Bulletin of the American Physical Society
77th Annual Meeting of the Division of Fluid Dynamics
Sunday–Tuesday, November 24–26, 2024; Salt Lake City, Utah
Session A34: Aeroacoustics
8:00 AM–9:57 AM,
Sunday, November 24, 2024
Room: 255 F
Chair: Benshuai Lyu, Peking University
Abstract: A34.00007 : An extension of Hanson's theory of harmonic noise of rotors
9:18 AM–9:31 AM
Presenter:
Niranjan Nanjappa
(University of Illinois at Urbana-Champaign)
Authors:
Niranjan Nanjappa
(University of Illinois at Urbana-Champaign)
Matthew Clarke A Clarke
(University of Illinois at Urbana-Champaign)
We developed advanced aerodynamic models to predict the loading distribution for Hanson's harmonic noise model, thereby improving noise prediction accuracy. For point and line load distributions, we used BET to determine the unsteady loads experienced by a propeller at arbitrary pitch inclinations. For planar load distributions, we employed an airfoil panel method to obtain the unsteady chord-wise loads. A discrete Fourier transform is applied to these unsteady loads to derive the loading modes for Hanson's equations. The results are compared to traditional methods using Hanson's standard parabolic functions for loading and thickness distributions, as well as to the time-domain solution of the FW-H equation.
Future work involves developing a harmonic noise model in the frequency domain based on Hanson's model (which only considers propeller pitch) that includes forward flight for propellers inclined at an arbitrary roll, pitch, and yaw.
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