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Original Articles

Group Combustion of Liquid Droplets

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Pages 127-142 | Received 08 Jun 1977, Published online: 07 May 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (26)

Vassilios Papapostolou, Gulcan Ozel Erol, Charles Turquand d’Auzay & Nilanjan Chakraborty. (2021) A Numerical Investigation of the Minimum Ignition Energy Requirement for Forced Ignition of Turbulent Droplet-laden Mixtures. Combustion Science and Technology 193:2, pages 307-340.
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Gulcan Ozel Erol, Josef Hasslberger, Markus Klein & Nilanjan Chakraborty. (2019) A Direct Numerical Simulation Investigation of Spherically Expanding Flames Propagating in Fuel Droplet-Mists for Different Droplet Diameters and Overall Equivalence Ratios. Combustion Science and Technology 191:5-6, pages 833-867.
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Umesh Potdar, Omkar Pawar, Raghav Sikka & Sudarshan Kumar. (2018) Experimental investigations on the stabilization of lifted kerosene spray flames with coflow air. Combustion Science and Technology 190:10, pages 1689-1709.
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Umesh Potdar, Ajinkya Jamgade, P. Mahyavanshi, Y. Yoon & Sudarshan Kumar. (2017) Experimental Investigations on Stabilization Mechanism of Lifted Kerosene Spray Flames. Combustion Science and Technology 189:7, pages 1241-1259.
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M. Sobulska, M. Piatkowski & I. Zbicinski. (2017) Flame spray drying: Droplet and particle flow dynamics. Drying Technology 35:8, pages 948-956.
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Achintya Mukhopadhyay & Dipankar Sanyal. (2012) Modeling of Evaporation and Combustion of Droplets in a Spray Using the Unit Cell Approach: A Review. Heat Transfer Engineering 33:4-5, pages 375-386.
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A. R. Masri & J. D. Gounder. (2010) Turbulent Spray Flames of Acetone and Ethanol Approaching Extinction. Combustion Science and Technology 182:4-6, pages 702-715.
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M. ORAIN, X. MERCIER & F. GRISCH. (2005) PLIF IMAGING OF FUEL-VAPOR SPATIAL DISTRIBUTION AROUND A MONODISPERSE STREAM OF ACETONE DROPLETS: COMPARISON WITH MODELING. Combustion Science and Technology 177:2, pages 249-278.
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RAFALJ. SORNEK & RITSU DOBASHI. (2000) Effect of Turbulence on Spatial Distribution and Group Behavior of Droplet in a Spray Flame. Combustion Science and Technology 161:1, pages 191-211.
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T. PANAGIOTOU & Y. LEVENDIS. (1998) Observations on the Combustion of Polymers (Plastics): From Single Particles to Groups of Particles. Combustion Science and Technology 137:1-6, pages 121-147.
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RAY SNYDER, GERALD HERDING, JUANCARLOS ROLON & SEBASTIEN CANDEL. (1997) Analysis of Flame Patterns in Cryogenic Propellant Combustion. Combustion Science and Technology 124:1-6, pages 331-370.
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Lung-Weei Huang & Chiun-Hsun Chen. (1995) FLAME STABILIZATION AND BLOWOFF OVER A SINGLE DROPLET. Numerical Heat Transfer, Part A: Applications 27:1, pages 53-71.
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Y. Hardalupas, C. H. Liu & J. H. Whitelaw. (1994) Experiments with Disk Stabilized Kerosene-Fuelled Flames. Combustion Science and Technology 97:1-3, pages 157-191.
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V. G. MCDONELL, M. ADACHI & G. S. SAMUELSEN. (1992) Structure of Reacting and Non-Reacting Swirling Air-Assisted Sprays. Combustion Science and Technology 82:1-6, pages 225-248.
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S. K. AGGARWAL & S. CHITRE. (1992) On the Structure of Unconfined Turbulent Spray Flames. Combustion Science and Technology 81:1-3, pages 97-113.
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W.R. LASTER & K. ANNAMALAI. (1991) IGNITION DELAY OF DROPLET CLOUDS: RESULTS FROM GROUP COMBUSTION THEORY. Chemical Engineering Communications 105:1, pages 201-219.
