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Scale-dependent energy fluxes in a rough-wall turbulent channel flow
Jiarong Hong
, Joseph Katz
, Michael P. Schultz
Mechanical Engineering
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Chapter in Book/Report/Conference proceeding
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Dive into the research topics of 'Scale-dependent energy fluxes in a rough-wall turbulent channel flow'. Together they form a unique fingerprint.
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Keyphrases
Energy Flux
100%
Scale-dependent
100%
Rough Wall
100%
Turbulent Channel Flow
100%
Eddies
66%
Roughness Height
66%
Model Coefficients
66%
Roughness Scale
66%
High-resolution
33%
Large Eddy Simulation
33%
Subgrid Scale
33%
Turbulence
33%
Coherent Structures
33%
Dynamic Model
33%
Boundary Layer
33%
Production Rate
33%
Particle Image Velocimetry
33%
Energy Transfer
33%
Velocity Field
33%
Near-wall
33%
Rough Surface
33%
Scale Dependence
33%
Large-scale Motions
33%
Cascading Process
33%
Nonlocal Flux
33%
Smagorinsky Model
33%
Pyramidal Elements
33%
Roughness Sublayer
33%
Rough-wall Turbulent Boundary Layer
33%
Top-hat Filtering
33%
Local Contribution
33%
Wall Roughness
33%
Engineering
Rough Wall
100%
Channel Flow
100%
Energy Flux
100%
Outer Layer
66%
Model Coefficient
66%
Roughness Height
66%
Scale Eddy
66%
Boundary Layer
33%
Length Scale
33%
Particle Image Velocimetry
33%
Velocity Field
33%
Substantial Increase
33%
Smagorinsky Model
33%
Wall Unit
33%
Coherent Structure
33%
Turbulent Boundary Layer
33%
Scale Motion
33%
High Resolution
33%
Dynamic Models
33%
Earth and Planetary Sciences
Channel Flow
100%
Energy Flux
100%
Energy Transfer
33%
Turbulent Boundary Layer
33%
Dynamic Models
33%
Particle Image Velocimetry
33%
Velocity Distribution
33%
Boundary Layer
33%