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  4. Duct modes damping through an adjustable electroacoustic liner under grazing incidence
 
research article

Duct modes damping through an adjustable electroacoustic liner under grazing incidence

Boulandet, R.  
•
Lissek, H.
•
Karkar, S.
Show more
April 16, 2018
Journal of Sound and Vibration

This paper deals with active sound attenuation in lined ducts with flow and its application to duct modes damping in aircraft engine nacelles. It presents an active lining concept based on an arrangement of electroacoustic absorbers flush mounted in the duct wall. Such feedback-controlled loudspeaker membranes are used to achieve locally reacting impedances with adjustable resistance and reactance. A broadband impedance model is formulated from the loudspeaker parameters and a design procedure is proposed to achieve specified acoustic resistances and reactances. The performance is studied for multimodal excitation by simulation using the finite element method and the results are compared to measurements made in a flow duct facility. This electroacoustic liner has an attenuation potential comparable to that of a conventional passive liner, but also offers greater flexibility to achieve the target acoustic impedance in the low frequencies. In addition, it is adaptive in real time to track variable engine speeds. It is shown with the liner prototype that the duct modes can be attenuated over a bandwidth of two octaves around the resonance frequency of the loudspeakers.

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Type
research article
DOI
10.1016/j.jsv.2018.04.009
Author(s)
Boulandet, R.  
Lissek, H.
Karkar, S.
Collet, M.
Matten, G.
Ouisse, M.
Versaevel, M.
Date Issued

2018-04-16

Published in
Journal of Sound and Vibration
Volume

426

Start page

19

End page

33

Subjects

Lined duct

•

Electroacoustic absorber

•

Active sound absorption

•

Duct modes damping

Note

URL

Free access until June 5, 2018

https://authors.elsevier.com/c/1Wuf~,Whn7u59
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LTS2  
Available on Infoscience
April 16, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/146031
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