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An aeroacoustic analysis of wind turbines
Philip J. Morris
, Lyle N. Long
,
Kenneth S. Brentner
Aerospace Engineering
Institute for Computational and Data Sciences (ICDS)
Huck Institutes of the Life Sciences
Materials Research Institute (MRI)
Center for Computational Mathematics and Applications (CCMA)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
25
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Scopus citations
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Dive into the research topics of 'An aeroacoustic analysis of wind turbines'. Together they form a unique fingerprint.
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Keyphrases
Aeroacoustics
100%
Wind Turbine
100%
Large Distances
33%
Linearized Euler Equations
33%
Prediction Method
33%
Atmospheric Turbulence
33%
Noise Field
33%
Propagation Prediction
33%
Noise Source
33%
Ffowcs Williams-Hawkings
33%
Turbulent Shear
33%
Computational Aeroacoustics
33%
Sound Propagation
33%
Noise Problem
33%
Noise Propagation
33%
Radiated Noise
33%
Gust
33%
Permeable Surface
33%
Wind Shear
33%
Propagation Study
33%
Low-frequency Noise
33%
Trailing Edge Noise
33%
Noise Generation Mechanism
33%
Wind Turbine Noise
33%
Atmospheric Wind
33%
Deep Stall
33%
Engineering
Compressed Air Motors
100%
Airfoil
66%
Radiated Noise
66%
Self Noise
66%
Trailing Edge
33%
Linearized Euler Equation
33%
Unsteady Flow
33%
Atmospheric Turbulence
33%
Noise Field
33%
Noise Source
33%
Flow Simulation
33%
Frequency Noise
33%
Permeable Surface
33%
Boundary Condition
33%
Aerodynamics
33%
Wind Shear
33%
Physics
Aeroacoustics
100%
Compressed Air Motors
100%
Airfoil
66%
Boundary Condition
33%
Atmospheric Turbulence
33%
Noise Propagation
33%
Computational Aeroacoustics
33%
Unsteady Flow
33%
Aerodynamics
33%