On new analytical solutions of fractional systems in shallow water dynamics



Document title: On new analytical solutions of fractional systems in shallow water dynamics
Journal: Revista mexicana de física
Database: PERIÓDICA
System number: 000454072
ISSN: 0035-001X
Authors: 1
1
Institutions: 1Ege University, Faculty of Science, Izmir. Turquía
Year:
Season: Sep-Oct
Volumen: 68
Number: 5
Country: México
Language: Inglés
Document type: Artículo
Approach: Analítico, teórico
English abstract Recently, fractional calculus has considerable attention from researchers since many problems in natural sciences and engineering are modelled with differential equations having fractional order. The nonlinear coupled time-fractional Boussinesq-Burger (B-B) equation, the nonlinear time-fractional approximate long water wave (ALW) equation, and the nonlinear (2 + 1)-dimensional space-time fractional generalized Nizhnik-Novikov-Veselov (GNNV) equation are used to express the structure of shallow water waves (SWWs) with different distributions. The analytical solutions of these equations play a substantial role in explaining the properties of complex phenomena in applied sciences. In the current work, we utilize the exponential rational function (ERF) method with the definition of fractional derivative in the conformable sense to achieve new exact traveling wave solutions of these fractional systems. The correctness, validity, and graphics of the new traveling wave solutions are achieved with the aid of Mathematica. Results demonstrate the effectiveness and strength of this technique to solve the system of fractional differential equations (FDEs)
Disciplines: Física y astronomía
Keyword: Ecuación diferencial parcial fraccionaria no lineal,
Onda de agua poco profunda,
Solución de ondas analíticas,
Derivada fraccionaria conforme
Keyword: Physics,
Nonlinear fractional partial differential equation,
Shallow water wave,
Analytical wave solution,
Conformable fractional derivative
Full text: Texto completo (Ver HTML) Texto completo (Ver PDF)