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Featured researches published by M. J. Uddin.


Neural Computing and Applications | 2017

Analysis of natural convective heat transport in homocentric annuli containing nanofluids with an oriented magnetic field using nonhomogeneous dynamic model

M. J. Uddin; M. M. Rahman; M. S. Alam

AbstractIn this paper, the time-dependent natural convective heat transport in homocentric annuli containing nanofluids accompanying an oriented magnetic field using a nonhomogeneous dynamic mathematical model is numerically investigated. The analysis is carried out for four different shapes of inner walls such as triangular, square, elliptical and cylindrical. The outermost cylindrical boundary of the annulus is regarded at an unvarying low temperature and undifferentiated thermal condition on the inner surface of the annulus is considered. A finite element method is implemented for finding the solutions to the nanofluid equations of the problem. The magnetite iron oxide–kerosene nanofluid has been taken to gain insight into the thermal fields and concentration levels in terms of isotherms and isoconcentrations, respectively. The local Nusselt number distributions along the interior and exterior boundaries have been displayed for various flow parameters of the problem. To find the best performer, the average Nusselt number enhancements are demonstrated varying four different shapes of inner wall for ten sorts of nanofluids compared to that of base fluids. Results show that the dispersion of local Nusselt number decreases with the increase in the nanoparticle diameter and Hartmann number, whereas it enhances with the increase in the measure of nanoparticle by volume, magnetic field inclination angle and Rayleigh number. It is also found that the inner shape of the annulus significantly affects the thermal flow as well as the Nusselt number.


Arabian Journal for Science and Engineering | 2017

Natural Convective Heat Transfer Flow of Nanofluids Inside a Quarter-Circular Enclosure Using Nonhomogeneous Dynamic Model

M. J. Uddin; M. S. Alam; M.M. Rahman


Thermal science and engineering | 2017

Numerical computation of natural convective heat transport within nanofluids filled semi-circular shaped enclosure using nonhomogeneous dynamic model

M. J. Uddin; M. M. Rahman


American Journal of Heat and Mass Transfer | 2016

Investigations of natural convection heat transfer in nanofluids filled horizontal Semicircular-Annulus using nonhomogeneous dynamic model

M. J. Uddin; M. S. Alam; Nasser Al-Salti; M. M. Rahman


Mathematical Modelling of Engineering Problems | 2016

Mathematical Modelling for Heat Transfer of a Micropolar Fluid along a Permeable Stretching/Shrinking Wedge with Heat Generation/Absorption

M. S. Alam; Tarikul Islam; M. J. Uddin


Archive | 2014

Unsteady MHD free convective heat transfer flow along a vertical porous flat plate with internal heat generation

M. S. Alam; M. M. Haque; M. J. Uddin


Daffodil International University Journal of Science and Technology | 2011

STEADY RADIATIVE FREE CONVECTIVE FLOW ALONG A VERTICAL FLAT PLATE IN THE PRESENCE OF MAGNETIC FIELD

Enamul Karim; M. J. Uddin


Thermal science and engineering | 2018

Finite element computational procedure for convective flow of nanofluids in an annulus

M. J. Uddin; Mohammad Rahman


Propulsion and Power Research | 2018

Natural convective heat transfer in a square enclosure utilizing magnetic nanoparticles

Latifa M. Al-Balushi; M. J. Uddin; Mohammad Rahman


Archive | 2016

Convective flow of nanofluid along a permeable stretching/shrinking wedge with second order slip using Buongiorno's mathematical model

M. S. Alam; M. M. Haque; M. J. Uddin

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M. S. Alam

Sultan Qaboos University

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M. M. Rahman

Sultan Qaboos University

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M.M. Rahman

Sultan Qaboos University

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I. A. Eltayeb

Sultan Qaboos University

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Enamul Karim

Daffodil International University

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M. S. Alam

Sultan Qaboos University

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