Please use this identifier to cite or link to this item:
http://hdl.handle.net/10397/111534
| Title: | Acoustic radiation by vortex induced flexible wall vibration | Authors: | Tang, SK Leung, RCK So, RMC Lam, KM |
Issue Date: | Oct-2005 | Source: | Journal of the Acoustical Society of America, Oct. 2005, v. 118, no. 4, p. 2182-2189 | Abstract: | Sound radiation due to unsteady interaction between an inviscid vortex (which models a turbulent eddy) and a finite length flexible boundary in a two-dimensional space is studied using potential theory and the matched asymptotic expansion technique. The Mach number of the vortex propagation is kept below 0.15. Results suggest that the monopole field created by the volumetric flow induced by the vibrating flexible boundary dominates the overall acoustic power radiation. The longitudinal dipole directly due to the transverse vortex acceleration is only important when the vortex is moving over the flexible boundary. The longitudinal dipole resulting from the boundary vibration gains slightly in importance in the strong vortex case, but the corresponding transverse dipole remains negligible for the cases considered in the present study. The two longitudinal dipoles give rise to biased radiation directivities on both sides of the flexible boundary. | Publisher: | AIP Publishing LLC | Journal: | Journal of the Acoustical Society of America | ISSN: | 0001-4966 | EISSN: | 1520-8524 | DOI: | 10.1121/1.2011127 | Rights: | © 2005 Acoustical Society of America. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the Acoustical Society of America. The following article appeared in S. K. Tang, R. C. K. Leung, R. M. C. So, K. M. Lam; Acoustic radiation by vortex induced flexible wall vibration. J. Acoust. Soc. Am. 1 October 2005; 118 (4): 2182–2189 and may be found at https://doi.org/10.1121/1.2011127. |
| Appears in Collections: | Journal/Magazine Article |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| 2182_1_online.pdf | 1.35 MB | Adobe PDF | View/Open |
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