Regular And Singular Pulse And Front Solutions And Possible Isochronous Behavior In The Extended-Reduced Ostrovsky Equation: Phase-Plane, Multi-Infinite Series And Variational Formulations
Keywords
Extended-reduced ostrovsky equation; Front solutions; Homoclinic and heteroclinic orbits; Isochronous behavior; Regular and singular pulse solutions; Variational solitary waves
Abstract
In this paper we employ three recent analytical approaches to investigate several classes of traveling wave solutions of the so-called extended-reduced Ostrovsky Equation (exROE). A recent extension of phase-plane analysis is first employed to show the existence of breaking kink wave solutions and smooth periodic wave (compacton) solutions. Next, smooth traveling waves are derived using a recent technique to derive convergent multi-infinite series solutions for the homoclinic orbits of the traveling-wave equations for the exROE equation. These correspond to pulse solutions respectively of the original PDEs. We perform many numerical tests in different parameter regime to pinpoint real saddle equilibrium points of the corresponding traveling-wave equations, as well as ensure simultaneous convergence and continuity of the multi-infinite series solutions for the homoclinic orbits anchored by these saddle points. Unlike the majority of unaccelerated convergent series, high accuracy is attained with relatively few terms. And finally, variational methods are employed to generate families of both regular and embedded solitary wave solutions for the exROE PDE. The technique for obtaining the embedded solitons incorporates several recent generalizations of the usual variational technique and it is thus topical in itself. One unusual feature of the solitary waves derived here is that we are able to obtain them in analytical form (within the assumed ansatz for the trial functions). Thus, a direct error analysis is performed, showing the accuracy of the resulting solitary waves. Given the importance of solitary wave solutions in wave dynamics and information propagation in nonlinear PDEs, as well as the fact that not much is known about solutions of the family of generalized exROE equations considered here, the results obtained are both new and timely.
Publication Date
1-1-2016
Publication Title
Discontinuity, Nonlinearity, and Complexity
Volume
5
Issue
1
Number of Pages
85-100
Document Type
Article
Personal Identifier
scopus
DOI Link
https://doi.org/10.5890/DNC.2016.03.009
Copyright Status
Unknown
Socpus ID
85020255810 (Scopus)
Source API URL
https://api.elsevier.com/content/abstract/scopus_id/85020255810
STARS Citation
Tanriver, U.; Gambino, G.; and Roy Choudhury, S., "Regular And Singular Pulse And Front Solutions And Possible Isochronous Behavior In The Extended-Reduced Ostrovsky Equation: Phase-Plane, Multi-Infinite Series And Variational Formulations" (2016). Scopus Export 2015-2019. 3645.
https://stars.library.ucf.edu/scopus2015/3645