Methode impulsionnelle numerisee (MIN) pour l'isolement et l'identification des resonances de tubes immerges
Identifieur interne : 002628 ( Main/Exploration ); précédent : 002627; suivant : 002629Methode impulsionnelle numerisee (MIN) pour l'isolement et l'identification des resonances de tubes immerges
Auteurs : P. Pareige [France] ; P. Rembert [France] ; J. L. Izbicki [France] ; G. Maze [France] ; J. Ripoche [France]Source :
- Physics Letters A [ 0375-9601 ] ; 1989.
Abstract
Abstract: The method of isolation and identification of resonances (MIIR) allows a direct verification of “resonance scattering theory” (RST). Indeed it provides the resonance spectra of aluminum elastic cylindrical shells, insonified by plane acoustic waves and it also allows the experimental determination of the mode number of each resonance of the target. At this day, when the shells are insonified by a short pulse it is only possible to obtain the resonance spectrum with a fast Fourier transform of the backscattered response. This paper presents an impulse method which allows the isolation of resonances and besides the identification of each eigenmode of the target.
Url:
DOI: 10.1016/0375-9601(89)90662-2
Affiliations:
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<front><div type="abstract" xml:lang="en">Abstract: The method of isolation and identification of resonances (MIIR) allows a direct verification of “resonance scattering theory” (RST). Indeed it provides the resonance spectra of aluminum elastic cylindrical shells, insonified by plane acoustic waves and it also allows the experimental determination of the mode number of each resonance of the target. At this day, when the shells are insonified by a short pulse it is only possible to obtain the resonance spectrum with a fast Fourier transform of the backscattered response. This paper presents an impulse method which allows the isolation of resonances and besides the identification of each eigenmode of the target.</div>
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