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Original Articles

Coupled Evaporation and Transport Effects in Counterflow Spray Diffusion Flames*

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Pages 1-33 | Received 23 Jun 1992, Accepted 03 Feb 1993, Published online: 17 Apr 2007

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Benedetta Franzelli, Aymeric Vié & Matthias Ihme. (2015) On the generalisation of the mixture fraction to a monotonic mixing-describing variable for the flamelet formulation of spray flames. Combustion Theory and Modelling 19:6, pages 773-806.
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Indrek S Wichman & Michael Yang. (1998) Double-spray counterflow diffusion flame model. Combustion Theory and Modelling 2:4, pages 373-398.
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Articles from other publishers (20)

Wang Han & Zheng Chen. (2016) Effects of finite-rate droplet evaporation on the extinction of spherical burner-stabilized diffusion flames. International Journal of Heat and Mass Transfer 99, pages 691-701.
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Jun Hayashi, Junichi Fukui & Fumiteru Akamatsu. (2013) Effects of fuel droplet size distribution on soot formation in spray flames formed in a laminar counterflow. Proceedings of the Combustion Institute 34:1, pages 1561-1568.
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Mohammad Akram & Sudarshan Kumar. (2012) Measurement of Laminar Burning Velocity of Liquified Petrolium Gas Air Mixtures at Elevated Temperatures. Energy & Fuels 26:6, pages 3267-3274.
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Jun Hayashi, Hiroaki Watanabe, Ryoichi Kurose & Fumiteru Akamatsu. (2011) Effects of fuel droplet size on soot formation in spray flames formed in a laminar counterflow. Combustion and Flame 158:12, pages 2559-2568.
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Masato Mikami, Yoshimi Mizuta, Yuki Tsuchida & Naoya Kojima. (2009) Flame structure and stabilization of lean-premixed sprays in a counterflow with low-volatility fuel. Proceedings of the Combustion Institute 32:2, pages 2223-2230.
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J.D.B.J. van den Boom, A.A. Konnov, A.M.H.H. Verhasselt, V.N. Kornilov, L.P.H. de Goey & H. Nijmeijer. (2009) The effect of a DC electric field on the laminar burning velocity of premixed methane/air flames. Proceedings of the Combustion Institute 32:1, pages 1237-1244.
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O. P. Korobeinichev, V. M. Shvartsberg & A. G. Shmakov. (2009) Destruction of organophosphorus compounds in flames and nonthermal plasmas. Russian Journal of Physical Chemistry B 2:6, pages 856-875.
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Mariko NAKAMURAFumiteru AKAMATSU, Ryoichi KUROSEMasashi KATSUKI. (2006) Experimental and Numerical Study on Combustion Mechanism of Liquid Fuel Spray Entering Gaseous Flame Front. JSME International Journal Series B 49:2, pages 498-505.
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J. B. Greenberg & F. Grodek. (2003) Curvature Effects in Burke-Schumann Spray Flame Extinction. AIAA Journal 41:8, pages 1507-1513.
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J.B. Greenberg & F. Grodek. (2003) Influence of Liquid Fuel Parameters on Burke-Schumann Spray Diffusion Flame Tip Extinction. International Journal of Turbo and Jet Engines 20:4.
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J. Greenberg & F. Grodek. (2002) Curvature effects on spray diffusion flame extinction. Curvature effects on spray diffusion flame extinction.
Masato Mikami, Shingo Miyamoto & Naoya Kojima. (2002) Counterflow diffusion flame with polydisperse sprays. Proceedings of the Combustion Institute 29:1, pages 593-599.
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Vito S. Santoro & Alessandro Gomez. (2002) Extinction and reignition in counterflow spray diffusion flames interacting with laminar vortices. Proceedings of the Combustion Institute 29:1, pages 585-592.
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A. Dvorjetski & J. Greenberg. (2001) Coupled transport and evaporation rate effects in counter-flow spray diffusion flames - Steady state and extinction analyses. Coupled transport and evaporation rate effects in counter-flow spray diffusion flames - Steady state and extinction analyses.
A. Dvorjetski & J.B. Greenberg. (2000) Influence of non-unity lewis numbers and droplet loading on the extinction of counter-flow spray diffusion flames. Proceedings of the Combustion Institute 28:1, pages 1047-1054.
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A. Kalma & J.B. Greenberg. (1997) Special Features of the Combustion of a Propagating Flame in a Polydisperse Fuel Spray Cloud. International Journal of Turbo and Jet Engines 14:4.
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F. Anidjar, J. B. Greenberg & Y. Tambour. (2008) On the solution of a class of polydisperse spray problems. European Journal of Applied Mathematics 7:1, pages 75-96.
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Daniel L. Bulzan. (1995) Structure of a swirl-stabilized combusting spray. Journal of Propulsion and Power 11:6, pages 1093-1102.
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J Greenberg & N Sarig. (1995) Flow field effects in partially premixed counterflow spray flames. Flow field effects in partially premixed counterflow spray flames.
J.B. Greenberg & N. Sarig. (1995) Extinction Dynamics of Partially Premised Spray Flames. International Journal of Turbo and Jet Engines 12:3.
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