Tonal and broadband noise control of an axial-flow fan with metal foams: Design and experimental validation
Tonal and broadband noise control of an axial-flow fan with metal foams: Design and experimental validation
This paper presents an application of metal foams for controlling aerodynamic noise of an axial-flow fan. A configuration of a semi-open cell metal foam combined with a backing cavity is employed to attenuate the tonal component while an open-cell metal foam is used to absorb the broadband component. An acoustic impedance model is employed to determine the optimal geometrical parameters of the metal foam and the cavity. Experimental results confirmed that the tonal noise is greatly reduced by the semi-open cell metal foam and the open cell metal foam shows a potential of absorbing the broadband noise.
Xu, Chen
b53e92d4-e474-420b-a662-4af9a1c8750b
Mao, Yijun
acc5a023-2fd6-4b0e-af88-d1c561fca3d3
Hu, Zhiwei
dd985844-1e6b-44ba-9e1d-fa57c6c88d65
10 July 2017
Xu, Chen
b53e92d4-e474-420b-a662-4af9a1c8750b
Mao, Yijun
acc5a023-2fd6-4b0e-af88-d1c561fca3d3
Hu, Zhiwei
dd985844-1e6b-44ba-9e1d-fa57c6c88d65
Xu, Chen, Mao, Yijun and Hu, Zhiwei
(2017)
Tonal and broadband noise control of an axial-flow fan with metal foams: Design and experimental validation.
Applied Acoustics.
(doi:10.1016/j.apacoust.2017.06.018).
Abstract
This paper presents an application of metal foams for controlling aerodynamic noise of an axial-flow fan. A configuration of a semi-open cell metal foam combined with a backing cavity is employed to attenuate the tonal component while an open-cell metal foam is used to absorb the broadband component. An acoustic impedance model is employed to determine the optimal geometrical parameters of the metal foam and the cavity. Experimental results confirmed that the tonal noise is greatly reduced by the semi-open cell metal foam and the open cell metal foam shows a potential of absorbing the broadband noise.
Text
tonal and broadband noise
Restricted to Repository staff only
Request a copy
More information
Accepted/In Press date: 23 June 2017
Published date: 10 July 2017
Identifiers
Local EPrints ID: 413800
URI: http://eprints.soton.ac.uk/id/eprint/413800
ISSN: 0003-682X
PURE UUID: f3e83afa-2fe2-488d-a9f7-8102ada4a21f
Catalogue record
Date deposited: 06 Sep 2017 16:31
Last modified: 15 Mar 2024 15:53
Export record
Altmetrics
Contributors
Author:
Chen Xu
Author:
Yijun Mao
Download statistics
Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.
View more statistics