RADIATION AND CHEMICAL REACTION EFFECTS ON MHD MIXED CONVECTION FLOW PAST AN INCLINED POROUS PLATE EMBEDDED IN A POROUS MEDIUM WITH HEAT SOURCE AND THERMODIFFUSION

  • Unique Paper ID: 162866
  • Volume: 10
  • Issue: 11
  • PageNo: 169-182
  • Abstract:
  • This paper focuses on the radiation and chemical reaction effects on MHD mixed convective flow along inclined porous plate embedded in a porous medium with thermo diffusion in the presence of heat generation. The governing boundary layer equations are reduced to a system of ordinary differential equations using similarity transformations and the resulting equations are then solved numerically using Runge - Kutta fourth order method along with shooting technique. A parametric study is conducted to illustrate the influence of various governing parameters on the velocity, temperature, concentration, skin-friction coefficient, Nusselt number and Sherwood number and discussed in detail.

Copyright & License

Copyright © 2025 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{162866,
        author = {Dr. E. Hemalatha and Dr. A. Neeraja and Dr. N. Bhaskar Reddy},
        title = {RADIATION AND CHEMICAL REACTION EFFECTS ON MHD MIXED CONVECTION FLOW PAST AN INCLINED POROUS PLATE EMBEDDED IN A POROUS MEDIUM WITH HEAT SOURCE AND THERMODIFFUSION},
        journal = {International Journal of Innovative Research in Technology},
        year = {},
        volume = {10},
        number = {11},
        pages = {169-182},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=162866},
        abstract = {This paper focuses on the radiation and chemical reaction effects on MHD mixed convective flow along inclined porous plate embedded in a porous medium with thermo diffusion in the presence of heat generation. The governing boundary layer equations are reduced to a system of ordinary differential equations using similarity transformations and the resulting equations are then solved numerically using Runge - Kutta fourth order method along with shooting technique. A parametric study is conducted to illustrate the influence of various governing parameters on the velocity, temperature, concentration, skin-friction coefficient, Nusselt number and Sherwood number and discussed in detail.},
        keywords = {Chemical Reaction, Mixed Convection, Porous Plate, Radiation, Thermo diffusion.},
        month = {},
        }

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