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 Browse by Research Fields, Courses and Disciplines The Research Fields, Courses and Disciplines (Australian Standard Research Classification) is published by the Australian Bureau of Statistics (ABS catalogue number 1297.0) 1998. ABS data is used with permission from the Australian Bureau of Statistics -> 290000 Engineering and Technology -> 299900 Other Engineering and Technology -> 299902 Combustion and Fuel Engineering :

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Gupta, J. S. and Bhatia, S. K. (2000) A modified discrete random pore model allowing for different initial surface reactivity. Carbon, 38 1: 47-58. doi:10.1016/S0008-6223(99)00095-0 222   12 0
Trenker, M. (2003) An analytical model for combustion of hydrogen in the boundary layer with an application to scramjets St. Lucia: Div. of Mech. Eng., The Univ. of Qld. 82  
Jak, E. (2001). Application of the F*A*C*T computer package to prediction of coal ash fusion temperatures. In: Proceedings of the 18th Pittsburgh Coal Conference. 18th Annual International Pittsburgh Coal Conference, Newcastle, NSW, Australia, (). 4-7 December, 2001. 158  
Kondratiev, A. and Jak, E. (2001). Applications of the coal ash viscosity model for the slagging gasification technologies (viscosity model of the SiO2-Al2O3-CaO-Fe0-Fe2O3 system). In: 18th Pittsburgh Coal Conference Proceedings. 18th Pittsburgh Coal Conference, Newcastle, NSW, Australia, (). 4-7 Dec 2001. 148  
Cleary, M. J., Klimenko, A. Y., Janicka, J. and Pfitzner, M. (2009) A sparse-Lagrangian multiple mapping conditioning model for turbulent diffusion flames. Proceedings of the Combustion Institute, 32 1: 1499-1507. doi:10.1016/j.proci.2008.07.015 102   20 Cited 20 times in Scopus20 0
De Wit, J. R., Steinberg, T. A. and Haas, J. P. (2000). ASTM G 124 test data for selected Al-Si alloys, Al-composites, binary alloys and stainless steels. In: T. A. Steinberg, B. E. Newton and H. D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Ninth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Paris, France, (179-189). September 2000. doi:10.1520/STP12495S 123   0 0
Klimenko, A. Y. and Class, A.G. (2001). Asymptotic structure and NOx emission of realistic premixed flames under infuence of fluid flows. In: Sixth International Conference on Technologies and Combustion for a Clean Environment. Sixth International Conference on Technologies and Combustion for a Clean Environment, Portugal, (393-399). 9-12 July, 2001. 39  
Reifenstein, A. P., Kahraman, H., Coin, C. D. A., Calos, N. J., Miller, G. and Uwins, P. (1999) Behaviour of selected minerals in an improved ash fusion test: Quartz, potassium feldspar, sodium feldspar, kaolinite, illite, calcite, dolomite, siderite, pyrite and apatite. Fuel, 78 12: 1449-1461. doi:10.1016/S0016-2361(99)00065-4 81   52 Cited 60 times in Scopus60 0
Vladimirov, I. G., Christie, S. R. and Jak, E. (2001). Computer modeling of physical chemical properties of complex coal ash slag systems in multi-dimensional compositional space. In: 18th Pittsburgh Coal Conference Proceedings. 18th Pittsburg Coal Conference, Newcastle, NSW, Australia, (). 4-7 Dec 2001. 127  
Feng, B. and Bhatia, S. K. (2000) Determination of activation energy distributions for chemisorption of oxygen on carbon: an improved approach. Chemical Engineering Science, 55 24: 6187-6196. doi:10.1016/S0009-2509(00)00191-3 136   9 Cited 9 times in Scopus9 0
Wandel, A. P., Weinman, K. and Klimenko, A. Y. (1999). Diffusion in conserved scalar space: Direct validation by DNS. In: B. Moghtaderi, B. Z. D. Dlugogorski and E. M. Kennedy, 1999 Australian Symposium on Combustion and The Sixth Australian Flame Days. 1999 Australian Symposium on Combustion and The Sixth Australian Frame Days, University of Newcastle, (76-80). 30th September - 1st October, 1999. 61  