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ALAN R. KERSTEI N. (1984) Percolation in Combusting Sprays II. Width of the Percolate Combustion Zone. Combustion Science and Technology 37:1-2, pages 47-57.
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T.A. Bfzustowski. (1983) The Effect of Fluctuations in Temperature and Oxygen Concentration on the Lifetime of a Fuel Droplet. Combustion Science and Technology 35:1-4, pages 59-79.
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S. M. CORREA & M. SICHEL. (1982) The Boundary Layer Structure of a Vaporizing Fuel Cloud. Combustion Science and Technology 28:3-4, pages 121-130.
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J. A. NICHOLLS, C. W. KAUFFMAN, D. G. PELACCIO, D. R. GLASS & J. F. DRISCOLL. (1980) The Effect of Fuel Sprays on Emissions from a Research Gas Turbine Combustor. Combustion Science and Technology 23:5-6, pages 203-213.
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F. BERETTA, A. CAVALIERE, A. D'ALESSIO & C. NOVIELLO. (1980) Visible and U.V. Spectral Emission and Extinction Measurements in Oil Spray Flame. Combustion Science and Technology 22:1-2, pages 1-15.
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J. F. DRISCOLL & D. G. PELACCIO. (1980) Turbulent Eddy Diffusivity and Mean Eddy Lifetimes Measured in Spray Combuston. Combustion Science and Technology 21:5-6, pages 205-212.
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M. J. MURPHY & G. L. BORMAN. (1979) Oxides of Nitrogen Emissions from a Burning Fuel Mist. Combustion Science and Technology 21:1-2, pages 53-63.
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D. Martínez-Ruiz, J. Urzay, A. L. Sánchez, A. Liñán & F. A. Williams. (2013) Dynamics of thermal ignition of spray flames in mixing layers. Journal of Fluid Mechanics 734, pages 387-423.
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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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J. ARRIETA-SANAGUSTÍN, A. L. SÁNCHEZ, A. LIÑÁN & F. A. WILLIAMS. (2011) Sheath vaporization of a monodisperse fuel-spray jet. Journal of Fluid Mechanics 675, pages 435-464.
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J. Reveillon, C. Pera & Z. Bouali. (2011) Examples of the Potential of DNS for the Understanding of Reactive Multiphase Flows. International Journal of Spray and Combustion Dynamics 3:1, pages 63-92.
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Jaeyeob Seo & Kang Y. Huh. (2011) Analysis of combustion regimes and conditional statistics of autoigniting turbulent n-heptane sprays. Proceedings of the Combustion Institute 33:2, pages 2127-2134.
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A. Neophytou, E. Mastorakos & R.S. Cant. (2011) Complex chemistry simulations of spark ignition in turbulent sprays. Proceedings of the Combustion Institute 33:2, pages 2135-2142.
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Amsini Sadiki, W. Ahmadi, Mouldi Chrigui & J. Janicka. 2011. Experiments and Numerical Simulations of Diluted Spray Turbulent Combustion. Experiments and Numerical Simulations of Diluted Spray Turbulent Combustion 69 110 .
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K Luo, O Desjardins, M Pai & H Pitsch. (2010) Spray Flames in an Air-Heptane Swirling Combustor. Spray Flames in an Air-Heptane Swirling Combustor.
Junichi FUKUI, Jun HAYASHI & Fumiteru AKAMATSU. (2010) Effect of Group Combustion Behavior on Entropy Generation Rate in Spray Combustion Process(Thermal Engineering). Transactions of the Japan Society of Mechanical Engineers Series B TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series B 76:769, pages 1433-1440.
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S. M. Frolov, V. Ya. Basevich, F. S. Frolov, A. A. Borisov, V. A. Smetanyuk, K. A. Avdeev & A. N. Gots. (2009) Correlation between drop vaporization and self-ignition. Russian Journal of Physical Chemistry B 3:3, pages 333-347.
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C. H. Beck, R. Koch & H.-J. Bauer. (2008) Numerical Investigation of the Time Scales of Single Droplet Burning. Flow, Turbulence and Combustion 82:4, pages 571-598.
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