Effects of Brownian Motion and Thermophoresis on Magneto Hydrodynamics Stagnation Point of a Nanofluid Boundary Layer Flow on a Stretching Surface with Variable Thickness

Journal Title: International Journal of Current Research and Review - Year 2017, Vol 9, Issue 22

Abstract

The paper aims to investigate the properties of Brownian motion and Thermophoresis magento hydro dynamics (MHD) stagnation point of a Nanofluid Boundary layer flow on a stretching surface with inconsistent thickness. The effect of inconsistent thickness is considered and understood that the sheet is defiant. A governing continuity, momentum, angular momentum and heat equations mutually with allied boundary conditions are first abridged to a set of self-similar non-linear united ordinary differential equations by appropriate transformations. These equations are solved numerically by using the Keller Box method. The influence of magnetic parameter M reduced the velocity profile while it increases temperature and nanoparticle volume fraction profiles. It is seen that the boundary layer is formed when l>1 and on other hand an inverted boundary layer is formed when <1.

Authors and Affiliations

Shiva Prasad Rayapole Prasad Rayapole

Keywords

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  • EP ID EP606867
  • DOI -
  • Views 101
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How To Cite

Shiva Prasad Rayapole Prasad Rayapole (2017). Effects of Brownian Motion and Thermophoresis on Magneto Hydrodynamics Stagnation Point of a Nanofluid Boundary Layer Flow on a Stretching Surface with Variable Thickness. International Journal of Current Research and Review, 9(22), 5-12. https://europub.co.uk/articles/-A-606867