Novel topological, non-topological, and more solitons of the generalized cubic p-system describing isothermal flux

被引:0
作者
Emad A. Az-Zo’bi
Kallekh Afef
Riaz Ur Rahman
Lanre Akinyemi
Ahmet Bekir
Hijaz Ahmad
Mohammad A. Tashtoush
Ibrahim Mahariq
机构
[1] Mutah University,Department of Mathematics and Statistics
[2] King Khalid University,Department of Mathematics, College of Science Arts at Mahayil
[3] Mohail Asser,Institute for Advanced Study
[4] Shenzhen University,Department of Mathematics
[5] Lafayette College,Department of Mathematics, Faculty of Science
[6] Neighborhood of Akcaglan,Operational Research Center in Healthcare
[7] Islamic University of Madinah,Department of Computer Science and Mathematics
[8] Near East University,Department of Basic Science
[9] Lebanese American University,Faculty of Education and Arts
[10] AL-Huson University College,Electrical and Computer Engineering Department
[11] Al-Balqa Applied University,undefined
[12] Sohar University,undefined
[13] Gulf University for Science and Technology,undefined
来源
Optical and Quantum Electronics | 2024年 / 56卷
关键词
Solitons; Expanded ansatz method; Mixed hyperbolic-elliptic system; van der Waals equation; Sensitivity;
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摘要
In fluid dynamics, mixed-type systems of conservation laws model a wide range of phase transition problems in compressible media. This analysis studies analytically the time-fractional mixed-type hyperbolic-elliptic van der Waals p-system with generalized cubic flux function for the first time. For this purpose, the expanded ansatz method is introduced and employed to derive new closed and approximate topological, non-topological, singular, and periodic solitons solutions for the considered model. The 2D, 3D, and contour plots of the dynamical behaviors of some obtained results with fractional effects , in conformable sense, are illustrated. Furthermore, many other solution profiles can be obtained from our results with the open choices of parameters. The numerical sensitivity analysis of the regarding dynamical system is also discussed.
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