• Title of article

    Modeling for radiated Marangoni convection flow of magneto-nanoliquid subject to activation energy and chemical reaction

  • Author/Authors

    Ullah, I. Department of Mathematics - Quaid-I-Azam University, Islamabad, Pakistan , Hayat, T. Department of Mathematics - Quaid-I-Azam University, Islamabad, Pakistan , Alsaedi, A. Nonlinear Analysis and Applied Mathematics (NAAM) Research Group - Department of Mathematics - Faculty of Science - King Abdulaziz University, Jeddah, Saudi Arabia , Asghar, S. Department of Mathematics, Islamabad, Pakistan

  • Pages
    9
  • From page
    3390
  • To page
    3398
  • Abstract
    Simultaneous impacts of non-linear radiation and magnetohydrodynamics in Marangoni convection nanoliquid are addressed Novel aspects of activation energy and space dependent heat source are addressed. Nanoliquid attributes Brownain movement and thermophoresis diffusion. NDSolve base shooting technique is employed for the numerical simulation. Aspects of various embedded variables are focused on velocity, heat and mass transport distributions via graphical interpretations. Moreover temperature gradient at the surface is estimated and analyzed. Our study identified that exponential based space heat source (ESHS) parameter significantly enhanced the thermal field. Activation energy and temperature difference parameters decrease the nanoparticles concentration. Moreover temperature gradient enhances for higher Marangoni ratio parameter, Hartmann number, dimensionless activation energy and thermophoresis parameter.
  • Keywords
    Marangoni convection , Exponential space dependent heat source , Activation energy , Thermal radiation , Nanomaterials
  • Journal title
    Scientia Iranica(Transactions F: Nanotechnology)
  • Serial Year
    2020
  • Record number

    2536824