Oscillatory MHD Convection of Cu-Water Nanofluid through an Inclined Permeable Channel with Chemical Reaction
Abstract
The impact of transpiration cooling on oscillatory MHD convection of Ag-Water nanofluid is examined over an inclined porous channel. Coupled partial differential equations were obtained for the momentum and temperature in view of the problem. These equations were analytically solved. The equations were converted to ordinary differential equations through a one term perturbation technique. The exact solutions for the ordinary differential equations were obtained and plotted to ascertain the effects of parameters variations on the velocity and temperature profiles. The effects of parameters variations were noted from the plots. It noted that increasing the magnetic field parameter and solutal Grashof number reduces and increases the velocity of the nanofluid respectively. Increase in the thermal radiation reduces the temperature while increase in the Peclet nuber correspondingly increases the temperature of the nanofluid
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