Universiti Teknologi Malaysia Institutional Repository

Flame propagation and burning rates of methane-air mixtures using schlieren photography

Suhaimi, M. S. and Saat, A. and Wahid, M. A. and Mohd. Sies, M. (2016) Flame propagation and burning rates of methane-air mixtures using schlieren photography. Jurnal Teknologi, 78 (10-2). pp. 21-27. ISSN 0127-9696

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Abstract

Different methodology have been shown to produce different results for Markstein length and laminar burning velocity of methane-air mixture. This study attempts to determine the aforesaid parameters using the newly developed closed vessel combustion chamber with Schlieren photography. Markstein length and burning rate of methane-air mixture was determined under the initial pressure of 1 atm, temperature range of 298-302K and equivalence ratio range of 0.7-1.3. Experiments were performed in a centrally ignited 29.16L cylindrical constant volume combustion chamber. Ignition energy was set at 25mJ for each experiment. The images of spherically expanding flame were recorded using Schlieren photography technique at a speed of 2000 frame per second. Analysis of the flame area yield flame radii from which the flame speed and stretch rate could be obtained. These parameters would allow the determination of Markstein length and burning rate of the flame. Results show that Markstein length magnitude increases proportionally with equivalence ratio with a magnitude ranging from 0.125cm to 0.245cm. Maximum burning rate occurs at equivalence ratio of 1.1 with a magnitude of 0.366 m/s. Flame of each equivalence ratio also exhibits fluctuation arising from acoustic disturbance. This disturbance becomes more apparent at higher equivalence ratio.

Item Type:Article
Uncontrolled Keywords:Burning rate, Closed vessel, Markstein length, Methane-air, Schlieren
Subjects:T Technology > TP Chemical technology
Divisions:Chemical Engineering
ID Code:74631
Deposited By: Widya Wahid
Deposited On:23 Nov 2017 01:37
Last Modified:23 Nov 2017 01:37

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