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Original Articles

Single droplet combustion of decane in microgravity: experiments and numerical modelling

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Pages 569-585 | Received 22 Mar 2004, Accepted 11 Mar 2005, Published online: 20 Feb 2007

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Read on this site (3)

D. L. Dietrich, R. Calabria, P. Massoli, V. Nayagam & F. A. Williams. (2017) Experimental Observations of the Low-Temperature Burning of Decane/Hexanol Droplets in Microgravity. Combustion Science and Technology 189:3, pages 520-554.
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KlausG. Moesl, JoachimE. Schwing & Thomas Sattelmayer. (2012) Modelling NOx emissions of single droplet combustion. Combustion Theory and Modelling 16:1, pages 107-141.
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T. Farouk & F.L. Dryer. (2011) Microgravity droplet combustion: effect of tethering fiber on burning rate and flame structure. Combustion Theory and Modelling 15:4, pages 487-515.
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Articles from other publishers (15)

Florian Meyer, Christian Eigenbrod, Volker Wagner, Wolfgang Paa, James C. Hermanson, Shion Ando & Marc Avila. (2022) Oxygen droplet combustion in hydrogen under microgravity conditions. Combustion and Flame 241, pages 112081.
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Yiliu Zhong, Jun Xu, Yuhan Pan, Zhitong Yin, Xinwen Wang, Yonggang Zhou & Qunxing Huang. (2022) Combustion characteristics of aromatic-enriched oil droplets produced by pyrolyzing unrecyclable waste tire rubber. Fuel Processing Technology 226, pages 107093.
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Pavel Tkachenko, Nikita Shlegel & Pavel Strizhak. (2021) Collisions of Two-Phase Liquid Droplets in a Heated Gas Medium. Entropy 23:11, pages 1476.
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Alessandro Stagni, Raffaela Calabria, Alessio Frassoldati, Alberto Cuoci, Tiziano Faravelli, Fabio Chiariello & Patrizio Massoli. (2021) Kinetic Modeling of the Ignition of Droplets of Fast Pyrolysis Bio-oil: Effect of Initial Diameter and Fuel Composition. Industrial & Engineering Chemistry Research 60:18, pages 6719-6729.
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Hongtao Zhang, Zhihua Wang, Yong He, Jun Xia, Jincheng Zhang, Hua Zhao & Kefa Cen. (2021) Ignition, puffing and sooting characteristics of kerosene droplet combustion under sub-atmospheric pressure. Fuel 285, pages 119182.
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Veronika Tyurenkova. (2019) Two regimes of a single n-heptane droplet combustion. Acta Astronautica 163, pages 25-32.
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Vasudevan Raghavan. (2019) Numerical Modeling of Evaporation and Combustion of Isolated Liquid Fuel Droplets: a Review. Journal of the Indian Institute of Science 99:1, pages 5-23.
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Muhammad Irfan & Metin Muradoglu. (2018) A front tracking method for particle-resolved simulation of evaporation and combustion of a fuel droplet. Computers & Fluids 174, pages 283-299.
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Mostafa Ashna & Mohammad Hassan Rahimian. (2017) LMB simulation of head-on collision of evaporating and burning droplets in coalescence regime. International Journal of Heat and Mass Transfer 109, pages 520-536.
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Patrick Jenny, Dirk Roekaerts & Nijso Beishuizen. (2012) Modeling of turbulent dilute spray combustion. Progress in Energy and Combustion Science 38:6, pages 846-887.
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Xiao-bin Zhang, Wei Zhang & Xue-jun Zhang. (2012) Modeling droplet vaporization and combustion with the volume of fluid method at a small Reynolds number. Journal of Zhejiang University SCIENCE A 13:5, pages 361-374.
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Yu Cheng Liu & C. Thomas Avedisian. (2012) A comparison of the spherical flame characteristics of sub-millimeter droplets of binary mixtures of n-heptane/iso-octane and n-heptane/toluene with a commercial unleaded gasoline. Combustion and Flame 159:2, pages 770-783.
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Tanvir Farouk & Frederick L. Dryer. (2012) Tethered methanol droplet combustion in carbon-dioxide enriched environment under microgravity conditions. Combustion and Flame 159:1, pages 200-209.
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Klaus G. Moesl, Joachim E. Schwing, Wolfgang J. Fenninger & Thomas Sattelmayer. (2011) Influence of heat and mass transfer on the ignition and NO x formation in single droplet combustion. Heat and Mass Transfer 47:8, pages 1065-1076.
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J.H. Bae & C.T. Avedisian. (2009) Nonane droplet combustion with and without buoyant convection: Flame structure, burning rate and extinction in air and helium. Proceedings of the Combustion Institute 32:2, pages 2231-2238.
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