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- W2997177780 abstract "Abstract Many coasts around the world are fully or partially muddy. Surface waves sustain attenuation and modulation over mud, and bottom mud is fluidized and suspended in response to surface forcing. Surface wave–mud interaction has been studied numerically, theoretically, and in the field. In this study, we outline some recent theoretical and numerical work on the subject. Particularly, we discuss phase‐resolved numerical simulation of surface wave evolution over viscoelastic mud in the presence of currents and highlight the significance of mud elasticity on the process. Ignoring mud elasticity, which is the case in operational models, questions their application to a wide range of wave conditions where mud exhibits solid‐like behavior. We also discuss analytical models, developed using perturbation theory, to study generation of interfacial waves by a surface wave in a two‐fluid system as a feedback from the mud layer to surface forcing. Comparison between a second‐ and third‐order model shows that while the second‐order model is sufficient to study the generation process, it substantially overestimates long‐term amplitude of interface oscillations. Impacts of important parameters on dynamics of interfacial wave generation, namely relative thickness of mud layer, ratio of density and viscosity of mud to water, and surface wave properties are investigated." @default.
- W2997177780 created "2020-01-10" @default.
- W2997177780 creator A5053345550 @default.
- W2997177780 creator A5078307223 @default.
- W2997177780 date "2019-12-29" @default.
- W2997177780 modified "2023-10-14" @default.
- W2997177780 title "Nonlinear Wave Interactions over Coastal Muds" @default.
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- W2997177780 doi "https://doi.org/10.1002/9781119300762.wsts0201" @default.
- W2997177780 hasPublicationYear "2019" @default.
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