Effects of Injection and Suction on Heat Transfer over a Flat Plate with Radiation for Bingham Non-Newtonian Fluid
The effect of suction and injection on the heat transfer for a Bingham non-Newtonian fluid flow over a flat plate has been studied in the present study. The plate moves in the fluid with a constant velocity and hence a boundary layer is developed over it. The effect of radiation is considered in the boundary layer. The fluid is considered to be a gray, emitting and absorbing, but non-scattering medium and the Rosseland approximation is used for radiation heat flux in the energy equation. The governing equations are transformed into a system of ordinary differential equations and solved them analytically using HAM method. A parametric study of all involved parameters is conducted, and a representative of the results for the temperature profile as well as the Nusselt number is illustrated graphically to elucidate interesting features of the solutions. The effects of the pertinent parameters on the temperature profile and the Nusselt number (rate of heat transfer) are also displayed.
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