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March 4, 2026Journal of Fluid Mechanics1 citationsOpen Access

Water wave scattering by a surface-mounted rectangular anisotropic elastic plate

BWBen WilksMMMichael H. MeylanZWZachary J. Wegert

Key Points

  • The research aims to analyze how water waves scatter off a rectangular elastic plate with different edge conditions.
  • Utilized a Rayleigh–Ritz method to calculate dry modes of the elastic plate.
  • Formulated a boundary integral equation to address the diffraction and radiation problems.
  • Applied a constant panel method for numerical solutions.
  • Identified resonant responses of the plate under various forcing scenarios.
  • Demonstrated that certain modes of excitation can be restricted due to symmetry considerations.

Abstract

This paper considers the problem of water wave scattering by a rectangular anisotropic elastic plate mounted on the ocean surface, with either free, clamped or simply supported edges. The problem is obtained as an expansion over the dry modes of the elastic plate, which are computed using a Rayleigh–Ritz method. In turn, the component diffraction and radiation problems are solved by formulating a boundary integral equation and solving numerically using a constant panel method. The results are presented to highlight the resonant responses of the plate under different forcing scenarios. In particular, we illustrate how the excitation of certain modes can be forbidden due to symmetry.

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Cite This Study

Wilks et al. (2026) studied this question.

synapsesocial.com/papers/69a7ccf7d48f933b5eed8de4https://doi.org/10.1017/jfm.2026.11224
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