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Energy velocity of elastic guided waves in immersed plates for complex frequencies and slownesses

Article dans une revue avec comité de lecture
Auteur
ccDESCHAMPS, Marc
1002421 Institut de Mécanique et d'Ingénierie [I2M]
ccDUCASSE, Eric
1002421 Institut de Mécanique et d'Ingénierie [I2M]

URI
http://hdl.handle.net/10985/26401
DOI
10.1016/j.wavemoti.2025.103565
Date
2025-09
Journal
Wave Motion

Résumé

The computation of guided modes in fluid-loaded multilayer plates is generally done by a spatial approach, i.e. solutions are sought for a complex slowness. An alternative approach, less frequently employed, involves seeking solutions for complex frequencies. These frequencies correspond to plate resonances. They denote transient phenomena and the guided modes exhibit non-harmonic behavior. Consequently, conventional methods of averaging over time periods become unsuitable for calculating the means of energy quantities. In other words, the calculation of average fields cannot be reduced to a single average over a time period. To tackle this issue, for a predetermined mode, the average fields are obtained through a single averaging process applied to an arbitrary phase term. This averaging process renders independent the means of all energy quantities from the arbitrary origin phase. As usual, an additional integration across the thickness is conducted to derive total energy quantities. Doing this, the total average fields depend on both time and position on the surface plate. A set of four equations is derived from instantaneous and local energy balance equations. From these averages, the energy velocity can be directly calculated. The equations provide further insights into wave dispersion and damping along the energy flow direction, arising from viscoelastic losses and leakages in fluid.

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  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Transient 3D elastodynamic field in an embedded multilayered anisotropic plate 
    Article dans une revue avec comité de lecture
    MORA, Pierric; ccDUCASSE, Eric; DESCHAMPS, Marc (Elsevier, 2016)
    The aim of this paper is to study the ultrasonic response to a transient source that radiates ultrasonic waves in a 3D embedded multilayered anisotropic and dissipative plate. The source can be inside the plate or outside, ...
  • Time-domain computation of the response of composite layered anisotropic plates to a localized source 
    Article dans une revue avec comité de lecture
    DESCHAMPS, Marc; ccDUCASSE, Eric (Elsevier, 2014)
    This paper describes how a modal approach in the time-domain can be suitable for calculating the elastodynamic field in a layered plate. This elastodynamic field is generated by impulsive sources located in a small region ...
  • A nonstandard wave decomposition to ensure the convergence of Debye series for modeling wave propagation in an immersed anisotropic elastic plate 
    Article dans une revue avec comité de lecture
    DESCHAMPS, Marc; ccDUCASSE, Eric (Elsevier, 2012)
    When ultrasonic guided waves in an immersed plate are expressed as Debye series, they are considered as the result of successive reflections from the plate walls. Against all expectations, the Debye series can diverge for ...
  • Mode computation of immersed multilayer plates by solving an eigenvalue problem 
    Article dans une revue avec comité de lecture
    DESCHAMPS, Marc; ccDUCASSE, Eric (Elsevier BV, 2022-05-27)
    The aim of this paper is to compute modes of immersed multilayer plates by writing and solving an eigenvalue problem. The method can be applied to any kind of material with layers, i.e., fluid, anisotropic and viscoelastic. ...
  • Energy velocity of elastic guided waves in immersed plates for complex frequencies and slownesses 
    Article dans une revue avec comité de lecture
    ccDESCHAMPS, Marc; ccDUCASSE, Eric (2025)
    The computation of guided modes in fluid-loaded multilayer plates is generally done by a spatial approach, i.e. solutions are sought for a complex slowness. An alternative approach, less frequently employed, involves seeking ...

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