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MULTIPLE SLIP EFFECTS ON MAGNETOHYDRODYNAMIC BOUNDARY LAYER FLOW OVER A STRETCHING SHEET EMBEDDED IN A POROUS MEDIUM WITH RADIATION AND JOULE HEATING

Volumen 9, Edición 2, 2018, pp. 117-132
DOI: 10.1615/SpecialTopicsRevPorousMedia.v9.i2.20
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SINOPSIS

We study the velocity, thermal, and mass slips on chemically reacting magnetohydrodynamic boundary layer flow over a radiated stretching surface in the presence of suction. The governing momentum boundary layer and thermal boundary layer equations with boundary conditions are transformed into a system of nonlinear ordinary differential equations that are solved numerically using the Runge–Kutta–Fehlberg method. The involved differential systems are solved for velocity, temperature, and mass fraction. Graphical and numerical results are described for the analysis of various parameters of attention entering the modeled problems. Various tables are constructed to show rheological effects of different physical parameters. Combined effects of thermal and concentration jump are analyzed. We found that the slips have the propensity to control boundary layer flow. Velocity, temperature, and concentration show the increasing nature before and after a point, as the velocity slip increases and the momentum, thermal, and concentration boundary layer thickness become thinner for velocity slip.

CITADO POR
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