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SHORT COMMUNICATION

Unition Delay of Methane in Reflected Shock Waves

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Pages 239-245 | Received 02 Apr 1980, Accepted 08 Sep 1980, Published online: 09 Jun 2010

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Yongfeng Liu, Yuqi Sheng, Ping Wei, Lu Zhang, Shengzhuo Yao, Haifeng Liu & Hua Sun. (2022) The Third Body Effect of Carbon Dioxide on N-heptane Ignition Delay Characteristics under O2/CO2 Conditions. Combustion Science and Technology 194:14, pages 2817-2835.
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Peng Zhang, István Gy. Zsély, Viktor Samu, Tibor Nagy & Tamás Turányi. (2021) Comparison of Methane Combustion Mechanisms Using Shock Tube and Rapid Compression Machine Ignition Delay Time Measurements. Energy & Fuels 35:15, pages 12329-12351.
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Jiankun Shao, David F. Davidson & Ronald K. Hanson. (2018) A shock tube study of ignition delay times in diluted methane, ethylene, propene and their blends at elevated pressures. Fuel 225, pages 370-380.
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E A Fedyanov, E M Itkis, V N Kuzmin & S N Shumskiy. (2017) The single-zone numerical model of homogeneous charge compression ignition engine performance. IOP Conference Series: Materials Science and Engineering 177, pages 012069.
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Jiaxiang Zhang, Erjiang Hu, Zihang Zhang, Lun Pan & Zuohua Huang. (2013) Comparative Study on Ignition Delay Times of C1–C4 Alkanes. Energy & Fuels 27:6, pages 3480-3487.
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I.N. Kosarev, N.L. Aleksandrov, S.V. Kindysheva, S.M. Starikovskaia & A.Yu. Starikovskii. (2008) Kinetics of ignition of saturated hydrocarbons by nonequilibrium plasma: CH4-containing mixtures. Combustion and Flame 154:3, pages 569-586.
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Junhua Chen, Vincent McDonell & Scott Samuelsen. (2007) Autoignition Correlations for Pipeline Natural Gas at Low and Intermediate Temperatures. Journal of Propulsion and Power 23:3, pages 585-592.
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Philippe Dagaut & André Nicolle. (2005) Experimental and detailed kinetic modeling study of hydrogen-enriched natural gas blend oxidation over extended temperature and equivalence ratio ranges. Proceedings of the Combustion Institute 30:2, pages 2631-2638.
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. 2004. Handbook of Explosion Prevention and Protection. Handbook of Explosion Prevention and Protection 641 688 .
John M. Simmie. (2003) Detailed chemical kinetic models for the combustion of hydrocarbon fuels. Progress in Energy and Combustion Science 29:6, pages 599-634.
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Dmitry Davidenko, Iskender Gökalp, Emmanuel Dufour & Daniel Gaffié. (2002) Kinetic Mechanism Validation and Numerical Simulation of Supersonic Combustion of Methane-Hydrogen Fuel. Kinetic Mechanism Validation and Numerical Simulation of Supersonic Combustion of Methane-Hydrogen Fuel.
Winfried Karl. 2000. Handbuch des Explosionsschutzes. Handbuch des Explosionsschutzes 289 318 .
S. M. Hwang, Si-Ok Ryu, K. J. De Witt & M. J. Rabinowitz. (1999) Rate Coefficient Measurements of the Reaction CH 3 + O 2 = CH 3 O + O . The Journal of Physical Chemistry A 103:30, pages 5949-5958.
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Jin Do Chung & Yukio Mizutani. (1997) Effects of turbulent mixing on spray ignition in spray system. KSME International Journal 11:2.
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Eric L. Petersen, Michael Röhrig, David F. Davidson, Ronald K. Hanson & Craig T. Bowman. (1996) High-pressure methane oxidation behind reflected shock waves. Symposium (International) on Combustion 26:1, pages 799-806.
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Tohru Mitani. (1996) Quenching of reaction in gas-sampling probes to measure scramjet engine performance. Symposium (International) on Combustion 26:2, pages 2917-2924.
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Huixing Yang, Zhiwei Qin, Vitaly V. Lissianski & William C. Gardiner. (2013) Experimental and Modeling Study of the High‐Temperature Ignition of Methane and Methane Mixtures with Ethane and Propane. Israel Journal of Chemistry 36:3, pages 305-312.
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L.J. Spadaccini & M.B. ColketIIIIII. (1994) Ignition delay characteristics of methane fuels. Progress in Energy and Combustion Science 20:5, pages 431-460.
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Yukio Mizutani, Kazuyoshi Nakabe & Jin Do Chung. (1991) Effects of turbulent mixing on spray ignition. Symposium (International) on Combustion 23:1, pages 1455-1460.
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. 1988. Dynamics of Reactive Systems Part I: Flames; Part II: Heterogeneous Combustion and Applications. Dynamics of Reactive Systems Part I: Flames; Part II: Heterogeneous Combustion and Applications 37 57 .
T. Inomata, T. Moriwaki & S. Okazaki. (1985) Effect of bromomethane on the ignition in methane-oxygen-Argon mixtures behind reflected shock waves. Combustion and Flame 62:2, pages 183-191.
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Michael Frenklach & David E. Bornside. (1984) Shock-initiated ignition in methane-propane mixtures. Combustion and Flame 56:1, pages 1-27.
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K.S. Krishnan, R. Ravikumar & K.A. Bhaskaran. (1983) Experimental and analytical studies on the ignition of methaneacetylene mixtures. Combustion and Flame 49:1-3, pages 41-50.
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