Thermal Science | Vol.22, Issue.1 Part B | | Pages
Magnetohydrodynamic flow of Powell-Eyring fluid by a stretching cylinder with Newtonian heating
This paper examines MHD flow of Powell-Eyring fluid by a stretching cylinder with thermal radiation. Analysis has been presented through inclined magnetic field. Characteristics of heat transfer are analyzed with advanced boundary condition (i. e., Newtonian heating). Suitable transformations convert the non-linear PDE to the non-linear ODE. Convergent series solutions of momentum and energy equations are developed. Effects of different pertinent parameters on the velocity and temperature distributions are shown graphically. Numerical values of the skin friction coefficient and Nusselt number are also computed and analyzed. Comparison of the present study with the previous published work is also examined. Higher values of fluid, M, and curvature parameters show enhancement in the fluid velocity while opposite behavior is observed for Hartmann number and suction parameter. Conjugate and radiation parameters lead to an increase in temperature.
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Magnetohydrodynamic flow of Powell-Eyring fluid by a stretching cylinder with Newtonian heating
This paper examines MHD flow of Powell-Eyring fluid by a stretching cylinder with thermal radiation. Analysis has been presented through inclined magnetic field. Characteristics of heat transfer are analyzed with advanced boundary condition (i. e., Newtonian heating). Suitable transformations convert the non-linear PDE to the non-linear ODE. Convergent series solutions of momentum and energy equations are developed. Effects of different pertinent parameters on the velocity and temperature distributions are shown graphically. Numerical values of the skin friction coefficient and Nusselt number are also computed and analyzed. Comparison of the present study with the previous published work is also examined. Higher values of fluid, M, and curvature parameters show enhancement in the fluid velocity while opposite behavior is observed for Hartmann number and suction parameter. Conjugate and radiation parameters lead to an increase in temperature.
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thermal radiation analysis mhd flow of powelleyring fluid hartmann number fluid m and curvature parameters fluid velocity boundary condition i e newtonian convergent series solutions of momentum and energy equations suction skin friction coefficient field characteristics of heat transfer stretching cylinder conjugate nonlinear pde velocity and temperature distributions
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Hayat Tasawar,Hussain Zakir,Farooq Muhammad,Alsaedi Ahmed,.Magnetohydrodynamic flow of Powell-Eyring fluid by a stretching cylinder with Newtonian heating. 22 (1 Part B),.
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