Schroll, D. W. Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Edited by Steinberg, T., Newton, B. E. and Beeson, H. D. Saline, Michigan, USA: ASTM, 2000. 44  
Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres 10 ed. Edited by T. Steinberg, B. E. Newton and H. D. Beeson New Jersey, USA: American Society for Testing and Materials International, 2003. 53  
De Wit, J. R., Steinberg, T. A. and Stoltzfus, J. M. (2000). Igniter Effects on Metals Combustion Testing. In: T. A Steinberg, B. E. Newton and H. D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Ninth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Paris, France, (190-203). September 2000. doi:10.1520/STP12496S 70   0 0
Edwards, A. P. R., Wilson, D. B. and Steinberg, T. (2002). Incorporation of oxygen in metal rods burning in reduced gravity and normal gravity. In: The Fifth Biennial Engineering Mathematics and Applications Conference (EMAC 2002). The Fifth Biennial Engineering Mathematics and Applications, Queensland University of Technology, Brisbane, (103-108). 29th September - 2nd October 2002. 32  
Edwards, A. P. R., Chiffoleau, G., Maes, M.J. and Steinberg, T. (2003). Instantaneous RRMI of iron rods in reduced gravity. In: Theodore A. Steinberg, Barry E. Newton and Harold D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Tenth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Brisbane, Australia, (91-101). November, 2003. doi:10.1520/STP11582S 38   2 0
Klimenko, A. Y. (2002) Inverse parabolicity of PDF equations in turbulent flows - reversed-time diffusion or something else USA: Center for Turbulence Research, Stanford University 71  
De Wit, John Robert (2003). Investigating the combustion mechanisms of bulk metals through microanalysis of post-test 3.2 mm diameter metallic rods burned in oxygen-enriched atmospheres PhD Thesis, School of Engineering, The University of Queensland. 141 5
Osborne, B. P., Suvorovs, T., De Wit, J. R. and Steinberg, T. (2003). Microanalysis of quenched and self-extinguished aluminium rods burned in oxygen. In: Theodore A. Steinberg, Barry E. Newton and Harold D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Tenth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Brisbane, Australia, (151-163). November, 2003. doi:10.1520/STP11586S 51   0 0
Steinberg, T. A. and Wilson, B. D. (2000). Modeling the NASA/ASTM Flammability Test for Metallic Materials Burning in Reduced Gravity. In: T. A Steinberg, B. E. Newton and H. D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Ninth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Paris, France, (266-291). September 2000. doi:10.1520/STP12501S 96   0 0
Klimenko, A. Y., Class, A.G. and O'Gorman, S. M. (2002) Near equidiffusion disturbed premixed flames with wider reaction zones Brisbane: Division of Mechanical Engineering, The University of Queensland 45  
Klimenko, AY (2001) On the relation between the conditional moment closure and unsteady flamelets. Combustion Theory And Modelling, 5 3: 275-294. doi:10.1088/1364-7830/5/3/302 55   12 Cited 15 times in Scopus15 0
Feng, Bo and Bhatia, Suresh K. (2000) Percolative fragmentation of char particles during gasification. Energy & Fuels, 14 2: 297-307. doi:10.1021/ef990090x 120   15 Cited 15 times in Scopus15 0
Feng, Bo and Bhatia, Suresh K. (2000). Percolative Fragmentation of Coal Char during Gasification. In: B. Feng and S. Bhatia, Proceedings of the The Nineth Australian Coal Science Conference. The Nineth Australian Coal Science Conference, Brisbane, Australia, (). 26-29 November, 2000. 58  
Klimenko, A.Y., Cleary, M.J., Feng, B., Rudolph, V., Boyce, R.R. and Wandel, A.P. (2009). Proceedings of the Australian Combustion Symposium. In: Klimenko, A.Y., Cleary, M.J., Feng, B., Rudolph, V., Boyce, R.R., Wandel, A.P. and Clements, R,, Proceedings of Australian Combustion Symposium 2009. Australian Combusion Symposium 2009, The University of Queensland, (1-262). 2-4 December, 2009. 302  
