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Effect of inclined magnetic field on radiative heat and mass transfer in chemically reactive hybrid nanofluid flow due to dual stretching

Mubashar ArshadDepartment of Mathematics, University of Gujrat, Gujrat, 50700, Pakistan. [email protected]Fahad M. AlharbiDepartment of Mathematics, Al-Qunfudah University College, Umm Al-Qura University, Mecca, Saudi ArabiaAli HassanDepartment of Mathematics, University of Gujrat, Gujrat, 50700, PakistanQusain HaiderDepartment of Mathematics, University of Gujrat, Gujrat, 50700, PakistanAbdullah AlhushaybariDepartment of Mathematics, College of Science, Taif University, P.O. Box 11099, Taif, 21944, Saudi ArabiaSayed M. EldinCenter of Research, Faculty of Engineering, Future University in Egypt, New Cairo, 11835, EgyptZubair AhmadApplied College, Mahala Campus, King Khalid University, P.O. Box 9004, Abha, 61413, Saudi ArabiaLaila A. Al‐EssaDepartment of Mathematical Sciences, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh, 11671, Saudi ArabiaAhmed M. GalalDepartment of Mechanical Engineering, College of Engineering in Wadi Alddawasir, Prince Sattam bin Abdulaziz University, Wadi Alddawasir, Saudi Arabia
2023en
ABI

Аннотация

This research analyzes the three-dimensional magneto hydrodynamic nanofluid flow through chemical reaction and thermal radiation above the dual stretching surface in the presence of an inclined magnetic field. Different rotational nanofluid and hybrid nanofluids with constant angular velocity [Formula: see text] for this comparative study are considered. The constitutive relations are used to gain the equations of motion, energy, and concentration. This flow governing extremely non-linear equations cannot be handled by an analytical solution. So, these equations are transformed into ordinary differential equalities by using the similarity transformation and then handled in MATLAB by applying the boundary values problem practice. The outcomes for the considered problem are accessed through tables and graphs for different parameters. A maximum heat transfer amount is observed in the absence of thermal radiation and when the inclined magnetic field and axis of rotation are parallel.

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