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This article is cited in 25 scientific papers (total in 25 papers)
Kinetic mechanism of propane ignition and combustion in air
N. S. Titova, P. S. Kuleshov, A. M. Starik Baranov Central Institute of Aviation Motors, Moscow, 111116, Russia
Abstract:
A detailed kinetic model of propane ignition and combustion in air is developed. The model includes 599 reactions with 92 species and involves both the high-temperature and low-temperature mechanisms of oxidation. The model is tested against experimental data on the ignition delay time, on propane conversion during low-temperature oxidation, on changes in species concentrations during propane pyrolysis, and on laminar flame propagation velocity. The model is tested in wide ranges of the initial temperature $T_0$ = 680–1900 K, pressure $p_0$ = 0.17–30 atm, and fuel-air equivalence ratio $\phi$ = 0.13–2.
Keywords:
oxidation, combustion, kinetic mechanism, propane, modeling.
Received: 16.04.2010 Accepted: 17.05.2010
Citation:
N. S. Titova, P. S. Kuleshov, A. M. Starik, “Kinetic mechanism of propane ignition and combustion in air”, Fizika Goreniya i Vzryva, 47:3 (2011), 3–19; Combustion, Explosion and Shock Waves, 47:3 (2011), 249–264
Linking options:
https://www.mathnet.ru/eng/fgv1091 https://www.mathnet.ru/eng/fgv/v47/i3/p3
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