Families of Travelling Waves Solutions for Fractional-Order Extended Shallow Water Wave Equations, Using an Innovative Analytical Method

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Abstract

In the present research article, an efficient analytical technique is applied for travelling waves solutions of fractional partial differential equations. The investigated problems are reduced to ordinary differential equations, by a variable transformation. The solutions of the resultant ordinary differential equations are expressed in the term of some suitable polynomials, which provide trigonometric, hyperbolic and rational function solutions with some free parameters. To confirm the reliability and novelty of the current work, the proposed method is applied for the solutions of (2+1) and (3+1)-dimensional fractional-order extended shallow water wave equations.

Description

Khan, Hassan/0000-0001-6417-1181; Kumam, Poom/0000-0002-5463-4581

Keywords

Families Of Solutions, Analytical Method, Shallow Water Wave Equations, shallow water wave equations, Geometry, Periodic Wave Solutions, Analytical method, Mathematical analysis, Orthogonal Polynomials, Differential equation, Method of characteristics, FOS: Mathematics, Variable (mathematics), Anomalous Diffusion Modeling and Analysis, Trigonometric functions, Time-Fractional Diffusion Equation, Applied Mathematics, Rational function, Statistical and Nonlinear Physics, Partial differential equation, families of solutions, Applied mathematics, TK1-9971, Fractional Derivatives, Quadrature Methods, Physics and Astronomy, Modeling and Simulation, Physical Sciences, Hyperbolic partial differential equation, Fractional Calculus, Electrical engineering. Electronics. Nuclear engineering, Mathematics, Ordinary differential equation, Rogue Waves in Nonlinear Systems

Fields of Science

01 natural sciences, 0103 physical sciences

Citation

Khan, Hassan...et al. (2019). "Families of Travelling Waves Solutions for Fractional-Order Extended Shallow Water Wave Equations, Using an Innovative Analytical Method", IEEE Access, Vol. 7.

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28

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7

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Start Page

107523

End Page

107532
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CrossRef : 2

Scopus : 35

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