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Flow transition to turbulence and induced acoustics at Mach 6
Dimitris Drikakis
, Konstantinos Ritos
, S. Michael Spottswood
, Zachary B. Riley
University of Strathclyde
Wright-Patterson AFB
LLC
Research output
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peer-review
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Keyphrases
Acoustics
100%
Implicit Large Eddy Simulation
100%
Flow Transition
100%
Transition to Turbulence
100%
Direct numerical Simulation
62%
Near-wall
25%
High-order
12%
Numerical Simulation
12%
Numerical Scheme
12%
Frequency Content
12%
Predictive Models
12%
Engineering Design
12%
Heat Flux
12%
Transition Region
12%
Stress Value
12%
Reynolds number
12%
Pressure Fluctuation
12%
Reynolds Stress
12%
Flat Plate
12%
Turbulent Boundary Layers
12%
Hypersonic
12%
Refined Grid
12%
Transitional Boundary Layer
12%
Acoustic Loading
12%
Spectral Analysis
12%
Momentum Thickness
12%
Flow Characteristics
12%
Shear Stress
12%
Semi-empirical Model
12%
Acoustic Characteristics
12%
Acoustic Spectrum
12%
Numerical Boundary
12%
Factor Momentum
12%
Medium Frequency
12%
Design Loading
12%
Grid Constraints
12%
Shape Factor
12%
Engineering Acoustics
12%
Turbulent Region
12%
Engineering
Direct Numerical Simulation
100%
Numerical Approach
20%
Numerical Scheme
20%
Design Engineering
20%
Reynolds' Number
20%
Turbulent Boundary Layer
20%
Pressure Fluctuation
20%
Reynolds Stress
20%
Flat Plate
20%
Initial and Boundary Condition
20%
Momentum Thickness
20%
Peak Value
20%
High Frequency Content
20%
Shape Factor
20%
Empirical Model
20%
Computer Simulation
20%
Heat Flux
20%
Material Science
Large Eddy Simulation
100%
Turbulent Boundary Layer
12%