Combined effect of thermophoresis and Brownian motion on MHD mixed convective flow over an inclined stretching surface with radiation and chemical reaction

Thermophoresis
DOI: 10.1142/s0217979223500959 Publication Date: 2022-10-19T04:58:11Z
ABSTRACT
A study has been carried for an incompressible electrically conducting, viscous fluid past a continuously stretching surface in the presence of thermal radiation, dissipation and first-order chemical reaction with thermophoresis Brownian motion. An inclined uniform magnetic field is applied to flow region. The governing coupled partial differential equations (PDEs) that describe model are transformed into set nonlinear ordinary (ODEs) by applying similarity analysis. resultant ODEs computed numerically MATLAB software using boundary value problem solver (BVP4C). effects various physical parameters have examined graphically on velocity, concentration temperature distribution. comparison made from previously published work, there good agreement that. These results can be helpful geothermal engineering, energy conversation disposal nuclear waste material. Moreover, this combined effect also help biologists biological macromolecules such as genomic-length DNA HIV microchannel.
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