Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/100926
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Type: Journal article
Title: An experimental application of aeroacoustic time-reversal to the Aeolian tone
Author: Mimani, A.
Prime, Z.
Moreau, D.
Doolan, C.
Citation: Journal of the Acoustical Society of America, 2016; 139(2):740-763
Publisher: Acoustical Society of America
Issue Date: 2016
ISSN: 0001-4966
1520-8524
Statement of
Responsibility: 
A. Mimani, Z. Prime, D. J. Moreau and C. J. Doolan
Abstract: This paper presents an experimental application of the aeroacoustic time-reversal (TR) source localization technique for studying flow-induced noise problems and compares the TR results with those obtained using conventional beamforming (CB). Experiments were conducted in an anechoic wind tunnel for the benchmark test-case of a full-span circular cylinder located in subsonic cross-flow wherein the far-field acoustic pressure was sampled using two line arrays (LAs) of microphones located above and below the cylinder. The source map obtained using the signals recorded at the two LAs without modeling the reflective surfaces of the contraction-outlet and cylinder during TR simulations revealed the lift-dipole nature of aeroacoustic source generated at the Aeolian tone; however, it indicates an error of 3/20 of Aeolian tone wavelength in the predicted location. Modeling the reflective contraction-outlet during TR was shown to improve the focal-resolution of the source and reduce side-lobe levels, especially in the low-frequency range. The experimental TR results were shown to be comparable to (a) the simulation results of an idealized dipole at the cylinder location in wind-tunnel flow and (b) that obtained by monopole and dipole CB, thereby demonstrating the suitability of TR method as a diagnostic tool to analyze flow-induced noise generation mechanism.
Rights: © 2016 Acoustical Society of America
DOI: 10.1121/1.4941564
Grant ID: http://purl.org/au-research/grants/arc/DP 120102134
Published version: http://dx.doi.org/10.1121/1.4941564
Appears in Collections:Aurora harvest 3
Mechanical Engineering publications

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