Dynamics of generalized time-fractional viscous-capillarity compressible fluid model

被引:0
作者
Emad A. Az-Zo’bi
Qais M. M. Alomari
Kallekh Afef
Mustafa Inc
机构
[1] Mutah University,Department of Mathematics and Statistics
[2] King Khalid University,Department of Mathematics, College of Science Arts at Mahayil
[3] Firat University,Department of Mathematics
[4] Biruni University,Department of Computer Engineering
[5] China Medical University,Department of Medical Research
来源
Optical and Quantum Electronics | / 56卷
关键词
Gas fluid; Capillarity; Traveling wave solutions; New extended direct algebraic method; Mixed hyperbolic-elliptic ; -system; Fractional derivative;
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摘要
This analysis examines the time-fractional mixed hyperbolic-elliptic p-system of conservation laws by applying the new extended direct algebraic method. The p-system with generalized cubic van der Waals flux, and potential applications in the field of compressible isothermal viscosity-capillarity fluids, is investigated. In particular, this issue describes the longitudinal isothermal motion in elastic bars or fluids. A diverse periodic, kink, and singular soliton structures are extracted. The 3D dynamical behaviors and corresponding contour profiles of some obtained solitons are displayed. The fractional effects in the sense of Beta, M-truncated, and modified Riemann–Liouville, are discussed and illustrated. The method shows the straightforward, reliability, and efficiency for solving complex physical phenomena that is modeled by nonlinear partial differential equations.
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