The chaotic behavior and traveling wave solutions of the conformable extended Korteweg–de-Vries model

Author:

Liu Chunyan12

Affiliation:

1. College of Computer Science, Chengdu University , Chengdu , 610106 , China

2. Visual Computing and Virtual Reality Key Laboratory of Sichuan Province, Sichuan Normal University , Chengdu , 610068 , China

Abstract

Abstract In this article, the phase portraits, chaotic patterns, and traveling wave solutions of the conformable extended Korteweg–de-Vries (KdV) model are investigated. First, the conformal fractional order extended KdV model is transformed into ordinary differential equation through traveling wave transformation. Second, two-dimensional (2D) planar dynamical system is presented and its chaotic behavior is studied by using the planar dynamical system method. Moreover, some three-dimensional (3D), 2D phase portraits and the Lyapunov exponent diagram are drawn. Finally, many meaningful solutions are constructed by using the complete discriminant system method, which include rational, trigonometric, hyperbolic, and Jacobi elliptic function solutions. In order to facilitate readers to see the impact of fractional order changes more intuitively, Maple software is used to draw 2D graphics, 3D graphics, density plots, contour plots, and comparison charts of some obtained solutions.

Publisher

Walter de Gruyter GmbH

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