Developing Flow
33%
Nonlinear Transfer
33%
Large-scale Activities
33%
Strain Structure
33%
Interscale
33%
Strain Rate Field
33%
Weak Events
33%
Engineering
Energy Cascade
100%
Scale Structure
100%
Homogeneous Turbulence
100%
Vorticity
100%
Jet
66%
Shear Flow
33%
Reynolds' Number
33%
Axis Direction
33%
Velocity Gradient
33%
Random Variable ξ
33%
Developing Flow
33%
Strain Rate
33%
High Resolution
33%
Physical Space
33%
Energy Flux
33%
Advection
33%
Amplitude Modulation
33%
Physics
Energy Transfer
100%
Vorticity
100%
Homogeneous Turbulence
100%
Shear Flow
33%
Strain Rate
33%
Amplitude Modulation
33%
High Resolution
33%
Reynolds Number
33%
Advection
33%
Velocity Measurement
33%
Earth and Planetary Sciences
Energy Transfer
100%
Homogeneous Turbulence
100%
Shear Flow
33%
Reynolds Number
33%
Advection
33%
Energy Flux
33%
Strain Rate
33%
Amplitude Modulation
33%
Velocity Measurement
33%