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Hamiltonian models for the propagation of irrotational surface gravity waves over a variable bottom

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arxiv 1708.06791 v1 pith:AE62R4LP submitted 2017-08-22 physics.flu-dyn math-phmath.MPnlin.PS

classification physics.flu-dynmath-phmath.MPnlin.PS
keywords bottomhamiltoniansurfaceforminitialirrotationalvariablevarying
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A single incompressible, inviscid, irrotational fluid medium bounded by a free surface and varying bottom is considered. The Hamiltonian of the system is expressed in terms of the so-called Dirichlet-Neumann operators. The equations for the surface waves are presented in Hamiltonian form. Specific scaling of the variables is selected which leads to approximations of Boussinesq and KdV types taking into account the effect of the slowly varying bottom. The arising KdV equation with variable coefficients is studied numerically when the initial condition is in the form of the one soliton solution for the initial depth.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Three-layer water flows: Dirichlet-Neumann operators and approximations

    physics.flu-dyn 2026-08 conditional novelty 5.0 of 10

    Three-layer stratified water flows are cast in Hamiltonian form using Dirichlet-Neumann operators, yielding a dispersion relation and approximate wave speed formulas.

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