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Broadband noise from the unsteady flow in a slat cove
Anurag Agarwal
, Philip J. Morris
Aerospace Engineering
Research output
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Contribution to conference
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Paper
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peer-review
15
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Scopus citations
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Dive into the research topics of 'Broadband noise from the unsteady flow in a slat cove'. Together they form a unique fingerprint.
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Keyphrases
Unsteady Flow
100%
Cove
100%
Broadband Noise
100%
Slat
100%
Green's Function
66%
High Energy
33%
Boundary Element Method
33%
Step Processes
33%
Computation Time
33%
Prediction Scheme
33%
Design Strategy
33%
Control Strategy
33%
Flap
33%
Mid-frequency
33%
Wave Propagation
33%
Distinctive Features
33%
Noise Source
33%
Acoustic Spectrum
33%
Tonal Noise
33%
Sound Pressure Level
33%
High-lift Device
33%
Noise Component
33%
Moving Media
33%
Aircraft Sound
33%
Localized Turbulence
33%
Engineering
Unsteady Flow
100%
Broadband Noise
100%
Green's Functions
100%
Optical Spectrum
50%
Boundary Element Method
50%
Computational Time
50%
Control Strategy
50%
Flaps
50%
Noise Source
50%
Sound Pressure Level
50%
Radiated Noise
50%
Aircraft
50%
Step Process
50%
Lift Device
50%
Moving Medium
50%
Local Turbulence
50%
Diffraction
50%
Physics
Green's Functions
100%
Unsteady Flow
100%
Far Field
50%
Sound Pressure
50%
Boundary Element Method
50%
Acoustics
50%
Diffraction
50%
Convolution
50%