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Original Articles

A soot model for transient, spherically symmetric n -heptane droplet combustion

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Pages 67-102 | Published online: 17 Sep 2010

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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 (13)

Alberto Cuoci, C. Thomas Avedisian, Jordan D. Brunson, Songtao Guo, Alireza Dalili, Yujie Wang, Marco Mehl, Alessio Frassoldati, Kalyanasundaram Seshadri, John E. Dec & Dario Lopez-Pintor. (2021) Simulating combustion of a seven-component surrogate for a gasoline/ethanol blend including soot formation and comparison with experiments. Fuel 288, pages 119451.
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Neel Kanth Grover. (2020) Transient combustion of a multi-component fuel droplet with gas radiation. International Communications in Heat and Mass Transfer 117, pages 104729.
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Neel Kanth Grover. (2020) Model for transient n-heptane droplet ignition at elevated pressure. Journal of Thermal Analysis and Calorimetry 141:6, pages 2453-2461.
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G.C. Fraga, L. Zannoni, F.R. Centeno & F.H.R. França. (2019) Evaluation of different gray gas formulations against line-by-line calculations in two- and three-dimensional configurations for participating media composed by CO2, H2O and soot. Fire Safety Journal 108, pages 102843.
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Alessandro Stagni, Alberto Cuoci, Alessio Frassoldati, Eliseo Ranzi & Tiziano Faravelli. (2018) Numerical investigation of soot formation from microgravity droplet combustion using heterogeneous chemistry. Combustion and Flame 189, pages 393-406.
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Yu Cheng Liu, Yuhao Xu, Michael C. Hicks & C. Thomas Avedisian. (2016) Comprehensive study of initial diameter effects and other observations on convection-free droplet combustion in the standard atmosphere for n-heptane, n-octane, and n-decane. Combustion and Flame 171, pages 27-41.
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Chaoqun Liu & Yonghua Yan. (2014) DNS Study of Turbulence Structure in a Boundary Layer. DNS Study of Turbulence Structure in a Boundary Layer.
Yu Cheng Liu, Anthony J. Savas & C. Thomas Avedisian. (2013) The spherically symmetric droplet burning characteristics of Jet-A and biofuels derived from camelina and tallow. Fuel 108, pages 824-832.
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Yu Cheng Liu, Anthony J. Savas & C. Thomas Avedisian. (2013) Spherically symmetric droplet combustion of three and four component miscible mixtures as surrogates for Jet-A. Proceedings of the Combustion Institute 34:1, pages 1569-1576.
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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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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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Jun H. Bae & C. Thomas Avedisian. (2005) Soot Emissions from Spherical Droplet Flames for Mixtures of JP8 and Tripropylene Glycol Monomethyl Ether. Environmental Science & Technology 39:20, pages 8008-8013.
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J. Bae & C. Avedisian. (2004) Effect of TPGME Blending on Soot Emissions from JP8 Fuel Droplets Burning with Spherical Symmetry. Effect of TPGME Blending on Soot Emissions from JP8 Fuel Droplets Burning with Spherical Symmetry.

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