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Drag reduction via opposition control in a compressible turbulent channel
Jie Yao,
Fazle Hussain
Mechanical Engineering
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Article
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peer-review
1
Scopus citations
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Dive into the research topics of 'Drag reduction via opposition control in a compressible turbulent channel'. Together they form a unique fingerprint.
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Mathematics
Drag Reduction
100%
Sensing
39%
Turbulent Channel Flow
17%
Decrease
16%
Reynolds Stress
15%
Direct numerical Simulation
13%
Deterioration
12%
Compressibility
12%
Drag
11%
Buffer
11%
Wavelength
11%
Rescaling
11%
Wave Propagation
10%
Reynolds number
10%
Trends
9%
Well-defined
9%
Background
8%
Space-time
8%
Strictly
7%
Interaction
6%
Unit
6%
Performance
5%
Engineering & Materials Science
Drag reduction
70%
Buffer layers
13%
Direct numerical simulation
12%
Underwater acoustics
11%
Channel flow
10%
Compressibility
10%
Wave propagation
10%
Mach number
9%
Drag
8%
Deterioration
8%
Wavelength
8%
Reynolds number
8%
Chemistry
Reduction
26%
Mach Number
17%
Resonance
15%
Reynolds Number
13%
Compressibility
11%
Wave
8%
Shear
8%
Velocity
8%
Wavelength
6%
Buffer Solution
6%
Flow
6%
Simulation
6%