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Dual MHD Convection of Heat and Mass Flow through a Medium with Oscillating Upper Plate

Achogo, Wisdom Hezekiah(PhD), Okereke, Ifeoma Chikamma, Ofomata, Amarachukwu I.O

Abstract

The study investigated thermal transfer in MHD convective flow of Cu-H2O nanofluid in a porous medium with heat generation/absorption. A set of partial differential equations with copper nanoparticles were used. The partial differential equations were non-dimensioned with various dimensionless quantities in order to obtain forms whose solutions can be easily obtained. The partial differential equations were later transformed into ordination differential equations through a two term perturbation technique which were later solved using method of undetermined coefficient to obtain the exact solutions for the energy, concentration and momentum equations. Using the exact solutions; plots were done with the aid of standard parameters to estimate the variational effects of parameters that entered the flow field and from the plots; it was observed that thermal radiation decreased the temperature of the fluid. Heat generation/absorption parameter increased the temperature of the fluid. The effective thermal conductivity increased the temperature of the fluid. Peclet number decreased the velocity of the fluid. Reynolds number decreased the fluid velocity, increasing the Schmidt number, frequency of oscillation increase the concentration of the fluid.

Keywords

Heat and Specie transferHeat generationNanofluidMagnetohydrodynamics(MHD)

References

Aaiza, G.; Khan, I & Shafie, S.(2015). Energy transfer in mixed convection MHD flow of nanofluid containing different shapes of nanoparticles in a channel filled with saturated porous medium. Nanoscale research letters,2(2015), 1-16. Achogo, W. H.; Adikabu, I. N.; Awortu, I. & Eleonu, B. C.(2020). Soret effect on MHD free convection through a porous inclined channel in the presence of thermal radiation. International journal of research and innovation in applied, 5(7),117-124. Buggaramulu J. & Venkata M. K.(2017). MHD convection flow of Kuvshinski fluid past an infinite vertical porous plate with radiation and chemical reaction effects. International journal on recent and innovation trends in computing and communication, 5(9),64-74.

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