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A Computational Study of Bluntness Vortex Shedding Noise Generated By a Small Canonical Rotor for UAM ApplicationsA hybrid RANS/LES simulation of the Ideally Twisted Rotor (ITR) in hover was interrogated to identify bluntness vortex shedding (BVS) and determine the contribution to the predicted rotor broadband self-noise. Three rotor blade stations were extracted to study spanwise variations in the BVS shedding frequency and amplitude. Corresponding 2-D airfoil simulations were performed to evaluate a simplified modeling approach that effectively isolates BVS. The BVS shedding frequencies predicted by the 2-D airfoil simulations differed by less than 2% from the corresponding rotor stations in the 3-D simulation. The increased computational cost incurred by performing 3-D airfoil simulations did not lead to a worthwhile increase in simulation fidelity. Farfield noise was predicted for the three rotor stations and the 2-D airfoil simulations, and trends in frequency agreed well. The 2-D approach overpredicted the 3-D peak amplitudes by 5–10 dB. This work demonstrates that 2-D hybrid RANS/LES airfoil simulations can be used to investigate BVS noise trends on the ITR.
Document ID
20250004899
Acquisition Source
Langley Research Center
Document Type
Presentation
Authors
Joshua Blake
(Langley Research Center Hampton, United States)
Chris Thurman
(Langley Research Center Hampton, United States)
Nik Zawodny
(Langley Research Center Hampton, United States)
Date Acquired
May 12, 2025
Subject Category
Acoustics
Aircraft Design, Testing and Performance
Meeting Information
Meeting: Vertical Flight Society's 81st Annual Forum and Technology Display
Location: Virginia Beach, VA
Country: US
Start Date: May 20, 2025
End Date: May 22, 2025
Sponsors: The Vertical Flight Society
Funding Number(s)
WBS: 664817.02.07.03.02.01
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Keywords
broadband
rotor noise
self-noise
CFD
BVS
2-D airfoil
bluntness vortex shedding
UAM
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