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Dissipation scaling and structural order in turbulent channel flows
T. W. Lee
Engineering of Matter, Transport and Energy, School for (IAFSE-SEMTE)
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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Dive into the research topics of 'Dissipation scaling and structural order in turbulent channel flows'. Together they form a unique fingerprint.
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Mathematics
Turbulent Channel Flow
100%
Turbulence
63%
Dissipation
55%
Scaling
47%
Transport Equation
39%
Profile
32%
Reynolds Stress
30%
Global Constraints
26%
Reynolds Equation
25%
Velocity Profile
24%
Shear Stress
23%
Turbulent Flow
22%
Template
22%
Kinetic energy
22%
Self-similarity
21%
Computability
21%
Reynolds number
19%
Solvability
15%
Navier-Stokes Equations
15%
Multiplicative
15%
Gradient
14%
Physics & Astronomy
channel flow
61%
dissipation
45%
turbulence
42%
scaling
39%
bears
21%
Reynolds stress
20%
profiles
20%
Navier-Stokes equation
18%
turbulent flow
17%
templates
17%
shear stress
16%
Reynolds number
15%
kinetic energy
14%
velocity distribution
14%
gradients
12%
geometry
10%
Chemical Compounds
Turbulence
78%
Dissipation
61%
Flow
36%
Lagrangian
30%
Reynolds Number
25%
Shear Stress
22%
Kinetic Energy
21%
Velocity
15%
Engineering & Materials Science
Channel flow
63%
Turbulence
50%
Kinetic energy
19%
Turbulent flow
18%
Navier Stokes equations
18%
Shear stress
17%
Reynolds number
15%
Geometry
11%