Premixed CH4/O2/CO2 flames (oxy-flames) and CH4/air flames (air-flames) were experimentally studied in a swirl-stabilized combustor. For comparing oxy and air flames, the same equivalence ratio and adiabatic flame temperature were used. CO2 dilution was adjusted to attain the same adiabatic temperature for the oxy-flame and the corresponding air-flame while keeping the equivalence ratio and Reynolds number (=20,000) the same. For high equivalence ratios, we observed flames stabilized along the inner and outer shear layers of the swirling flow and sudden expansion, respectively, in both flames. However, one notable difference between the two flames appears as the equivalence ratio reaches 0.60. At this point, the outer shear layer flame disappears in the air-flame while it persists in the oxy-flame, despite the lower burning velocity of the oxy-flame. Prior PIV measurements (Ref. 9) showed that the strains along the outer shear layer are higher than along the inner shear layer. Therefore, the extinction strain rates in both flames were calculated using a counter-flow premixed twin flame configuration. Calculations at the equivalence ratio of 0.60 show that the extinction strain rate is higher in the oxy than in the air flame, which help explain why it persists on the outer shear layer with higher strain rate. It is likely that extinction strain rates contribute to the oxy-flame stabilization when air flame extinguish in the outer shear layer. However, the trend reverses at higher equivalence ratio, and the cross point of the extinction strain rate appears at equivalence ratio of 0.64.
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ASME Turbo Expo 2015: Turbine Technical Conference and Exposition
June 15–19, 2015
Montreal, Quebec, Canada
Conference Sponsors:
- International Gas Turbine Institute
ISBN:
978-0-7918-5669-7
PROCEEDINGS PAPER
Impact of Equivalence Ratio on the Macrostructure of Premixed Swirling CH4/Air and CH4/O2/CO2 Flames
Hirotatsu Watanabe,
Hirotatsu Watanabe
Massachusetts Institute of Technology, Cambridge, MA
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Santosh J. Shanbhogue,
Santosh J. Shanbhogue
Massachusetts Institute of Technology, Cambridge, MA
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Ahmed F. Ghoniem
Ahmed F. Ghoniem
Massachusetts Institute of Technology, Cambridge, MA
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Hirotatsu Watanabe
Massachusetts Institute of Technology, Cambridge, MA
Santosh J. Shanbhogue
Massachusetts Institute of Technology, Cambridge, MA
Ahmed F. Ghoniem
Massachusetts Institute of Technology, Cambridge, MA
Paper No:
GT2015-43224, V04BT04A014; 10 pages
Published Online:
August 12, 2015
Citation
Watanabe, H, Shanbhogue, SJ, & Ghoniem, AF. "Impact of Equivalence Ratio on the Macrostructure of Premixed Swirling CH4/Air and CH4/O2/CO2 Flames." Proceedings of the ASME Turbo Expo 2015: Turbine Technical Conference and Exposition. Volume 4B: Combustion, Fuels and Emissions. Montreal, Quebec, Canada. June 15–19, 2015. V04BT04A014. ASME. https://doi.org/10.1115/GT2015-43224
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