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International Journal of Research and Scientific Innovation (IJRSI)

Effect of Radiation and Mass Transfer on an Unsteady MHD Convection Flow in a Porous Medium with Viscous Dissipation a Finite Element Technique.

byDr. T. Arun Kumar

Published February 10, 2026  •  Vol. 13, Issue 1, pp. 1753–1765Open Access
DOI: 10.51244/IJRSI.2026.13010154

Abstract

Finite Element method is implemented to study the “Effect of Radiation and mass transfer on an unsteady MHD convection flow in a porous medium with viscous dissipation”. The Numerical solution thus obtained, presented graphically for velocity, temperature and concentration profiles within the boundary layer and tabulated results for skin friction coefficient, Nusselt number and Sherwood number are discussed. It is observed that the radiation parameter increases, the velocity and temperature decreases in the boundary layer. Whereas when thermal and solutal Grash of number increases then the velocity increases.

Keywords: Radiation, Viscous dissipation, Heat and Mass Transfer, Finite Element Method.

JournalInternational Journal of Research and Scientific Innovation (IJRSI)
ISSN2321-2705
Volume / IssueVolume 13, Issue 1
Pages1753–1765
Publication dateFebruary 10, 2026
DOI10.51244/IJRSI.2026.13010154
PublisherRSIS International
LicenseOpen Access

How to cite this article

Dr. T. Arun Kumar (2026). Effect of Radiation and Mass Transfer on an Unsteady MHD Convection Flow in a Porous Medium with Viscous Dissipation a Finite Element Technique.. International Journal of Research and Scientific Innovation (IJRSI), 13(1), 1753-1765. https://doi.org/10.51244/IJRSI.2026.13010154

BibTeX

@article{Dr2026,
  title   = {Effect of Radiation and Mass Transfer on an Unsteady MHD Convection Flow in a Porous Medium with Viscous Dissipation  a Finite Element Technique.},
  author  = {Dr. T. Arun Kumar},
  journal = {International Journal of Research and Scientific Innovation (IJRSI)},
  volume  = {13},
  number  = {1},
  pages   = {1753--1765},
  year    = {2026},
  doi     = {10.51244/IJRSI.2026.13010154},
  publisher = {RSIS International}
}