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A noise-controlled free shear flow
Mingjun Wei,
Jonathan B. Freund
Aerospace Engineering
Mechanical Science and Engineering
Coordinated Science Lab
National Center for Supercomputing Applications (NCSA)
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Keyphrases
Mixing Layer
100%
Free Shear Flow
100%
Flow Equation
75%
Actuation
50%
Optimization Control
50%
Spatial Structure
50%
Internal Energy
50%
Noise Intensity
50%
Mach number
25%
Acoustics
25%
Two Dimensional
25%
Non-periodic
25%
Body Force
25%
Mean Square
25%
Reynolds number
25%
Eigenmodes
25%
Actuator
25%
Practical Implementation
25%
Energy Sources
25%
Highly Ordered
25%
Input Power
25%
Streamwise
25%
Acoustic Field
25%
Source Term
25%
Pressure Fluctuation
25%
Time Integral
25%
Single Degree of Freedom
25%
Energy Spread
25%
Direct numerical Simulation
25%
Inflow Boundary
25%
Source Energy
25%
Low Speed
25%
Free Stream
25%
Turbulent Structure
25%
Numerical Test
25%
Noise Generation
25%
Adjoint Equation
25%
Energy Control
25%
Temporal Structure
25%
Rate of Spread
25%
Vorticity Thickness
25%
Compressible Viscous Flow
25%
Modeling Approximation
25%
Fourier Modes
25%
Turbulence Kinetic Energy
25%
Compact Support
25%
General Source
25%
Mass Source
25%
Empirical Eigenfunctions
25%
Cancellation Mechanism
25%
Acoustic Efficiency
25%
Engineering
Shear Flow
100%
Mixing Layer
100%
Flow Equation
75%
Spatial Structure
50%
Internal Energy
50%
Control Actuation
50%
Intensity Noise
50%
Energy Engineering
25%
Vorticity
25%
Viscous Flow
25%
Streamwise
25%
Two Dimensional
25%
Energetics
25%
Input Power
25%
Body Force
25%
Reynolds' Number
25%
Eigenvector
25%
Degree of Freedom
25%
Eigenmode
25%
Energy Source
25%
Source Term
25%
Pressure Fluctuation
25%
Inflow Boundary
25%
Acoustic Field
25%
Compact Support
25%
Direct Numerical Simulation
25%
Single Degree
25%
Adjoint Equation
25%
Spreading Rate
25%
Square Pressure
25%
Free-Stream Mach Number
25%
Temporal Structure
25%