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In order to investigate the combustion characteristics of methane (CH4), effects of the driving gas pressure, initial pressure and equivalence ratio on the ignition delay time of CH4/O2/Ar mixture were investigated using a rapid compression machine (RCM) at initial temperature 288K, driving gas pressure of 0.25-0.65 MPa, initial pressure of 0.06-0.10 MPa and equivalence ratio of 0.57-1.33 in this study. Kinetics model was built to simulate effects of the compressed temperature on the ignition delay time of CH4/O2/Ar mixture and to simulate the combustion process with the same initial pressure and equivalence ratio as experiments. The results show that the ignition delay time of CH4/O2/Ar mixture has a mild fluctuation within a narrow range under a certain range of driving gas pressure. The ignition delay time slightly extends under a high driving gas pressure. However, it has a significant increase when the driving gas pressure is extremely low. The ignition delay time of CH4/O2/Ar mixture shortens with increasing compressed temperature. With increasing initial pressure, the ignition delay time of CH4/O2/Ar mixture shortens under different equivalence ratios, with increasing equivalence ratio, and the ignition delay time of CH4/O2/Ar mixture extends under different initial pressures. © 2016, Beijing University of Technology. All right reserved.
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Journal of Beijing University of Technology
ISSN: 0254-0037
Year: 2016
Issue: 4
Volume: 42
Page: 577-584
Cited Count:
WoS CC Cited Count: 0
SCOPUS Cited Count: 4
ESI Highly Cited Papers on the List: 0 Unfold All
WanFang Cited Count:
Chinese Cited Count:
30 Days PV: 7
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