2013
DOI: 10.1016/j.asej.2013.02.002
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Effects of Hall current and radiation absorption on MHD micropolar fluid in a rotating system

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Cited by 76 publications
(49 citation statements)
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“…Satya Narayana et al [25]. B.I.Olajuwon et al [26] extended the work of Rakesh [24] by incorporate angular momentum and concentration equations with thermal radiation term to study Hall current and thermal radiation effect on heat and mass transfer of unsteady MHD flow of a viscoelastic micropolar fluid through a porous medium.…”
mentioning
confidence: 99%
“…Satya Narayana et al [25]. B.I.Olajuwon et al [26] extended the work of Rakesh [24] by incorporate angular momentum and concentration equations with thermal radiation term to study Hall current and thermal radiation effect on heat and mass transfer of unsteady MHD flow of a viscoelastic micropolar fluid through a porous medium.…”
mentioning
confidence: 99%
“…The problem are solved analytically by perturbation technique. Comprehensive review of radiation absorption and hall current effects on unsteady free convection flow of micropolar fluid past a semi infinite vertical porous plate in a rotating system with uniform transverse magnetic field and chemical reaction are well presented by Satya Narayana et al [7] using regular perturbation method. On the other hand, Ismail et al [8] proposed the analytic solutions for the unsteady MHD free convection heat and mass transfer flow of rotating second grade fluid in a porous medium past an infinite inclined plate in the presence of heat absorption and ramped wall temperature using Laplace transform method.…”
Section: Introductionmentioning
confidence: 99%
“…Effects of chemical reaction on unsteady MHD heat and mass transfer flow past a semi infinite vertical porous moving plate in the presence of viscous dispation is analyzed by Bhagya Lakshmi [16]. Many researchers [17][18][19][20] have studied the problem of non-Newtonian fluid flows analytically and numerically over various flow geometries.…”
Section: Introductionmentioning
confidence: 99%