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Supercritical heat transfer characteristics of couple stress convection flow from a vertical cylinder using an equation of state approach (2018)
Journal Article
Basha, H., Reddy, G., Narayanan, N., & Beg, O. (2019). Supercritical heat transfer characteristics of couple stress convection flow from a vertical cylinder using an equation of state approach. Journal of Molecular Liquids, 277(Mar 19), 434-452. https://doi.org/10.1016/j.molliq.2018.11.165

The present work describes numerical simulations of the supercritical heat transfer characteristics of couple stress fluid flow from a vertical cylinder using the equation of state approach. Redlich-Kwong (RK-EOS) and Van der Waals (VW-EOS) equations... Read More about Supercritical heat transfer characteristics of couple stress convection flow from a vertical cylinder using an equation of state approach.

Important paradigms of the thermoelastic waves (2018)
Journal Article
Khan, A., Sohail, A., Beg, O., & Tariq, R. (2018). Important paradigms of the thermoelastic waves. Arabian Journal for Science and Engineering, 44(1), 663-671. https://doi.org/10.1007/s13369-018-3649-5

This paper is devoted to the investigation of the propagation of magneto-thermo-elastic waves in a rotating monoclinic system. The system is electrically conducting in the presence of an applied magnetic field. A general dispersion relation is obtaine... Read More about Important paradigms of the thermoelastic waves.

Adomian decomposition solution for propulsion of dissipative magnetic Jeffrey biofluid in a ciliated channel containing a porous medium with forced convection heat transfer (2018)
Journal Article
Manzoor, N., Maqbool, K., Beg, O., & Shaheen, S. (2018). Adomian decomposition solution for propulsion of dissipative magnetic Jeffrey biofluid in a ciliated channel containing a porous medium with forced convection heat transfer. Heat Transfer - Asian Research, 48(2), 556-581. https://doi.org/10.1002/htj.21394

Physiological transport phenomena often feature ciliated internal walls. Heat, momentum and multi-species mass transfer may arise and additionally non-Newtonian biofluid characteristics are common in smaller vessels. Blood (containing hemoglobin) or... Read More about Adomian decomposition solution for propulsion of dissipative magnetic Jeffrey biofluid in a ciliated channel containing a porous medium with forced convection heat transfer.

Chebyshev collocation computation of magneto-bioconvection nanofluid flow over a wedge with multiple slips and magnetic induction (2018)
Journal Article
Uddin, M., Kabir, M., Beg, O., & Alginahi, Y. (2018). Chebyshev collocation computation of magneto-bioconvection nanofluid flow over a wedge with multiple slips and magnetic induction. Proceedings of the Institution of Mechanical Engineers, Part N: Journal of Nanomaterials, Nanoengineering and Nanosystems, 232(4), 109-122. https://doi.org/10.1177/2397791418809795

In this paper the steady two dimensional stagnation point flow of a viscous incompressible electrically conducting bio-nanofluid over a stretching/shrinking wedge in the presence of passively control boundary condition, Stefan blowing and multiple sl... Read More about Chebyshev collocation computation of magneto-bioconvection nanofluid flow over a wedge with multiple slips and magnetic induction.

Application of differential transform method to unsteady free convective heat transfer of a couple stress fluid over a stretching sheet (2018)
Journal Article
Kumar, M., Reddy, G., Kumar, N., & Beg, O. (2018). Application of differential transform method to unsteady free convective heat transfer of a couple stress fluid over a stretching sheet. Heat Transfer - Asian Research, 48(2), 582-600. https://doi.org/10.1002/htj.21396

In the present article, the transient rheological boundary layer flow over a stretching sheet with heat transfer is investigated, a topic of relevance to non-Newtonian thermal materials processing. Stokes couple stress model is deployed to simulate... Read More about Application of differential transform method to unsteady free convective heat transfer of a couple stress fluid over a stretching sheet.

Numerical study of viscoelastic micropolar heat transfer from a vertical cone for thermal polymer coating (2018)
Journal Article
Madhavi, K., Prasad, V., Rao, A., Beg, O., & Kadir, A. (2018). Numerical study of viscoelastic micropolar heat transfer from a vertical cone for thermal polymer coating. Nonlinear Engineering, 8(1), 449-460. https://doi.org/10.1515/nleng-2018-0064

A mathematical model is developed to study laminar, nonlinear, non-isothermal, steady-state free convection boundary layer flow and heat transfer of a micropolar viscoelastic fluid from a vertical isothermal cone. The Eringen model and Jeffery’s visc... Read More about Numerical study of viscoelastic micropolar heat transfer from a vertical cone for thermal polymer coating.

Electro-osmosis modulated viscoelastic embryo transport in uterine hydrodynamics : mathematical modelling (2018)
Journal Article
transport in uterine hydrodynamics : mathematical modelling. Journal of Biomechanical Engineering, 141(2), 021003. https://doi.org/10.1115/1.4041904

Embryological transport features a very interesting and complex application of peristaltic fluid dynamics. Electro-osmotic phenomena are also known to arise in embryo transfer location. The fluid dynamic environment in embryological systems is also k... Read More about Electro-osmosis modulated viscoelastic embryo transport in uterine hydrodynamics : mathematical modelling.

Numerical study of heat transfer and viscous flow in a dual rotating extendable disk system with a non-Fourier heat flux model (2018)
Journal Article
Shamshuddin, M., Mishra, S., Beg, O., & Kadir, A. (2018). Numerical study of heat transfer and viscous flow in a dual rotating extendable disk system with a non-Fourier heat flux model. Heat Transfer - Asian Research, 48(1), 435-459. https://doi.org/10.1002/htj.21392

Nonlinear, steady-state, viscous flow and heat transfer between two stretchable rotating disks spinning at dissimilar velocities is studied with a non-Fourier heat flux model. A non-deformable porous medium is intercalated between the disks and the D... Read More about Numerical study of heat transfer and viscous flow in a dual rotating extendable disk system with a non-Fourier heat flux model.

Investigation of influence of homogenization models on stability and dynamics of FGM plates on elastic foundations (2018)
Journal Article
Mehala, T., Belabed, Z., Tounsi, A., & Beg, O. (2018). Investigation of influence of homogenization models on stability and dynamics of FGM plates on elastic foundations. Geomechanics and engineering, 16(3), 257-271. https://doi.org/10.12989/gae.2018.16.3.257

In this paper, the effect of the homogenization models on buckling and free vibration is presented for functionally graded plates (FGM) resting on elastic foundations. The majority of investigations developed in the last decade, explored the Voigt ho... Read More about Investigation of influence of homogenization models on stability and dynamics of FGM plates on elastic foundations.

Thermal slip in oblique radiative nano-polymer gel transport with temperature-dependent viscosity : solar collector nanomaterial coating manufacturing simulation (2018)
Journal Article
Mehmood, R., Tabassum, R., Kuharat, S., Beg, O., & Babaie, M. (2018). Thermal slip in oblique radiative nano-polymer gel transport with temperature-dependent viscosity : solar collector nanomaterial coating manufacturing simulation. Arabian Journal for Science and Engineering, 44(2), 1525-1541. https://doi.org/10.1007/s13369-018-3599-y

Nano-polymeric solar paints and sol-gels have emerged as a major new development in solar cell/collector coatings offering significant improvements in durability, anti-corrosion and thermal efficiency. They also exhibit substantial viscosity variatio... Read More about Thermal slip in oblique radiative nano-polymer gel transport with temperature-dependent viscosity : solar collector nanomaterial coating manufacturing simulation.