• Title of article

    Unsteady Magnetohydrodynamic Stagnation Point Flow of a Nanofluid over a Slendering Stretching Sheet Using Buongiorno’s Model

  • Author/Authors

    Kumar ، G.Vindo Department of Mathematics - S.V. University , Kumar ، R.V. M. S. S Kiran Department of Mathematics - S.V. University , Verma ، S. V. K. Department of Mathematics - S.V. University

  • From page
    84
  • To page
    105
  • Abstract
    This paper aimed to model and analyze the unsteady hydromagnetic boundary layer stagnation point nanofluid flow over a non-linear stretching surface through porous medium with variable wall thickness. The effects of radiation, dissipation, and slip velocity are taken into account. The formulation of the problem is made through Buongiorno’s model, which involves the aspects of thermophoresis and Brownian motion. The set of governing non-linear Ordinary Differential Equations (ODE’s) are solved numerically by using boundary value problem default solver in MATLAB bvp4c package. The impact of different flow quantities on fluid velocity, temperature, and nanoparticle concentration are analyzed and examined through graphs. The physical parameters like friction factor coefficient (-F (0)) , rates of heat transfer (-Ф(0)) , and nanoparticle friction (-Ꝋ(0)) are derived and presented through tables. It is found that the wall thickness parameter (α) depreciates the nanofluid velocity for n 1 and accelerates when n 1. Also, the unsteadiness parameter shows a significant effect on the stagnation point flow.
  • Keywords
    Magneticfield , Stagnation point , Unsteady nanofluid flow , Wall thickness , Partial slip
  • Journal title
    International Journal of Research in Industrial Engineering
  • Journal title
    International Journal of Research in Industrial Engineering
  • Record number

    2544270