Jafar Hasnain
Jafar Hasnain
Bahria University Islamabad Campus, Islamabad
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Impacts of lorentz force and chemical reaction on peristaltic transport of Jeffrey fluid in a penetrable channel with injection/suction at walls
Z Abbas, MY Rafiq, J Hasnain, H Umer
Alexandria Engineering Journal 60 (1), 1113-1122, 2021
Peristaltic transport of a Casson fluid in a non-uniform inclined tube with Rosseland approximation and wall properties
Z Abbas, MY Rafiq, J Hasnain, T Javed
Arabian Journal for Science and Engineering 46, 1997-2007, 2021
Effects of slip on MHD flow of a dusty fluid over a stretching sheet through porous space
Z Abbas, J Hasnain, M Sajid
Journal of Engineering Thermophysics 28, 84-102, 2019
Effects of porosity and mixed convection on MHD two phase fluid flow in an inclined channel
J Hasnain, Z Abbas, M Sajid
PloS one 10 (3), e0119913, 2015
Dual solutions in hydromagnetic viscous fluid flow past a shrinking curved surface
M Naveed, Z Abbas, M Sajid, J Hasnain
Arabian Journal for Science and Engineering 43, 1189-1194, 2018
Two-phase magnetoconvection flow of magnetite (Fe3O4) nanoparticles in a horizontal composite porous annulus
Z Abbas, J Hasnain
Results in physics 7, 574-580, 2017
Hydromagnetic mixed convective two-phase flow of couple stress and viscous fluids in an inclined channel
Z Abbas, J Hasnain, M Sajid
Zeitschrift für Naturforschung A 69 (10-11), 553-561, 2014
Theoretical exploration of thermal transportation with Lorentz force for fourth-grade fluid model obeying peristaltic mechanism
MY Rafiq, Z Abbas, J Hasnain
Arabian Journal for Science and Engineering 46, 12391-12404, 2021
MHD two-phase fluid flow and heat transfer with partial slip in an inclined channel
Z Abbas, J Hasnain, M Sajid
Thermal Science 20 (5), 1435-1446, 2016
Numerical investigation for thermal growth in water and engine oil-based ternary nanofluid using three different shaped nanoparticles over a linear and nonlinear stretching sheet
J Hasnain, N Abid
Numerical Heat Transfer, Part A: Applications 83 (12), 1365-1376, 2023
Analysis of asymptotic solutions for non-Newtonian fluid flow between two parallel discs with dissimilar in-plane motion
Z Abbas, MA Jafar, J Hasnain
European Journal of Mechanics-B/Fluids 84, 129-138, 2020
Entropy generation analysis on two-phase micropolar nanofluids flow in an inclined channel with convective heat transfer
J Hasnain, Z Abbas
Thermal Science 23 (3 Part B), 1765-1777, 2019
Slip flow of magnetite-water nanomaterial in an inclined channel with thermal radiation
Z Abbas, T Rahim, J Hasnain
International Journal of Mechanical Sciences 122, 288-296, 2017
Thermally developed generalized Bödewadt flow containing nanoparticles over a rotating surface with slip condition
Z Abbas, MY Rafiq, J Hasnain, A Nadeem
International Communications in Heat and Mass Transfer 122, 105143, 2021
Oscillatory slip flow of Fe3O4 and Al2O3 nanoparticles in a vertical porous channel using Darcy's law with thermal radiation
Z Abbas, S Hussain, MY Rafiq, J Hasnain
Heat Transfer 49 (6), 3228-3245, 2020
Analysis of dusty Casson fluid flow past a permeable stretching sheet bearing power law temperature and magnetic field
J Hasnain, Z Abbas, M Sheikh, S Aly
International Journal of Numerical Methods for Heat & Fluid Flow 30 (6 …, 2020
MHD flow and heat transfer between two rotating disks under the effects of nanomaterials (MoS2) and thermal radiation
I Mehdi, Z Abbas, J Hasnain
Case Studies in Thermal Engineering 33, 101968, 2022
Hydromagnetic convection flow in two immiscible fluids through a porous medium in an inclined annulus
J Hasnain, Z Abbas
Journal of Porous Media 20 (11), 2017
Effects of variable viscosity on asymmetric flow of non-Newtonian fluid driven through an expanding/contracting channel containing porous walls
S Rafiq, Z Abbas, M Sheikh, J Hasnain
Arabian Journal for Science and Engineering 45, 9471-9480, 2020
Rheology of peristaltic flow in couple stress fluid in an inclined tube: Heat and mass transfer analysis
Z Abbas, A Shakeel, MY Rafiq, S Khaliq, J Hasnain, A Nadeem
Advances in Mechanical Engineering 14 (11), 16878132221139984, 2022
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