Resonant acoustic scattering by a finite linear grating of elastic shells.
Identifieur interne : 000337 ( PubMed/Curation ); précédent : 000336; suivant : 000338Resonant acoustic scattering by a finite linear grating of elastic shells.
Auteurs : S. Lethuillier [France] ; J M Conoir ; P. Pareige ; J L IzbickiSource :
- Ultrasonics [ 0041-624X ] ; 2003.
English descriptors
- KwdEn :
- MESH :
- chemical : Solutions.
- Acoustics, Fourier Analysis, Microscopy, Scattering, Radiation.
Abstract
Theoretical and experimental studies of the acoustic scattering by a finite linear grating of elastic cylindrical shells are performed. It is observed that a resonant interaction takes place at low frequency when the shells are very close to each other. This phenomenon can be clearly associated to the Scholte-Stoneley wave that propagates around a single shell. It is shown that each resonance of the Scholte-Stoneley wave is split up into N resonances when N shells compose the grating.
PubMed: 14585477
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pubmed:14585477Le document en format XML
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<front><div type="abstract" xml:lang="en">Theoretical and experimental studies of the acoustic scattering by a finite linear grating of elastic cylindrical shells are performed. It is observed that a resonant interaction takes place at low frequency when the shells are very close to each other. This phenomenon can be clearly associated to the Scholte-Stoneley wave that propagates around a single shell. It is shown that each resonance of the Scholte-Stoneley wave is split up into N resonances when N shells compose the grating.</div>
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<Abstract><AbstractText>Theoretical and experimental studies of the acoustic scattering by a finite linear grating of elastic cylindrical shells are performed. It is observed that a resonant interaction takes place at low frequency when the shells are very close to each other. This phenomenon can be clearly associated to the Scholte-Stoneley wave that propagates around a single shell. It is shown that each resonance of the Scholte-Stoneley wave is split up into N resonances when N shells compose the grating.</AbstractText>
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