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Internal solitary and cnoidal waves of moderate amplitude in a two-layer fluid: the extended KdV equation approximation

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posted on 2025-06-27, 12:31 authored by Nerijus Sidorovas, Dmitri TseluikoDmitri Tseluiko, Wooyoung Choi, Karima KhusnutdinovaKarima Khusnutdinova

We consider travelling internal waves in a two-layer fluid with linear shear currents from the viewpoint of the extended Korteweg-de Vries (eKdV) equation derived from a strongly?nonlinear long-wave model. Using an asymptotic Kodama-Fokas-Liu near-identity transforma?tion, we map the eKdV equation to the Gardner equation. This improved Gardner equation has a different cubic nonlinearity coefficient and an additional transport term compared to the frequently used truncated Gardner equation. We then construct approximate solitary and cnoidal wave solutions of the eKdV equation using this mapping and test validity and perfor?mance of these approximations, as well as the truncated and improved Gardner equations, by comparison with direct numerical simulations of the strongly-nonlinear two-layer long-wave parent system in the absence of currents.

Funding

US National Science Foundation Grant No. DMS-2108524

Engineering and Physical Sciences Research Council (EPSRC, project reference 2458723)

History

School

  • Science

Published in

Physica D : Non-linear phenomena

Volume

481

Publisher

Elsevier B.V

Version

  • VoR (Version of Record)

Rights holder

© The Author(s)

Publisher statement

This is an open access article under the CC BY license ( http://creativecommons.org/licenses/by/4.0/ ).

Acceptance date

2025-05-08

Publication date

2025-05-29

Copyright date

2025

ISSN

0167-2789

eISSN

1872-8022

Language

  • en

Depositor

Dr Karima Khusnutdinova. Deposit date: 9 May 2025

Article number

134723

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