2016
DOI: 10.1016/j.jmmm.2016.03.046
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Hall and radial magnetic field effects on radiative peristaltic flow of Carreau–Yasuda fluid in a channel with convective heat and mass transfer

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Cited by 57 publications
(26 citation statements)
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“…Shehzad et al[33] studied the flow and heat transfer characteristics of micropolar fluid over an unsteady stretching sheet with convective boundary condition. Hayat et al[34,35] examined the impact of radial magnetic field on the peristaltic flow of Carreau-Yasuda and Carreau liquids in a channel with wall properties and convective conditions respectively. Literature survey indicates that much attention in the past has been given to study the boundary layer flows in presence of temperature convective condition.…”
mentioning
confidence: 99%
“…Shehzad et al[33] studied the flow and heat transfer characteristics of micropolar fluid over an unsteady stretching sheet with convective boundary condition. Hayat et al[34,35] examined the impact of radial magnetic field on the peristaltic flow of Carreau-Yasuda and Carreau liquids in a channel with wall properties and convective conditions respectively. Literature survey indicates that much attention in the past has been given to study the boundary layer flows in presence of temperature convective condition.…”
mentioning
confidence: 99%
“…Magnetic field is utilized in transverse direction of the flow field. The governing equations are: [30][31][32] and Imtiaz et al [33]. Our main objective here is to find numerical solutions for MHD stagnation point flow of an incompressible electrically conducting flow of micro nanofluid over a heated shrinking sheet.…”
Section: Problem Formulationmentioning
confidence: 99%
“…Hayat et al lem of mixed convective surface with chemical ed the convective type [28] of zero mass flux at surface of sheet. The different flow problems under convective surface conditions have been modeled and addressed by Hayat et al [30][31][32] and Imtiaz et al [33]. Our main objective here is to find numerical solutions for MHD stagnation point flow of an incompressible electrically conducting flow of micro nanofluid over a heated shrinking sheet.…”
Section: Problem Formulationmentioning
confidence: 99%
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“…Moreover few recent studies which comprise the thermal radiation aspects can be view through refrs. [26][27][28][29][30].…”
Section: Introductionmentioning
confidence: 99%