Radiation Consequences on Sutterby Fluid over a Curved Surface


M. Metwally A.S. Khalid A. Khan A.A. Iskakova K. Gorji M.R. Ehab M.
June 2022Pleiades journals

Journal of Engineering Thermophysics
2022#31Issue 2315 - 327 pp.

Abstract: The current work analyzes the heat transfer analysis of Sutterby fluid flow over a curved surface, discussing the bubbling prospects of the magnetic field, and the temperature field equation is incorporated with the consequence of radiation. Eventually, we get the formulation of mathematical structure complimenting the physical problem. The governing equations for the non-Newtonian fluid (Sutterby fluid) model over a curved surface are derived via inclusion of the consequences of the curvature. The eminently nonlinear PDEs are reduced to nonlinear ODEs via the similarity transformation. Then the resulting ODEs are solved with the use of the OHAM technique. Graphical interpretation and illustration are proffered for the tangled physical parameters Eckert number Ec, Sutterby fluid parameter γ, Prandtl number Pr, and curvature parameter K in the temperature and velocity profiles.



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Department of Mathematics, College of Science, King Saud University, Riyadh, Saudi Arabia
Department of Mathematics and Statistics, International Islamic University Islamabad, Islamabad, Pakistan
Department of Physics and Mathematics, Kazakh National Pedagogical University, Almaty, Kazakhstan
Faculty of Medicine and Health Sciences, Ghent University, Ghent, 9000, Belgium
Engineering Mathematics and Physics Department, Faculty of Engineering and Technology, Future University in Egypt, New Cairo, Egypt

Department of Mathematics
Department of Mathematics and Statistics
Department of Physics and Mathematics
Faculty of Medicine and Health Sciences
Engineering Mathematics and Physics Department

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