Investigation on the Criterion of Deflagration Detonation Transition for Methane-Oxygen Mixture

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In this paper, a study on the combustible methane-oxygen mixture was conducted, using the linear stability theory to analyze the deflagration mechanism of methane. The criterion of deflagration detonation transition was proposed. The criterion can be used as a theoretical support for the prevention and control of methane explosion.

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186-191

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October 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Oppenheim, A. K., and Soloukhin, R. I., Ann. Rev. Fluid Me&. 5: 31 (1973).

Google Scholar

[2] Salamandra, G. D., et al. Some Methods of exploration of Quick-Going Processes and Their Application to Investigation of Forming the Detonation Wave, Izdatel- stvo Akademii Nauk SSSR, Moscow, (1960).

Google Scholar

[3] Soloukhin, R. I. Methods of Measure and Main Results of Experiments in Shock Tubes, Izdatelstvo Novosibirskogo Universiteta, Novosibirsk, (1969).

Google Scholar

[4] Urtiew, P. A., and Oppenheim, A. K., Proc. R. Sot. A 295: 13 (1966).

Google Scholar

[5] Urtiew, P. A., and Oppenheim, A. K., Proc. R. Sot. A 304: 379 (1968).

Google Scholar

[6] Clarke, J. F., and Riley, N.,J. Fluid Mech. 167: 409-414 (1986).

Google Scholar

[7] Zeldovich, Ya. B., Librovich, V. B., Makhviladze, G. M., and Sivashinsky, G. I., Prikladnaya Mechanika i Technicheskaya Fizika N 2176 (1970).

Google Scholar

[8] Gelfand, B. E., Makhviladze, G. M., Rogatykh, D. I., and Frolov, S. M., Spontaneous Forming of Explosive Regimes of Reaction in the Regions with Non-uniformities of Temperature and Concentration, Preprint No. 358, Institute Problem Makhaniki Akademii Nauk SSSR, Moscow, (1988).

Google Scholar

[9] Gelfand, B. E., Frolov, S. M., Polenov, A. N., and Tsyganov, S. A., Himicheskaya Fizika 51277 (1986).

Google Scholar

[10] Clarke, J. F., Kassoy, D. R., and Riley, N., Proc. R. Sot. A 408: 129-148 (1986).

Google Scholar

[11] Smimov, N. N., Demyanov, An. Yu., and Panfilov, I. I., Himicheskaya Fizi. Process. Goren. Vztyua. Detonatsya. Materialy IX Vsesoyuznogo Sympoziuma po Goreniyu i vzryvu. Izdatelstvo Akademii Nauk SSSR, Chemogolovka, 1989, pp.52-56.

Google Scholar

[12] Kireev, V. T., Prikl. Mech. Tech. Fizi. 6: 130-132 (1965).

Google Scholar

[13] Demyanov, Yu. A., Sekrieru, G. V., Igoshin, A. I., Kireev, V. T., and Pinsky, V. L., One-Dimensional Flows of Real Gas, Shtinitsa, Kishinev, (1980).

Google Scholar

[14] Lee J HS.Moen I O. The mechanism of transition from deflagration In detonation in vapor cloud explosions[J].Progress in Energy and Combustion Science,1980,6:359-389.

DOI: 10.1016/0360-1285(80)90011-8

Google Scholar

[15] Eder A,Brehm N.Analytical and Experimental Insights into Fast Deflagrations, Detonations, and the Deflagration-to-Detonation Transition Process.Heat and Mass Transfer. 2001(37): 543-548.

DOI: 10.1007/s002310100238

Google Scholar

[16] Bartenev AM,Gelfand BE.Spontaneous initiation of detonation [J] .Progress in Energy and Combustion Science,2000,26:29-55.

Google Scholar

[17] Lee JSH,Moin IO.The mechanism of transition from deflagration to detonation in vapor cloud explosions [J]. Progress in Energy and Combustion Science,1980.6:359-389.

DOI: 10.1016/0360-1285(80)90011-8

Google Scholar

[18] DONG Gang, FAN Bao Chun. Numerical simulations on process of deflagration detonation transition induced by temperature gradient[J]. Journal of Safety Science and Technology, 2007, 12: 39-43. [In Chinese].

Google Scholar

[19] LI Ru Sheng. Non-equilibrium thermodynamics and dissipative structures[M]. Tsinghua University Press,1986. [In Chinese].

Google Scholar

[20] LI Zhen Ming. Study on explosion limit of the coal seam gas and refrigerant [D]. Graduate University of Chinese Academy of Sciences, 2010. [In Chinese].

Google Scholar

[21] XU Mang-Gui,XU Jing Cai.Explosion Limits and Calculated Methods of Combustible Gas. Journal of Xi'an University of Science and Technology' 2005,2:139—142 . [In Chinese].

Google Scholar