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Laminar Burning Velocities of Dimethyl Carbonate with AirBARDIN, Maxim E; IVANOV, Evgenii V; NILSSON, Elna J. K et al.Energy & fuels. 2013, Vol 27, Num SEPOCT, pp 5513-5517, issn 0887-0624, 5 p.Article

Complementary asymptotic results for the burning velocity of the ozone decomposition flameROGG, B.Combustion and flame. 1986, Vol 65, Num 1, pp 113-116, issn 0010-2180Article

Measurements of flaming combustion of pure and fire-retarded celluloseSIBULKIN, M; TEWARI, S. S.Combustion and flame. 1985, Vol 59, Num 1, pp 31-42, issn 0010-2180Article

Effect of multiple particle interactions on burning dropletsMARBERRY, M; RAY, A. K; LEUNG, K et al.Combustion and flame. 1984, Vol 57, Num 3, pp 237-245, issn 0010-2180Article

Maximum flame temperature and burning rate of combustible mixturesSEN, A. K; LUDFORD, G. S. S.Symposium on combustion. 19. 1982, pp 267-274Conference Paper

Laminar burning velocities of rich near-limiting flames of hydrogenZAMASHCHIKOV, V. V; ALEKSEEV, V. A; KONNOV, A. A et al.International journal of hydrogen energy. 2014, Vol 39, Num 4, pp 1874-1881, issn 0360-3199, 8 p.Article

Calculation of burning velocity and flame structure in methanol-air mixturesDOVE, J. E; WARNATZ, J.Berichte der Bunsengesellschaft für Physikalische Chemie. 1983, Vol 87, Num 11, pp 1040-1044, issn 0005-9021Article

BURNING VELOCITY EQUATIONS FOR THICK FLAMES IN A SPHERICAL BOMB.GARTORTH AM; RALLIS CJ.1975; IN: SYMP. EUR. COMBUST. 2; ORLEANS; 1975; S.L.; SECT. FR. COMBUST. INST.; DA. 1975; PP. 121-125; BIBL. 6 REF.Conference Paper

AN APPROACH TO THE DETERMINATION OF BURNING VELOCITY IN A ONE-DIMENSIONAL TURBULENT FLOW.PRABIR BASU; AMBARISH GHOSH.1975; INDIAN J. TECHNOL.; INDIA; DA. 1975; VOL. 13; NO 7; PP. 302-306; BIBL. 9 REF.Article

Laser-recoil combustion response of RDXBREWSTER, M. Q; SCHROEDER, T. B.Combustion science and technology. 1997, Vol 122, Num 1-6, pp 363-381, issn 0010-2202Article

Laminar burning velocities of stoichiometric mixtures of methane with propane and ethane additivesHILL, P. G; HUNG, J.Combustion science and technology. 1988, Vol 60, Num 1-3, pp 7-30, issn 0010-2202Article

A further study of the effects of water vapor concentration on the rate of combustion of an artificial graphite in humid air flowMATSUI, K; TSUJI, H; MAKINO, A et al.Combustion and flame. 1986, Vol 63, Num 3, pp 415-427, issn 0010-2180Article

Combustion of boron powders through bunsen flameISHIKAWA, N; MATSUMOTO, H; MITSUNO, M et al.AIAA journal. 1985, Vol 23, Num 8, issn 0001-1452, 1201Article

Intensification des processus de combustion en lit d'un combustible solide à l'aide de méthane minier faiblement concentréIVANOV, V. M; TOPTYGIN, M. I; FILLIPOV, G. A et al.Promyšlennaja energetika. 1984, Num 4, pp 35-38Article

Effect of diameter on the burning rate of polystyreneKISHORE, K; MOHANDAS, K; SPILDA, I et al.Combustion and flame. 1983, Vol 52, Num 2, pp 215-216, issn 0010-2180Article

Structure of the combustion wave in the combustion synthesis of titanium carbidesDEEVI, S. C.Journal of materials science. 1991, Vol 26, Num 10, pp 2662-2670, issn 0022-2461, 9 p.Article

The effect of the flame front structure on flame propagation in premixed gasesHOFFMAN-BERLING, E; GUNTHER, R; LEUCKEL, W et al.Symposium on combustion. 19. 1982, pp 433-439Conference Paper

A relationship between the kinetic parameters of char combustion and the coal's propertiesFU, W. R; ZHANG, B. L; ZHENG, S. M et al.Combustion and flame. 1997, Vol 109, Num 4, pp 587-598, issn 0010-2180Article

A simple method for calculating burning rate of char/carbon particles under oxygen concentration changeWEI BAIO FU; SHUANG MING ZHENG.Combustion science and technology. 1996, Vol 118, Num 4-6, pp 397-408, issn 0010-2202Article

THE SPHERICAL BOMB METHOD FOR LAMINAR BURNING VELOCITY DETERMINATION: EQUIPMENT, EXPERIMENTAL PROCEDURE AND DATA HANDLING.GARFORTH AM; RALLIS CJ.1976; UNIV. WITWATERSRAND, SCH. MECH. ENGNG, REP.; S. AFR.; DA. 1976; NO 65; PP. (157P.); BIBL. 3 P.; ISBN 0854943676Serial Issue

Estimating the effect of water fog and nitrogen dilution upon the burning velocity of hydrogen deflagrations from experimental test dataHOLBORN, P. G; BATTERSBY, P; INGRAM, J. M et al.International journal of hydrogen energy. 2013, Vol 38, Num 16, pp 6882-6895, issn 0360-3199, 14 p.Article

Numerical studies on erosive burning in cylindrical solid propellant grainSRINIVASAN, K; NARAYANAN, S; SHARMA, O. P et al.Heat and mass transfer. 2008, Vol 44, Num 5, pp 579-585, issn 0947-7411, 7 p.Article

Interaction effects on combustion of alcohol droplet pairsOKAI, Keiichi; ONO, Yutaka; MORIUE, Osamu et al.JSME international journal. Series B, fluids and thermal engineering. 2001, Vol 44, Num 1, pp 126-132, issn 1340-8054Article

Droplet lasing spectroscopy applied to droplet stream flamesSANTANGELO, P. J; KENNEDY, I. M.Combustion and flame. 1999, Vol 117, Num 1-2, pp 413-421, issn 0010-2180Article

Steady deflagration of HMX with simple kinetics : A gas phase chain reaction modelWARD, M. J; SON, S. F; BREWSTER, M. Q et al.Combustion and flame. 1998, Vol 114, Num 3-4, pp 556-568, issn 0010-2180Article

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