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Impact of activation energy and variable properties on peristaltic flow through porous wall channel

M. RafiqDepartment of Mathematics, COMSATS University Islamabad, Attock, 43600, Pakistan. [email protected]Asma ShaheenDepartment of Mathematics, COMSATS University Islamabad, Attock, 43600, PakistanYoussef TrabelsiDepartment of Physics, College of Science and Arts at Muhayel, King Khalid University, Abha, Saudi ArabiaSayed M. EldinCenter of Research, Faculty of Engineering, Future University in Egypt New Cairo, New Cairo, 11835, EgyptM. Ijaz KhanDepartment of Mathematics and Statistics, Riphah International University, I-14, Islamabad, 44000, PakistanDhia K. SukerMechanical Engineering Department, College of Engineering and Islamic Architecture, Umm Al-Qura University, P. O. Box 5555, Mecca, 21955, Saudi Arabia
2023en
ABI

Аннотация

The current study discusses the peristaltic flow of Jeffrey fluid through a porous wall channel. Magnetohydrodynamic (MHD) effects are also considered while formulating the problem. Heat and mass transfers are discussed in the presence of activation energy and constant heat source/sink effects. A chemical reaction is also part of the analysis. The Lubrication approach is adopted for the simplification of resulting non-linear equations. MATHEMATICA command, NDSolve, is used to discuss the results graphically for various flow parameters like Hartman number [Formula: see text], porosity parameter [Formula: see text], slip parameters ([Formula: see text]), Schmidt [Formula: see text], Soret [Formula: see text] and Prandtl [Formula: see text] numbers, and many others. Parabolic behavior for velocity and sinusoidal nature for heat transfer and pressure gradient is noticed. Results indicate that the velocity is greatly affected by varying values of slip parameters (γ's) and Hartman number [Formula: see text]. Enhancing the viscoelastic nature of fluid causes an increase in velocity. Similar behavior is noticed for velocity and temperature profiles. The decreasing trend is shown by concentration when the value of the chemical reaction and temperature ratio parameters is enhanced. Thus, the study presented in the current analysis can be used to study many human physiological systems especially, the blood flow. Since Jeffrey's fluid exhibits the same characteristics as observed for blood.

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