An axisymmetric magnetohydrodynamic (MHD) boundary layer flow and heat transfer of a fluid over a slender cylinder are investigated numerically. The effects of viscous dissipation, thermal radiation, and surface transverse curvature are taken into account in the simulations. For this purpose, the governing partial differential equations are transformed to ordinary differential equations by using appropriate similarity transformations. The resultant ordinary differential equations along with appropriate boundary conditions are solved by the fourth-order Runge–Kutta method combined with the shooting technique. The effects of various parameters on the velocity and temperature profiles, local skin friction coefficient, and Nusselt number are analyzed.
机构:
UTM Centre for Industrial and Applied Mathematics, Universiti Teknologi MalaysiaUTM Centre for Industrial and Applied Mathematics, Universiti Teknologi Malaysia
Yahaya Shagaiya Daniel
Zainal Abdul Aziz
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UTM Centre for Industrial and Applied Mathematics, Universiti Teknologi MalaysiaUTM Centre for Industrial and Applied Mathematics, Universiti Teknologi Malaysia
Zainal Abdul Aziz
Zuhaila Ismail
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UTM Centre for Industrial and Applied Mathematics, Universiti Teknologi MalaysiaUTM Centre for Industrial and Applied Mathematics, Universiti Teknologi Malaysia