Flame propagation and burning rates of methane-air in a closed combustion vessel
The propagation and burning rates of methane-air mixtures were investigated at initial atmospheric pressure with temperature range of 298-302K and equivalence ratio range of 0.8 to 1.3. Experiments were performed in a cylindrical constant volume combustion chamber where the mixture is ignited by cen...
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my.utm.618392017-08-21T06:55:33Z http://eprints.utm.my/id/eprint/61839/ Flame propagation and burning rates of methane-air in a closed combustion vessel Suhaimi, Mohd. Suardi Saat, Aminuddin Abd. Wahid, Mazlan TJ Mechanical engineering and machinery The propagation and burning rates of methane-air mixtures were investigated at initial atmospheric pressure with temperature range of 298-302K and equivalence ratio range of 0.8 to 1.3. Experiments were performed in a cylindrical constant volume combustion chamber where the mixture is ignited by centrally located electrodes. The images of spherically expanding flame were observed and recorded using schlieren photography technique with high speed camera system. Analysis of the flame area yield flame radii and further burning rates in term of outwardly flame speed propagation can be calculated. Results shows that smooth spherical flames were observed throughout the flame propagation for all equivalence ratios. The fastest flame propagation was recorded at equivalence ratio 1.0 and 1.2. In addition, flame speed of each equivalence ratio exhibits small fluctuation probably arising from acoustic disturbance. This disturbance becomes more apparent at higher equivalence ratio. 2015 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/61839/1/AminuddinSaat2015_FlamePropagationandBurningRatesofMethane.pdf Suhaimi, Mohd. Suardi and Saat, Aminuddin and Abd. Wahid, Mazlan (2015) Flame propagation and burning rates of methane-air in a closed combustion vessel. In: 8th International Meeting of Advances in Thermofluid, 11-12 Nov, 2015, Indonesia. http://imat.eng.ui.ac.id/ |
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TJ Mechanical engineering and machinery Suhaimi, Mohd. Suardi Saat, Aminuddin Abd. Wahid, Mazlan Flame propagation and burning rates of methane-air in a closed combustion vessel |
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The propagation and burning rates of methane-air mixtures were investigated at initial atmospheric pressure with temperature range of 298-302K and equivalence ratio range of 0.8 to 1.3. Experiments were performed in a cylindrical constant volume combustion chamber where the mixture is ignited by centrally located electrodes. The images of spherically expanding flame were observed and recorded using schlieren photography technique with high speed camera system. Analysis of the flame area yield flame radii and further burning rates in term of outwardly flame speed propagation can be calculated. Results shows that smooth spherical flames were observed throughout the flame propagation for all equivalence ratios. The fastest flame propagation was recorded at equivalence ratio 1.0 and 1.2. In addition, flame speed of each equivalence ratio exhibits small fluctuation probably arising from acoustic disturbance. This disturbance becomes more apparent at higher equivalence ratio. |
format |
Conference or Workshop Item |
author |
Suhaimi, Mohd. Suardi Saat, Aminuddin Abd. Wahid, Mazlan |
author_facet |
Suhaimi, Mohd. Suardi Saat, Aminuddin Abd. Wahid, Mazlan |
author_sort |
Suhaimi, Mohd. Suardi |
title |
Flame propagation and burning rates of methane-air in a closed combustion vessel |
title_short |
Flame propagation and burning rates of methane-air in a closed combustion vessel |
title_full |
Flame propagation and burning rates of methane-air in a closed combustion vessel |
title_fullStr |
Flame propagation and burning rates of methane-air in a closed combustion vessel |
title_full_unstemmed |
Flame propagation and burning rates of methane-air in a closed combustion vessel |
title_sort |
flame propagation and burning rates of methane-air in a closed combustion vessel |
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2015 |
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http://eprints.utm.my/id/eprint/61839/1/AminuddinSaat2015_FlamePropagationandBurningRatesofMethane.pdf http://eprints.utm.my/id/eprint/61839/ http://imat.eng.ui.ac.id/ |
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