Klimenko, AY and Class, AG (2002) Propagation of nonstationary curved and stretched premixed flames with multistep reaction mechanisms. Combustion Science And Technology, 174 8: 1-43. doi:10.1080/00102200290021317 62   4 Cited 4 times in Scopus4 0
Klimenko, A. Y. and Class, G. (1999). Propagation speed of premixed flames. In: B. Moghtaderi, B. Z. D. Dlugogorski and E. M. Kennedy, 1999 Australian Symposium on Combustion and The Sixth Australian Flame Days. 1999 Australian Symposium on Combustion and The Sixth Australian Frame Days, University of Newcastle, (242-246). 30 September - 1st October, 1999. 26  
Nettleton, M. A. (2002) Recent work on gaseous detonations. Shock Waves, 12 1: 3-12. doi:10.1007/s001930200134 31   20 Cited 23 times in Scopus23 0
Feng, B, An, H and Tan, W. C. (2006). Screening of CO2 adsorbing materials for zero emission power generation systems. In: H. Wu and M. Xu, Sino-Australia Symposium on Advanced Coal Utilisation Technology. Sino-Australia Symposium on Advanced Coal Utilisation Technoloy, Wuhan, China, (85-102). 12-14 July 2006. 73  
Corrick, Renee (2002). The burning of titanium in oxygen/nitrogen mixtures in normal gravity and reduced gravity Master's Thesis, School of Engineering, The University of Queensland. 96  
Blinderman, M, Saulov, D. N. and Klimenko, A Y (2006). The exergy optimization of the reverse combusion linking in underground coal gasification. In: Badie I Morsi, 23rd Annual International Pittsburg Coal Conference. 23rd Annual International Pittsburg Coal Conference, Pittsburgy, PA, USA, (1-15). 25-28 September 2006. 109  
Wilson, B. D., Steinberg, T. A. and De Wit, J. R. (2000). The presence of excess oxygen in burning metallic materials. In: T. A. Steinberg, B. E. Newton and H. D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Ninth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Paris, France, (145-162). September 2000. doi:10.1520/STP12493S 84   0 0
Jak, E., Kondratiev, A., Christie, S. R., Vladimirov, I. G. and Hayes, P. C. (2001). Thermodynamic modeling to characterize melting and flow properties of coal ash slags. In: Power production in the 21st Century: Impacts of fuel quality and operations. United Engineering Foundation Conference, Salt Lake City, Utah, USA, (). 28 Oct - 2 Nov 2001. 67  
Jak, E. and Hayes, P. C. (2001). Thermodynamic modelling of the coal ash systems in Black Coal Utilisation (a new F*A*C*T database for the SiO2-Al2O3-CaO-FeO-Fe2O3 system and the effects of MgO, K2O and Na2O on the liquidus. In: 18th Pittsburg Coal Conference Proceedings. 18th Pittsburg Coal Conference, Newcastle, NSW, Australia, (). 4-7 Dec 2001. 109  
Wandel, A. P., Smith, N.S.A. and Klimenko, A. Y. (2002). Turbulent combustion modelling using stochastic formulation of conditional moment closure. In: 2002 Australian Symposium on Combustion and The Seventh Australian Flame Days. 2002 Australian Symposium on Combustion and The Seventh Austrs, Adelaide University, Adelaide, (139-143). 7-8 February, 2002. 67  
Chiffoleau, Gwenaël. (2002). Ultrasonic investigation of burning metals in normal and reduced gravity PhD Thesis, School of Engineering, The University of Queensland. 154 5
Chiffoleau, Gwenael J. A., Steinberg, Theordore A. and Veidt, Martin (2003). Ultrasonic measurement technique of burning metals in normal and reduced gravity. In: Theodore A. Steinberg, Barry E. Newton and Harold D. Beeson, Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres. Tenth International Symposium on Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres, Brisbane, Australia, (75-89). November 2003. doi:10.1520/STP11581S 82   2 0
Wandel, A. P., Smith, N.S.A. and Klimenko, A. Y. (2003) Verification of Markov hypothesis for conserved scalar process: validation of conditional moment closure for turbulent combustion. The ANZIAM Journal, E 802-819. 71