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Original Articles

Simulation of the Behavior of Rich Hydrogen-Air Flames Near the Flammability Limit

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Pages 183-193 | Accepted 15 Dec 1994, Published online: 03 May 2007

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Anastasia D. Moroshkina, Alina A. Ponomareva, Vladimir V. Mislavskii, Evgeniy V. Sereshchenko, Vladimir V. Gubernov, Viatcheslav V. Bykov & Sergey S. Minaev. (2023) Determining the global activation energy of methane–air premixed flames. Combustion Theory and Modelling 27:7, pages 909-924.
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Viatcheslav Bykov, Sudhi Shashidharan, Etele Berszany, Vladimir Gubernov & Ulrich Maas. (2022) Model Reduction of Rich Premixed Hydrogen/air Oscillatory Flames by Global Quasi-Linearization (GQL). Combustion Science and Technology 194:12, pages 2377-2394.
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B. Kichatov, A. Kolobov, V. Gubernov, V. Bykov & U. Maas. (2020) Combustion of rich hydrogen–air mixture stabilised near a cylindrical porous burner. Combustion Theory and Modelling 24:4, pages 650-665.
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Taisia Miroshnichenko, Vladimir Gubernov, Kaoru Maruta & Sergei Minaev. (2016) Diffusive–thermal oscillations of rich premixed hydrogen–air flames in a microflow reactor. Combustion Theory and Modelling 20:2, pages 313-327.
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Articles from other publishers (27)

