2016
DOI: 10.12941/jksiam.2016.20.355
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Heat and Mass Transfer Effects on MHD Natural Convection Flow Past an Infinite Inclined Plate With Ramped Temperature

Abstract: This work is devoted to investigate heat and mass transfer effects on MHD natural convection flow past an inclined plate with ramped temperature numerically. The dimensionless governing equations for this investigation are solved by using finite element method. The effects of angle inclination, buoyancy ratio parameter, permeability parameter, magnetic parameter, Prandtl number, heat generation, thermal radiation, Eckert number, Schmidt number, chemical reaction parameter and time on velocity, temperature and … Show more

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Cited by 3 publications
(2 citation statements)
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References 19 publications
(19 reference statements)
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“…Aziz and Afify [25] studied hall current on MHD slip on Nano fluid over stretching sheet. Siva Reddy Sheri and Anjan Kumar [26] studied mass and heat transfer over spontaneously moving vertical plate for furiously moving temperature. Siva Reddy Sheri et al [27] studied natural convective flow for mass and heat transfer for MHD past infinite inclined plate.…”
Section: Introductionmentioning
confidence: 99%
“…Aziz and Afify [25] studied hall current on MHD slip on Nano fluid over stretching sheet. Siva Reddy Sheri and Anjan Kumar [26] studied mass and heat transfer over spontaneously moving vertical plate for furiously moving temperature. Siva Reddy Sheri et al [27] studied natural convective flow for mass and heat transfer for MHD past infinite inclined plate.…”
Section: Introductionmentioning
confidence: 99%
“…Lohsasbi and Sahai [18] studied the two-phase MHD flow and heat transfer in a parallel plate channel with the fluid in one phase being electrically conducting. Siva Reddy et al [19] created a numerical model to analyse the heat and mass transfer effects on the MHD natural convection flow past an impulsively moving perpendicular sheet with ramped temperature. Stamenkovic et al [20] examined the MHD flow of two immiscible and electrically conducting fluids within isothermal, insulated moving sheets under an applied electrical and inclined magnetic effect.…”
Section: Introductionmentioning
confidence: 99%