Unsteady Radiative Magnetohydrodynamic Flow over a Chemically Reacting Porous Stretching Plate Considering the Soret Effect

dc.contributor.authorAnkur Kumar Sarma
dc.contributor.authorDipak Sarma
dc.contributor.authorSunmoni Mudoi
dc.contributor.authorA. Dauda Adeshola
dc.contributor.authorKazeem Issa
dc.contributor.authorAbdul Azeez Kayode Jimoh
dc.contributor.authorAdebowale Martins Obalalu
dc.date.accessioned2025-10-18T18:47:40Z
dc.date.available2025-10-18T18:47:40Z
dc.date.issued2025
dc.description.abstract<jats:p>The analysis of unsteady MHD flow over a porous stretching plate is critical for various engineering applications, particularly in systems involving chemical reactions and thermal radiation. This study explores the novel effects of heat and mass transfer in a two-dimensional unsteady magnetohydrodynamic (MHD) flow. This present work examines the effects of radiation and a transverse magnetic field on a chemically reacting fluid flowing over a stretched plate. The unsteady nature of the flow is associated with the time-dependent variations in stretching/extending velocity, temperature, and fluid concentration. The nonlinear governing boundary layer partial differential equations (PDEs) are transformed into a set of nonlinear ordinary differential equations (ODEs) using a similarity transformation, which are then numerically solved using the MATLAB bvp4c method. The flow, heat, and concentration profiles are quantitatively analysed through graphs for various problem parameters, including the unsteadiness parameter (A), Hartmann number (M), porosity parameter (Sp), radiation parameter (N), chemical reaction parameter (K), Soret number (Sr), Eckert number (Ec), Schmidt number (Sc), and Prandtl number (Pr). Additionally, the skin friction coefficient, Nusselt number (Nu), and Sherwood number (Sh) are numerically addressed and illustrated using graphs.</jats:p>
dc.identifier.doi10.4028/p-p1eoa4
dc.identifier.issn1662-9507
dc.identifier.urihttps://kwasuspace.kwasu.edu.ng/handle/123456789/5948
dc.relation.ispartofDefect and Diffusion Forum
dc.titleUnsteady Radiative Magnetohydrodynamic Flow over a Chemically Reacting Porous Stretching Plate Considering the Soret Effect
dc.typejournal-article
oaire.citation.volume442
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