Abundant soliton wave solutions for the (3+1)-dimensional variable-coefficient nonlinear wave equation in liquid with gas bubbles by bilinear analysis

Author:

Tao Guanqi1,Manafian Jalil23ORCID,İlhan Onur Alp4,Zia Syed Maqsood5,Agamalieva Latifa6

Affiliation:

1. Experimental and Practice Innovation Education Center, Beijing Normal University, Zhuhai, Guangdong 519087, China

2. Department of Applied Mathematics, Faculty of Mathematical Sciences, University of Tabriz, Tabriz, Iran

3. Natural Sciences Faculty, Lankaran State University, 50, H. Aslanov Str., Lankaran, Azerbaijan

4. Department of Mathematics, Faculty of Education, Erciyes University, Melikgazi, Kayseri 38039, Turkey

5. Department of Statistics, Faculty of Physical Sciences, Shah Abdul Latif University Khairpour, Sindh, Pakistan

6. Azerbaijan University, J. Hajibeyli, 71, Baku AZ1007, Azerbaijan

Abstract

In this paper, we check and scan the (3+1)-dimensional variable-coefficient nonlinear wave equation which is considered in soliton theory and generated by considering the Hirota bilinear operators. We retrieve some novel exact analytical solutions, including cross-kink soliton solutions, breather wave solutions, interaction between stripe and periodic, multi-wave solutions, periodic wave solutions and solitary wave solutions for the (3+1)-dimensional variable-coefficient nonlinear wave equation in liquid with gas bubbles by Maple symbolic computations. The required conditions of the analyticity and positivity of the solutions can be easily achieved by taking special choices of the involved parameters. The main ingredients for this scheme are to recover the Hirota bilinear forms and their generalized equivalences. Lastly, the graphical simulations of the exact solutions are depicted.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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