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The Effects of Flame Structure on Extinction of CH4-O2-N2 Diffusion FlamesThe effects of flame structure on the extinction limits of CH4-O2-N2 counterflow diffusion flames were investigated experimentally and numerically by varying the stoichiometric mixture fraction Z(sub st), Z(sub st) was varied by varying free-stream concentrations, while the adiabatic flame temperature T(sub ad) was held fixed by maintaining a fixed amount of nitrogen at the flame. Z(sub st) was varied between 0.055 (methane-air flame) and 0.78 (diluted- methane-oxygen flame). The experimental results yielded an extinction strain rate K(sub ext) of 375/s for the methane-air flame, increasing monotonically to 1042/s for the diluted-methane-oxygen flame. Numerical results with a 58-step Cl mechanism yielded 494/s and 1488/s, respectively. The increase in K(sub ext) with Z(sub st) for a fixed T(sub ad) is explained by the shift in the O2 profile toward the region of maximum temperature and the subsequent increase in rates for chain-branching reactions. The flame temperature at extinction reached a minimum at Z(sub st) = 0.65, where it was 200 C lower than that of the methane-air flame. This significant increase in resistance to extinction is seen to correspond to the condition in which the OH and O production zones are centered on the location of maximum temperature.
Document ID
20010059242
Acquisition Source
Glenn Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Du, J.
(Washington Univ. Saint Louis, MO United States)
Axelbaum, R. L.
(Washington Univ. Saint Louis, MO United States)
Gokoglu, S.
Date Acquired
September 7, 2013
Publication Date
January 1, 1996
Subject Category
Inorganic, Organic And Physical Chemistry
Meeting Information
Meeting: Twenty-Sixth International Symposium on Combustion
Country: Unknown
Start Date: January 1, 1996
Funding Number(s)
PROJECT: RTOP 101-12-00
CONTRACT_GRANT: NAG3-1910
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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