Rigorous derivation of weakly dispersive shallow‐water models with large amplitude topography variations

Author:

Emerald Louis1,Paulsen Martin Oen2

Affiliation:

1. Department of Mathematics Nazarbayev University Astana Kazakhstan

2. Department of Mathematics University of Bergen Bergen Norway

Abstract

AbstractWe derive rigorously from the water waves equations new irrotational shallow‐water models for the propagation of surface waves in the case of uneven topography in horizontal dimensions one and two. The systems are made to capture the possible change in the waves' propagation, which can occur in the case of large amplitude topography. The main contribution of this work is the construction of new multiscale shallow‐water approximations of the Dirichlet–Neumann operator. We prove that the precision of these approximations is given at the order , , and . Here, , , and denote, respectively, the shallow‐water parameter, the nonlinear parameter, and the bathymetry parameter. From these approximations, we derive models with the same precision as the ones above. The model with precision is coupled with an elliptic problem, while the other models do not present this inconvenience.

Funder

Trond Mohn stiftelse

Publisher

Wiley

Reference19 articles.

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2. DingemansMW.Comparison of Computations with Boussinesq‐Like Models and Laboratory Measurements. Technical report Deltares Delft;1994.

3. A fully nonlinear Boussinesq model for surface waves. Part 1. Highly nonlinear unsteady waves

4. Rigorous Derivation from the Water Waves Equations of Some Full Dispersion Shallow Water Models

5. DuchêneV.A Unified Theoretical Approach. Analysis of PDEs[math.AP].Université de Rennes1;2021.

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