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Theoretical Model for Nonlinear Long Waves over a Thin Viscoelastic Muddy Seabed

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  • I-Chi Chan

    (Department of Civil Engineering, National Taiwan University, Taipei 10617, Taiwan)

Abstract

We theoretically analyzed the interaction between surface water waves and a thin muddy seabed. Wave motion in the inviscid water layer was assumed to be irrotational and the soft mud was modeled as a linear viscoelastic fluid. Under the Boussinesq approximation for nonlinear long waves, we present a set of depth-integrated equations that can be solved for the depth-averaged horizontal water particle velocity and the free-surface displacement. The long wave model needs to be solved numerically in general. For the cases of linear progressive waves and solitary waves, further analytical solutions were obtained. The model-predicted wave amplitude attenuation rate was shown to reasonably agree with the field data. Our analysis suggests that the elasticity of mud can potentially enhance the wave damping efficiency of a muddy seabed. The present formulations generalize several existing linear and nonlinear models for the wave–mud problem reported in literature.

Suggested Citation

  • I-Chi Chan, 2022. "Theoretical Model for Nonlinear Long Waves over a Thin Viscoelastic Muddy Seabed," Mathematics, MDPI, vol. 10(15), pages 1-16, August.
  • Handle: RePEc:gam:jmathe:v:10:y:2022:i:15:p:2715-:d:877812
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