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Anti-Phase Vortex Reduction Control for Rotor Noise Suppression
Nhan Nguyen
, Juntao Xiong
, Raja Akif Raja Zahirudin
, Sihong Yan
,
Jose Palacios
Aerospace Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
2
Link opens in a new tab
Scopus citations
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Dive into the research topics of 'Anti-Phase Vortex Reduction Control for Rotor Noise Suppression'. Together they form a unique fingerprint.
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Keyphrases
Acoustic Experiment
11%
Acoustic Performance
22%
Acoustic Study
22%
Acoustic Testing
11%
Aerodynamics
22%
Amplitude Characteristics
11%
Anechoic Chamber
33%
As(V)
11%
CAD Geometry
11%
Commercial Solver
11%
Computational Fluid Dynamics
11%
Computational Fluid Dynamics Simulation
11%
Design Objectives
11%
Dynamic Investigation
11%
Edge Pattern
11%
Far-field Noise
33%
Flight Condition
22%
Forward Flight
22%
Hovering
44%
Innovation Support
11%
Left-handed
44%
Microphone Array
22%
NASA Ames
11%
Noise Characteristics
11%
Noise Level
33%
Noise Reduction
88%
Noise Suppression
100%
Pennsylvania
33%
Phase Vortices
100%
Rotor
100%
Rotor Design
33%
Rotor Noise
100%
Rotor-can
33%
Segment Length
11%
Sound Pressure Level
11%
STAR-CCM+
11%
State Universities
33%
Sufficient Evidence
22%
Three-dimensional (3D)
11%
Trailing Edge
44%
Trailing Edge Deflection
11%
Transition Characteristics
11%
URANS
11%
Vortex Reduction
100%
Engineering
Acoustic Performance
8%
Aerodynamics
8%
Anechoic Chamber
12%
Candidate Design
24%
Computational Fluid Dynamics
8%
Computer Aided Design
4%
Design Objective
4%
Design Phase
16%
Downwash
4%
Experimental Result
4%
Flight Condition
8%
Forward Flight
8%
Left Side
4%
Microphone Array
8%
NASA
4%
Noise Level
12%
Noise Suppression
100%
Reynolds-Averaged Navier-Stokes
4%
Rotors
100%
Segment Length
4%
Sound Pressure Level
4%
Trailing Edge
20%
Vortex
100%