Modeling shallow water waves
David Lannes

TL;DR
This paper reviews various shallow water wave models derived through asymptotic expansions, comparing their formulations, open problems, and extensions to include vorticity and complex phenomena like wave breaking and currents.
Contribution
It provides a unified formalism for multiple shallow water models, discusses open problems, and extends models to account for vorticity and complex wave behaviors.
Findings
Unified comparison of shallow water models
Identification of open problems in model derivation
Extension of models to include vorticity effects
Abstract
We review here the derivation of many of the most important models that appear in the literature (mainly in coastal oceanography) for the description of waves in shallow water. We show that these models can be obtained using various asymptotic expansions of the "turbulent" and non-hydrostatic terms that appear in the equations that result from the vertical integration of the free surface Euler equations. Among these models are the well-known nonlinear shallow water (NSW), Boussinesq and Serre-Green-Naghdi (SGN) equations for which we review several pending open problems. More recent models such as the multi-layer NSW or SGN systems, as well as the Isobe-Kakinuma equations are also reviewed under a unified formalism that should simplify comparisons. We also comment on the scalar versions of the various shallow water systems which can be used to describe unidirectional waves in horizontal…
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Taxonomy
TopicsCoastal and Marine Dynamics
