Publications
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. An estimation of modelling parameters for condensed multi-component fuels. Proceedings of the Institution of Mechanical Engineers Part C-Journal of Mechanical Engineering Science. 2011;225:1229-1235.
. A numerical study of the effect of radial confinement on the characteristics of laminar co-flow methane-oxygen diffusion flames. Proceedings of the Institution of Mechanical Engineers Part C-Journal of Mechanical Engineering Science. 2011;225:1213-1228.
. Experimental Investigation of Burning Rates of Pure Ethanol and Ethanol Blended Fuels. Combustion and Flame. 2009;156:997-1005.
. Experimental Investigation of Characteristics of a Diffusion Flame Established over Liquid Ethanol Surface under Opposed Air Flow. Experimental Thermal Fluid Science. 2009;33:538-541.
. Investigation of interaction between methanol fed tandem porous spheres burning in a mixed convective environment. COMBUSTION THEORY AND MODELLING. 2009;13:461-485.
. Laminar flame propagation on a horizontal fuel surface: Verification of classical Emmons solution. COMBUSTION THEORY AND MODELLING. 2009;13:121-141.
. A new property evaluation scheme for mass transfer analysis in fire problems. FIRE SAFETY JOURNAL. 2009;44:652-658.
. Analysis of quasi-steady combustion of Jatropha bio-diesel. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER. 2008;35:1079-1083.
. Effect of Non-Luminous Flame Radiation during Methanol Droplet Combustion. Combustion Science and Technology. 2008;180:546-564.
. Microscale flow through channels with a right-angled bend: Effect of fillet radius. Journal of Fluids Engineering-Transactions of the Asme. 2008;130.
. Subcritical and supercritical droplet evaporation within a zero-gravity environment: Low Weber number relative motion. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER. 2008;35:385-394.
. Entropy generation during the quasi-steady burning of spherical fuel particles. INTERNATIONAL JOURNAL OF THERMAL SCIENCES. 2007;46:589-604.
. Effect of gravity on methanol diffusion flames burning within a forced convective environment. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER. 2006;33:686-697.
. Effects of forced convection and surface tension during methanol droplet combustion. JOURNAL OF THERMOPHYSICS AND HEAT TRANSFER. 2006;20:787-798.
. Surface Tension Effects during Low Reynolds Number Methanol Droplet Combustion. Combustion and Flame. 2006;145:791-807.
. Thermal analysis of the vortex tube based thermocycler for fast DNA amplification: Experimental and two-dimensional numerical results. Review of Scientific Instruments. 2006;77.
