MHD Natural Convection Casson Fluid Flow over a Non-Isothermal Stretching Sheet Embedded in a Porous Medium
B. O. Falodun, M. O. Oke, O. O. Fagbohun
Journal of Engineering Research and Reports · pp. 1–16 · Published 19 Oct 2018
10.9734/jerr/2018/v2i310957Abstract
In the present study, Magnetohydrodynamics (MHD) natural convection Casson fluid flow over a non-isothermal stretching sheet embedded in a porous medium is considered. The set of governing differential equations are simplified by similarity variables into coupled ordinary differential equations. The defined stream functions satisfied the continuity equation. Roseland approximation is utilized and the present study is therefore limited to an optically thick fluid. The transformed set of coupled nonlinear ordinary differential equations are then solved numerically via spectral homotopy analysis method (SHAM). Results revealed that the Magnetic parameter (M) reduces the velocity profile but produce a significant increase in the temperature profile. Also, it is observed that increasing the thermal radiation parameter increases the thermal condition of the fluid.
Cited by 2
Florence D. Ayegbusi, Cletus Onwubuoya, Bidemi O. Falodun · Heat Transfer · 2020
Lukman O. Ahmed, Bidemi O. Falodun, Nuhu Yunusa · 2024 International Conference on Science, Engineering and Business for Driving Sustainable Development Goals (SEB4SDG) · 2024
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