Acoustic scattering from spherical shells and its active control
Acoustic scattering from spherical shells and its active control
The scattering of sound by a thin spherical shell is considered using an analytic formulation involving spherical harmonics. The integral of the far field scattered intensity, termed the scattered power, can then be expressed in a simple form. At low frequencies the scattered power can be minimised by an appropriate choice of material properties and shell thickness, which is illustrated for both a steel shell and for one in which the mass and stiffness of the shell are equal to those of the displaced fluid. Simulations of feedforward active control are then used to investigate the best possible performance in attenuating the scattered power, although this approach requires knowledge of the incident and scattered sound fields. Feedback control of the shell vibration using structural actuators and sensors is a more practical control strategy since it does not involve the need to separate the incident and scattered contributions. Direct velocity feedback control is considered using collocated and distributed actuators and sensors that spread the applied force and sensed velocity over spherical caps on the surface of the shell. This approach shows effective suppression of the structural shell modes that give rise to significant scattering at their resonant frequencies.
Acoustic scattering, Active control, Feedback control, Spherical harmonics, Spherical shell
Elliott, Stephen
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Orita, Mihai
b5850bb4-8337-4865-bb8f-50860169bee0
Quaranta, Erika
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Cheer, Jordan
8e452f50-4c7d-4d4e-913a-34015e99b9dc
29 September 2023
Elliott, Stephen
721dc55c-8c3e-4895-b9c4-82f62abd3567
Orita, Mihai
b5850bb4-8337-4865-bb8f-50860169bee0
Quaranta, Erika
4de6c2c7-ed83-4b97-b063-2be41f39a122
Cheer, Jordan
8e452f50-4c7d-4d4e-913a-34015e99b9dc
Elliott, Stephen, Orita, Mihai, Quaranta, Erika and Cheer, Jordan
(2023)
Acoustic scattering from spherical shells and its active control.
Journal of Sound and Vibration, 568, [118056].
(doi:10.1016/j.jsv.2023.118056).
Abstract
The scattering of sound by a thin spherical shell is considered using an analytic formulation involving spherical harmonics. The integral of the far field scattered intensity, termed the scattered power, can then be expressed in a simple form. At low frequencies the scattered power can be minimised by an appropriate choice of material properties and shell thickness, which is illustrated for both a steel shell and for one in which the mass and stiffness of the shell are equal to those of the displaced fluid. Simulations of feedforward active control are then used to investigate the best possible performance in attenuating the scattered power, although this approach requires knowledge of the incident and scattered sound fields. Feedback control of the shell vibration using structural actuators and sensors is a more practical control strategy since it does not involve the need to separate the incident and scattered contributions. Direct velocity feedback control is considered using collocated and distributed actuators and sensors that spread the applied force and sensed velocity over spherical caps on the surface of the shell. This approach shows effective suppression of the structural shell modes that give rise to significant scattering at their resonant frequencies.
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Accepted/In Press date: 19 September 2023
e-pub ahead of print date: 20 September 2023
Published date: 29 September 2023
Additional Information:
Funding Information:
This work is supported by the Defence Science and Technology Laboratory , United Kingdom . We are grateful for discussions with Filippo Fazi in the preparation of Appendix B .
Keywords:
Acoustic scattering, Active control, Feedback control, Spherical harmonics, Spherical shell
Identifiers
Local EPrints ID: 483324
URI: http://eprints.soton.ac.uk/id/eprint/483324
ISSN: 0022-460X
PURE UUID: 898aa5fd-ea1f-4bab-9207-3b8828bda763
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Date deposited: 27 Oct 2023 17:06
Last modified: 18 Mar 2024 04:04
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Author:
Mihai Orita
Author:
Erika Quaranta
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