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Featured researches published by Arash Ejlali.


Entropy | 2005

Second law analysis of laminar flow in a channel filled with saturated porous media: a numerical solution

Kamel Hooman; Arash Ejlali

This paper investigates entropy generation due to forced convection in a porous medium sandwiched between two parallel plates one of them being subjected to a uniform heat flux and the other one insulated. Our results showed that viscous dissipation will affect the entropy generation rate at the centerline of the channel since viscous dissipation is a quadratic function of velocity [1-3]. Neglecting the Darcy dissipation term in comparison with the terms added by Al-Hadrami et al. [4], will lead to the misunderstanding that fluid friction has no effect on the entropy generation rate at the tube centerline where the velocity derivative vanishes due to symmetry. Though the term added by [4] is O(Da) compared to the Darcy term one should not drop it unless the clear flow solution is sought [5-7]. Moreover, as stated by Nield [1], one should not use just the term involving velocity derivatives, as some authors have done in the past, for example [8-11]. Though in this paper the viscous dissipation effects in the energy equation are neglected, we have take them into account when it came to the entropy generation analysis.


International Communications in Heat and Mass Transfer | 2009

Application of high porosity metal foams as air-cooled heat exchangers to high heat load removal systems

Azadeh Ejlali; Arash Ejlali; Kamel Hooman; Hal Gurgenci


International Communications in Heat and Mass Transfer | 2010

Effects of viscous heating, fluid property variation, velocity slip, and temperature jump on convection through parallel plate and circular microchannels

Kamel Hooman; Arash Ejlali


International Journal of Heat and Mass Transfer | 2011

Numerical modelling of the self-heating process of a wet porous medium

Arash Ejlali; D. J. Mee; Kamel Hooman; B. B. Beamish


Applied Mathematics and Mechanics-english Edition | 2006

Effects of viscous dissipation on thermally developing forced convection in a porous saturated circular tube with an isoflux wall

Kamel Hooman; Alireza Pourshaghaghy; Arash Ejlali


Applied Mathematics and Mechanics-english Edition | 2008

Entropy generation analysis of thermally developing forced convection in fluid-saturated porous medium

Kamel Hooman; Arash Ejlali; F. Hooman


Transport in Porous Media | 2011

Buoyancy Effects on Cooling a Heat Generating Porous Medium: Coal Stockpile

Arash Ejlali; Kamel Hooman


International Communications in Heat and Mass Transfer | 2009

A new criterion to design reactive coal stockpiles

Arash Ejlali; Saiied M. Aminossadati; Kamel Hooman; B. B. Beamish


Heat Transfer Research | 2003

Axial Conduction Effects on Thermally Developing Forced Convection in a Porous Medium: Circular Tube with Uniform Wall Temperature

Kamel Hooman; A. A. Ranjbar-Kani; Arash Ejlali


International Journal of Thermal Sciences | 2007

Comments on “Flow, thermal, and entropy generation characteristics inside a porous channel with viscous dissipation” by S. Mahmud and R.A. Fraser [Int. J. Thermal Sciences 44 (2005) 21–32]

Kamel Hooman; Ali Akbar Merrikh; Arash Ejlali

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Kamel Hooman

University of Queensland

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B. B. Beamish

University of Queensland

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Basil Beamish

University of Queensland

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D. J. Mee

University of Queensland

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Hal Gurgenci

University of Queensland

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