A. Moroshkina, E. Yakupov, V. Mislavskii, E. Sereshchenko, A. Polezhaev, S. Minaev, V. Gubernov & V. Bykov. (2024) The performance of reaction mechanism in prediction of the characteristics of the diffusive-thermal oscillatory instability of methane–hydrogen–air burner-stabilized flames. Acta Astronautica 215, pages 496-504.
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E.O. Yakupov, V.V. Gubernov & A.A. Polezhaev. (2024) Formation of spiral structures in rich-hydrogen air flames at elevated pressures. International Journal of Hydrogen Energy 49, pages 784-795.
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Daniil Volkov, Anastasia Moroshkina, Vladimir Mislavskii, Evgeniy Sereshchenko, Vladimir Gubernov, Viatcheslav Bykov & Sergey Minaev. (2024) Relaxational oscillations of burner-stabilized premixed methane–air flames. Combustion and Flame 259, pages 113141.
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Cheng Bi, Hong Lv & Cunman Zhang. 2024. Proceedings of the 10th Hydrogen Technology Convention, Volume 2. Proceedings of the 10th Hydrogen Technology Convention, Volume 2 89 98 .
Chunwei Wu, Yi-Rong Chen, Robert Schießl, Shenqyang (Steven) Shy & Ulrich Maas. (2023) Numerical and experimental studies on minimum ignition energies in primary reference fuel/air mixtures. Proceedings of the Combustion Institute 39:2, pages 1987-1996.
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A. Moroshkina, V. Mislavskii, B. Kichatov, V. Gubernov, V. Bykov & U. Maas. (2023) Burner stabilized flames: Towards reliable experiments and modelling of transient combustion. Fuel 332, pages 125754.
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Pierre Boivin, Marc Le Boursicaud, Alejandro Millán-Merino, Said Taileb, Josué Melguizo-Gavilanes & Forman Williams. 2023. Hydrogen for Future Thermal Engines. Hydrogen for Future Thermal Engines 161 236 .
Antonio L. Sánchez, Jaime Carpio & Forman A. Williams. (2022) Unexpected performance of systematically derived one-step chemistry in describing rich hydrogen-air pulsating flames. Combustion and Flame 241, pages 112068.
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V. Mislavskii, N. Pestovskii, S. Tskhai, B. Kichatov, V. Gubernov, V. Bykov & U. Maas. (2021) Diffusive-thermal pulsations of burner stabilized methane-air flames. Combustion and Flame 234, pages 111638.
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V.V. Gubernov, V. Bykov & U. Maas. (2019) The effect of dilution on the diffusive-thermal instability of the rich premixed hydrogen deflagration. International Journal of Hydrogen Energy 44:21, pages 11153-11160.
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V. Bykov, V.V. Gubernov & U. Maas. (2018) Mechanisms performance and pressure dependence of hydrogen/air burner-stabilized flames. Mathematical Modelling of Natural Phenomena 13:6, pages 51.
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V.V. Gubernov, V. Bykov & U. Maas. (2017) Hydrogen/air burner-stabilized flames at elevated pressures. Combustion and Flame 185, pages 44-52.
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V.V. Gubernov, A.V. Kolobov, V. Bykov & U. Maas. (2016) Investigation of rich hydrogen–air deflagrations in models with detailed and reduced kinetic mechanisms. Combustion and Flame 168, pages 32-38.
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A.I. Korsakova, V.V. Gubernov, A.V. Kolobov, V. Bykov & U. Maas. (2016) Stability of rich laminar hydrogen-air flames in a model with detailed transport and kinetic mechanisms. Combustion and Flame 163, pages 478-486.
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Fan Yang & Wenjun Kong. (2015) Pulsating instability in H 2 –air partially premixed flames. Proceedings of the Combustion Institute 35:1, pages 1057-1064.
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Antonio L. Sánchez & Forman A. Williams. (2014) Recent advances in understanding of flammability characteristics of hydrogen. Progress in Energy and Combustion Science 41, pages 1-55.
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Vadim N. Gamezo, Alexei Y. Poludnenko, Elaine S. Oran & Forman A. Williams. (2014) Transverse waves resulting from pulsating instability of two-dimensional flames. Combustion and Flame 161:4, pages 950-957.
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Vladimir V. Gubernov, Andrei V. Kolobov, Andrei A. Polezhaev & Harvinder S. Sidhu. (2013) Analysing the stability of premixed rich hydrogen–air flame with the use of two-step models. Combustion and Flame 160:6, pages 1060-1069.
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Vadim Gamezo, Alexei Poludnenko, Elaine Oran & Forman Williams. (2013) Pulsating Flame Instability in Two Dimensions. Pulsating Flame Instability in Two Dimensions.
Mikhail Noskov & Mitchell D. Smooke. (2005) An implicit compact scheme solver with application to chemically reacting flows. Journal of Computational Physics 203:2, pages 700-730.
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Hong Zhao, Sravan Ravinutala & Stephen Tse. (2003) Dynamics of Flame Propagation from Localized Ignition in Rich Hydrogen/Air Mixtures: Effects of Elevated Pressure and Temperature. Dynamics of Flame Propagation from Localized Ignition in Rich Hydrogen/Air Mixtures: Effects of Elevated Pressure and Temperature.
E.W. Christiansen & C.K. Law. (2002) Pulsating instability and extinction of stretched premixed flames. Proceedings of the Combustion Institute 29:1, pages 61-68.
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C.K Law & C.J Sung. (2000) Structure, aerodynamics, and geometry of premixed flamelets. Progress in Energy and Combustion Science 26:4-6, pages 459-505.
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A. Brockhinke, S. Haufe & K. Kohse-Höinghaus. (2000) Structural properties of lifted hydrogen jet flames measured by laser spectroscopic techniques. Combustion and Flame 121:1-2, pages 367-377.
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E.W. Christiansen, C.K. Law & C.J. Sung. (2000) The role of pulsating instability and global lewis number on the flammability limit of lean heptane/air flames. Proceedings of the Combustion Institute 28:1, pages 807-814.
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Olaf Deutschmann, Frank Behrendt & Jürgen Warnatz. (1998) Formal treatment of catalytic combustion and catalytic conversion of methane. Catalysis Today 46:2-3, pages 155-163.
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E.W. Christiansen, C.J. Sung & C.K. Law. (1998) Pulsating instability in near-limit propagation of rich hydrogen/air flames. Symposium (International) on Combustion 27:1, pages 555-562.
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