MHD Convective Flow Past A Vertical Porous Plate Under the Influence of Thermal and Mass Diffusion

Journal Title: International Journal of Engineering and Science Invention - Year 2018, Vol 7, Issue 7

Abstract

In this paper MHD Convective Flow Past A Vertical Porous Plate Under the Influence of Thermal and Mass Diffusion over a vertical porous plate has been examined and the results are presented graphically and physical interpretation is given. The nature of velocity with reference to all critical parameters which appear in the field equations were not commented in detailed. Also, prime importance to the bounding surface with respect to the uniform suction is observed. It is noticed that, as the Prandtl number increases the velocity decreases. Further it is seen that near the boundary layer a backward flow is noticed and subsequently the fluid motion is in the forward direction. Further, it is noticed that as the Prandtl number increases the velocity decreases. Also, it is seen that near the boundary layer a backward flow is noticed and subsequently the fluid motion is in the forward direction. And also, as the Grashoff number increases, the fluid velocity increases. In this case slightly a backward motion is noticed and there after forward motion is observed. Subsequently, it is seen that as the pore size increases the velocity seems to be increasing. It is observed that, as the pore size increases the velocity also increases. In this case more of backward flow is noticed and there after the fluid velocity is dominating as a result of which forward motion is observed. Further, the Prandtl number has the significant contribution over the flow rate.

Authors and Affiliations

N. Swamy Kallepalli, K. Rajasekhar, Ch. V. Ramana Murthy

Keywords

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  • EP ID EP397503
  • DOI -
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How To Cite

N. Swamy Kallepalli, K. Rajasekhar, Ch. V. Ramana Murthy (2018). MHD Convective Flow Past A Vertical Porous Plate Under the Influence of Thermal and Mass Diffusion. International Journal of Engineering and Science Invention, 7(7), 55-63. https://europub.co.uk/articles/-A-397503