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Results 1 to 25 of 1695

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Comprehensive characterization of a sooting laminar methane-diffusion flame using different laser techniquesSEEGER, Thomas; EGERMANN, Jan; DANKERS, Stefan et al.Chemical engineering & technology. 2004, Vol 27, Num 11, pp 1150-1156, issn 0930-7516, 7 p.Article

Self-similar diffusion flameMAHALINGAM, S; FERZIGER, J. H; CANTWELL, B. J et al.Combustion and flame. 1990, Vol 82, Num 2, pp 231-234, issn 0010-2180, 4 p.Article

A species stream function with reactionESSENHIGH, R. H.Combustion and flame. 1986, Vol 65, Num 2, pp 241-242, issn 0010-2180Article

Definition of molecule trajectories in diffusion flames by species stream functionsESSENHIGH, R. H; KUANG-TSAI WU.Combustion and flame. 1986, Vol 65, Num 2, pp 227-239, issn 0010-2180Article

Experimental Study on the Characteristics of Impinging Reaction Region with OH* Chemiluminescence in Opposed Impinging Diffusion FlamesTING ZHANG; GUANGSUO YU; QINGHUA GUO et al.Energy & fuels. 2013, Vol 27, Num NOVDEC, pp 7023-7030, issn 0887-0624, 8 p.Conference Paper

Extinction and stabilization of a diffusion flame on a flat combustible surface with emphasis on thermal controlling mechanismsKODAMA, H; MIYASAKA, K; FERNANDEZ-PELLO, A. C et al.Combustion science and technology. 1987, Vol 54, Num 1-6, pp 37-50, issn 0010-2202Article

Soot formation in methane/air nonpremixed flames doped with small quantities of C3 hydrocarbonsMCENALLY, C. S; PFEFFERLE, L. D.Combustion and flame. 1998, Vol 112, Num 4, pp 545-558, issn 0010-2180Article

Soot volume fraction maps for normal and reduced gravity laminar acetylene jet diffusion flamesGREENBERG, P. S; KU, J. C.Combustion and flame. 1997, Vol 108, Num 1-2, pp 227-230, issn 0010-2180Article

Theory of structures of hydrogen-air diffusion flamesSANCHEZ, A. L; LINAN, A; WILLIAMS, F. A et al.Combustion science and technology. 1995, Vol 110/11, pp 277-302, issn 0010-2202, 25 p.Article

Methane combustion in laminar diffusion flamesABAM, D. P. S.Proceedings of the Institution of Mechanical Engineers. Part A. Power and process engineering. 1989, Vol 203, Num 1, pp 65-72, issn 0263-7138, 8 p.Article

Blowout of turbulent jet diffusion flamesSTAMPS, Douglas; TIESZEN, Sheldon.Fuel (Guildford). 2014, Vol 118, pp 113-122, issn 0016-2361, 10 p.Article

Experimental Study of Oxygen Enrichment Effects on Turbulent Non-premixed Swirling FlamesMERLO, Nazim; BOUSHAKI, Toufik; CHAUVEAU, Christian et al.Energy & fuels. 2013, Vol 27, Num SEPOCT, pp 6191-6197, issn 0887-0624, 7 p.Article

Hydrogen-enriched non-premixed jet flames: Compositional structures with near-wall effectsRANGA DINESH, K. K. J; JIANG, X; OIJEN, J. A. Van et al.International journal of hydrogen energy. 2013, Vol 38, Num 12, pp 5150-5164, issn 0360-3199, 15 p.Article

The evolution of incipient soot particles in an inverse diffusion flame of etheneKWANG CHUL OH; UEN DO LEE; HYUN DONG SHIN et al.Combustion and flame. 2005, Vol 140, Num 3, pp 249-254, issn 0010-2180, 6 p.Article

The speciation and morphology of chromium oxide nanoparticles in a diffusion flameBING GUO; KENNEDY, Ian M.Aerosol science and technology. 2004, Vol 38, Num 5, pp 424-436, issn 0278-6826, 13 p.Article

Flame wall interaction of an H2/O2 flameDABIREAU, Francois; VERMOREL, Olivier; CUENOT, Bénédicte et al.International heat transfer conference. 2002, pp 911-916, isbn 2-84299-308-X, 6 p.Conference Paper

Sensitivity of calculated extinction strain rate to molecular transport formulation in nonpremixed counterflow flamesWILLIAMS, Bradley A.Combustion and flame. 2001, Vol 124, Num 1-2, pp 330-333, issn 0010-2180Article

Soot formation in flamesSIEGMANN, K.Journal of aerosol science. 2000, Vol 31, pp S217-S218, issn 0021-8502, SUP1Article

A Damkohler number description of local extinction in turbulent methane jet diffusion flamesKOUTMOS, P.Fuel (Guildford). 1999, Vol 78, Num 5, pp 623-626, issn 0016-2361Article

A parametric study of NO2 emission from turbulent H2 and CH4 jet diffusion flamesCHEN, R.-H.Combustion and flame. 1998, Vol 112, Num 1-2, pp 188-198, issn 0010-2180Article

Species and soot concentration measurements in a methane/air nonpremixed flame doped with C4 hydrocarbonsMCENALLY, C. S; PFEFFERLE, L. D.Combustion and flame. 1998, Vol 115, Num 1-2, pp 81-92, issn 0010-2180Article

Dynamics of a pulsating spray-diffusion flameGREENBERG, J. B; COHEN, R.Journal of engineering mathematics. 1997, Vol 31, Num 4, pp 397-409, issn 0022-0833Article

Modellierung des Erlöschens und Wiederzündens in turbulenten nichtvorgemischten Flammen mit einem transienten Flamelet Modell = Modeling of extinction and reignition in turbulent non premixed flames with a transient flamelet modelFERREIRA, J. C; GASS, J; POULIKAKOS, D et al.VDI-Berichte. 1997, pp 395-400, issn 0083-5560, isbn 3-18-091313-4Conference Paper

Calculations of swirl combustors using joint velocity-scalar probability density function methodANAND, M. S; HSU, A. T; POPE, S. B et al.AIAA journal. 1997, Vol 35, Num 7, pp 1143-1150, issn 0001-1452Conference Paper

NO production and destruction in a methane/air diffusion flameSMYTH, K. C.Combustion science and technology. 1996, Vol 115, Num 1-3, pp 151-176, issn 0010-2202Article

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