2014
DOI: 10.9790/5728-10539096
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Effect of an Inclined Magnetic Field on Steady Poiseuilleflow between Two Parallel Porous Plates

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Cited by 5 publications
(4 citation statements)
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“…The vector is parallel to both the fluid velocity vector and the temperature T but in opposite directions. Such a laminar flow through parallel plates under the influence of the magnetic field has been studied by many authors in recent years [14][15][16] in the applications in MHD generator, MHD pumps and electromagnetic flow meters.…”
Section: Mathematical Formulation Of the Problemmentioning
confidence: 99%
See 2 more Smart Citations
“…The vector is parallel to both the fluid velocity vector and the temperature T but in opposite directions. Such a laminar flow through parallel plates under the influence of the magnetic field has been studied by many authors in recent years [14][15][16] in the applications in MHD generator, MHD pumps and electromagnetic flow meters.…”
Section: Mathematical Formulation Of the Problemmentioning
confidence: 99%
“…and u = 0, T = 0 at y = 0 (13) u = , T = at y = 1 Equations (11) and (12) denote a system of coupled and non-linear ordinary differential equations subject to the conditions (13). Let the fluid viscosity vary exponentially with the temperature, then the function takes the form (14) in the following manner:…”
Section: Mathematical Formulation Of the Problemmentioning
confidence: 99%
See 1 more Smart Citation
“…Ramakrishnan [10] studied the effects of a slip parameter and an inclined magnetic field on MHD flow through two infinite parallel plates filled by a porous medium. Kuiry and Bahadur [11] analyzed the effect of an inclined magnetic field on the magnetohydrodynamic behaviour of two dimensional Poiseuille flow between two parallel porous plates of which the lower plate is taken to be porous. Sandeep [12] analysed the laminar convective flow of a dusty viscous fluid through a porous medium of non-conducting walls in the presence of an inclined magnetic field with volume fraction, heat source and considering porous parameter.…”
Section: Introductionmentioning
confidence: 99%