Some Interaction Solutions of a Reduced Generalised (3+1)-Dimensional Shallow Water Wave Equation for Lump Solutions and a Pair of Resonance Solitons

Author:

Wang Yao1,Chen Mei-Dan1,Li Xian1,Li Biao1

Affiliation:

1. Ningbo Collabrative Innovation Center of Nonlinear Harzard System of Ocean and Atmosphere and Department of Mathematics, Ningbo University, Ningbo 315211, P.R. China

Abstract

Abstract Through Hirota bilinear transformation and symbolic computation with Maple, a class of lump solutions, rationally localised in all directions in the space, to a reduced generalised (3+1)-dimensional shallow water wave (SWW) equation are prensented. The resulting lump solutions all contain six parameters, two of which are free due to the translation invariance of the SWW equation and the other four of which must satisfy a nonzero determinant condition guaranteeing analyticity and rational localisation of the solutions. Then we derived the interaction solutions for lump solutions and one stripe soliton and the result shows that the particular lump solutions with specific values of the involved parameters will be drowned or swallowed by the stripe soliton. Furthermore, we extend this method to a more general combination of positive quadratic function and hyperbolic functions. Especially, it is interesting that a rogue wave is found to be aroused by the interaction between lump solutions and a pair of resonance stripe solitons. By choosing the values of the parameters, the dynamic properties of lump solutions, interaction solutions for lump solutions and one stripe soliton and interaction solutions for lump solutions and a pair of resonance solitons, are shown by dynamic graphs.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics

Reference30 articles.

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3. C. Rogers and W. F. Shadwick, Bäcklund Transformation and their Applications, Academic Press, London 1982.

4. V. B. Matveev and M. A. Salle, Darboux Transformation and Solitons, Springer-Verlag, Berlin 1991.

5. L. Feng, F. Yu, and L. Li, Z. Naturforsch. A 72, 9 (2016).

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