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Featured researches published by Imran Ullah.


PLOS ONE | 2016

Unsteady MHD mixed convection slip flow of Casson fluid over nonlinearly stretching sheet embedded in a porous medium with chemical reaction, thermal radiation, heat generation/absorption and convective boundary conditions

Imran Ullah; Krishnendu Bhattacharyya; Sharidan Shafie; Ilyas Khan

Numerical results are presented for the effect of first order chemical reaction and thermal radiation on mixed convection flow of Casson fluid in the presence of magnetic field. The flow is generated due to unsteady nonlinearly stretching sheet placed inside a porous medium. Convective conditions on wall temperature and wall concentration are also employed in the investigation. The governing partial differential equations are converted to ordinary differential equations using suitable transformations and then solved numerically via Keller-box method. It is noticed that fluid velocity rises with increase in radiation parameter in the case of assisting flow and is opposite in the case of opposing fluid while radiation parameter has no effect on fluid velocity in the forced convection. It is also seen that fluid velocity and concentration enhances in the case of generative chemical reaction whereas both profiles reduces in the case of destructive chemical reaction. Further, increase in local unsteadiness parameter reduces fluid velocity, temperature and concentration. Over all the effects of physical parameters on fluid velocity, temperature and concentration distribution as well as on the wall shear stress, heat and mass transfer rates are discussed in detail.


Nanoscale Research Letters | 2016

MHD Natural Convection Flow of Casson Nanofluid over Nonlinearly Stretching Sheet Through Porous Medium with Chemical Reaction and Thermal Radiation

Imran Ullah; Ilyas Khan; Sharidan Shafie

In the present work, the effects of chemical reaction on hydromagnetic natural convection flow of Casson nanofluid induced due to nonlinearly stretching sheet immersed in a porous medium under the influence of thermal radiation and convective boundary condition are performed numerically. Moreover, the effects of velocity slip at stretching sheet wall are also examined in this study. The highly nonlinear-coupled governing equations are converted to nonlinear ordinary differential equations via similarity transformations. The transformed governing equations are then solved numerically using the Keller box method and graphical results for velocity, temperature, and nanoparticle concentration as well as wall shear stress, heat, and mass transfer rate are achieved through MATLAB software. Numerical results for the wall shear stress and heat transfer rate are presented in tabular form and compared with previously published work. Comparison reveals that the results are in good agreement. Findings of this work demonstrate that Casson fluids are better to control the temperature and nanoparticle concentration as compared to Newtonian fluid when the sheet is stretched in a nonlinear way. Also, the presence of suspended nanoparticles effectively promotes the heat transfer mechanism in the base fluid.


Scientific Reports | 2017

Soret and Dufour effects on unsteady mixed convection slip flow of Casson fluid over a nonlinearly stretching sheet with convective boundary condition

Imran Ullah; Ilyas Khan; Sharidan Shafie

Unsteady mixed convection flow of Casson fluid towards a nonlinearly stretching sheet with the slip and convective boundary conditions is analyzed in this work. The effects of Soret Dufour, viscous dissipation and heat generation/absorption are also investigated. After using some suitable transformations, the unsteady nonlinear problem is solved by using Keller-box method. Numerical solutions for wall shear stress and high temperature transfer rate are calculated and compared with previously published work, an excellent arrangement is followed. It is noticed that fluid velocity reduces for both local unsteadiness and Casson parameters. It is likewise noticed that the influence of a Dufour number of dimensionless temperature is more prominent as compared to species concentration. Furthermore, the temperature was found to be increased in the case of nonlinear thermal radiation.


Chemical Engineering Science | 2017

Unsteady MHD Falkner-Skan flow of Casson nanofluid with generative/destructive chemical reaction

Imran Ullah; Sharidan Shafie; Oluwole Daniel Makinde; Ilyas Khan


Journal of King Saud University - Science | 2017

Effects of slip condition and Newtonian heating on MHD flow of Casson fluid over a nonlinearly stretching sheet saturated in a porous medium

Imran Ullah; Sharidan Shafie; Ilyas Khan


alexandria engineering journal | 2016

Hydromagnetic Falkner-Skan flow of Casson fluid past a moving wedge with heat transfer

Imran Ullah; Ilyas Khan; Sharidan Shafie


Results in physics | 2018

Brownian diffusion and thermophoresis mechanisms in Casson fluid over a moving wedge

Imran Ullah; Sharidan Shafie; Ilyas Khan; Kai Long Hsiao


Numerical Methods for Partial Differential Equations | 2018

Heat and mass transfer in unsteady MHD slip flow of Casson fluid over a moving wedge embedded in a porous medium in the presence of chemical reaction: Numerical Solutions using Keller‐Box Method

Imran Ullah; Ilyas Khan; Sharidan Shafie


Jurnal Teknologi | 2018

HEAT GENERATION AND ABSORPTION IN MHD FLOW OF CASSON FLUID PAST A STRETCHING WEDGE WITH VISCOUS DISSIPATION AND NEWTONIAN HEATING

Imran Ullah; Sharidan Shafie; Ilyas Khan


Malaysian Journal of Fundamental and Applied Sciences | 2017

MHD free convection flow of Casson fluid over a permeable nonlinearly stretching sheet with chemical reaction

Imran Ullah; Sharidan Shafie; Ilyas Khan

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Sharidan Shafie

Universiti Teknologi Malaysia

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