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Fizika Goreniya i Vzryva, 1980, Volume 16, Issue 1, Pages 45–51 (Mi fgv5154)  

This article is cited in 78 scientific papers (total in 78 papers)

Effects of molecular-transport coefficients on the rate of turbulent combustion

V. P. Karpov, E. S. Severin

Moscow
Citations (78)
Received: 01.12.1978
English version:
Combustion, Explosion and Shock Waves, 1980, Volume 16, Issue 1, Pages 41–46
DOI: https://doi.org/10.1007/BF00756242
Document Type: Article
Language: Russian
Citation: V. P. Karpov, E. S. Severin, “Effects of molecular-transport coefficients on the rate of turbulent combustion”, Fizika Goreniya i Vzryva, 16:1 (1980), 45–51; Combustion, Explosion and Shock Waves, 16:1 (1980), 41–46
Citation in format AMSBIB
\Bibitem{KarSev80}
\by V.~P.~Karpov, E.~S.~Severin
\paper Effects of molecular-transport coefficients on the rate of turbulent combustion
\jour Fizika Goreniya i Vzryva
\yr 1980
\vol 16
\issue 1
\pages 45--51
\mathnet{http://mi.mathnet.ru/fgv5154}
\transl
\jour Combustion, Explosion and Shock Waves
\yr 1980
\vol 16
\issue 1
\pages 41--46
\crossref{https://doi.org/10.1007/BF00756242}
Linking options:
  • https://www.mathnet.ru/eng/fgv5154
  • https://www.mathnet.ru/eng/fgv/v16/i1/p45
  • This publication is cited in the following 78 articles:
    1. Ze Wang, Xun Li, Tao Li, Andreas Dreizler, Seyed M. Mousavi, Andrei N. Lipatnikov, Bo Zhou, “Experimental investigation of NH3-H2 jet flames adopting multi-scalar imaging: Comparison of turbulent burning velocities obtained using different flame-front markers”, Combustion and Flame, 275 (2025), 114054  crossref
    2. Seyed Morteza Mousavi, Andrei N. Lipatnikov, “Are differential diffusion effects of importance when burning hydrogen under elevated pressures and temperatures?”, International Journal of Hydrogen Energy, 49 (2024), 1048  crossref
    3. Michael Walker, “A Review of Turbulent Burning Velocity and a Spectral Theory for Turbulent Flame Propagation”, SSRN Journal, 2024  crossref
    4. F. Faldella, T. Kim, U. Doll, P. Jansohn, “Effect of pressure and H2 content on global consumption-based turbulent flame speed at gas turbine relevant conditions”, International Journal of Hydrogen Energy, 81 (2024), 842  crossref
    5. Daniel Martinez-Sanchis, Andrej Sternin, Oskar Haidn, Agnes Jocher, “Effects of injection recess in methane turbulent combustion for space propulsion”, Physics of Fluids, 36:1 (2024)  crossref
    6. Kiverin Alexey, Melnikova Ksenia, Yakovenko Ivan, “Dynamic loads induced by near-limit turbulent hydrogen-air combustion inside a confinement”, Process Safety and Environmental Protection, 189 (2024), 728  crossref
    7. H.C. Lee, P. Dai, M. Wan, A.N. Lipatnikov, “Displacement speed, flame surface density and burning rate in highly turbulent premixed flames characterized by low Lewis numbers”, J. Fluid Mech., 961 (2023)  crossref
    8. Valentin Y. Basevich, Andrey A. Belyaev, Fedor S. Frolov, Sergey M. Frolov, “Turbulent Flame Propagation in Hydrogen-Air and Methane-Air Mixtures in the Field of Synthetic Turbulence: Direct Numerical Simulation”, Eng, 4:1 (2023), 748  crossref
    9. Hsu Chew Lee, B. Wu, Peng Dai, Minping Wan, Andrei N. Lipatnikov, “Turbulent burning velocity and thermodiffusive instability of premixed flames”, Phys. Rev. E, 108:3 (2023)  crossref
    10. Blanca Giménez, Andrés Melgar, Alfonso Horrillo, Pedro Gabana, “Prediction of the flame kernel growth rate in spark ignition engine fueled with natural gas, hydrogen and mixtures”, Fuel, 339 (2023), 126908  crossref
    11. Simone Hochgreb, “How fast can we burn, 2.0”, Proceedings of the Combustion Institute, 39:2 (2023), 2077  crossref
    12. Jerzy Chomiak, Andrei N. Lipatnikov, “Simple criterion of importance of laminar flame instabilities in premixed turbulent combustion of mixtures characterized by low Lewis numbers”, Phys. Rev. E, 107:1 (2023)  crossref
    13. Andrei N. Lipatnikov, Yi-Rong Chen, S.S. Shy, “An experimental study of the influence of Lewis number on turbulent flame speed at different pressures”, Proceedings of the Combustion Institute, 39:2 (2023), 2339  crossref
    14. Shixing Wang, Ayman M. Elbaz, Guoqing Wang, Zhihua Wang, William L. Roberts, “Turbulent flame speed of NH3/CH4/H2/H2O/air-mixtures: Effects of elevated pressure and Lewis number”, Combustion and Flame, 247 (2023), 112488  crossref
    15. Yi Hao Kwah, Samuel Wiseman, James R. Dawson, “The Effect of Methane–Ammonia and Methane–Hydrogen Blends on Ignition and Light-Around in an Annular Combustor”, Journal of Engineering for Gas Turbines and Power, 145:11 (2023)  crossref
    16. Edouard Suillaud, Karine Truffin, Olivier Colin, Denis Veynante, “Direct Numerical Simulations of high Karlovitz number premixed flames for the analysis and modeling of the displacement speed.”, Combustion and Flame, 236 (2022), 111770  crossref
    17. Martin Rieth, Andrea Gruber, Forman A. Williams, Jacqueline H. Chen, “Enhanced burning rates in hydrogen-enriched turbulent premixed flames by diffusion of molecular and atomic hydrogen”, Combustion and Flame, 239 (2022), 111740  crossref
    18. Haoran Zhao, Jinhua Wang, Xiao Cai, Zhijian Bian, Hongchao Dai, Zuohua Huang, “Development of a fan-stirred constant volume combustion chamber and turbulence measurement with PIV”, Front. Energy, 16:6 (2022), 973  crossref
    19. Ivan Yakovenko, Alexey Kiverin, Ksenia Melnikova, “Computational Fluid Dynamics Model for Analysis of the Turbulent Limits of Hydrogen Combustion”, Fluids, 7:11 (2022), 343  crossref
    20. Hsu Chew Lee, Peng Dai, Minping Wan, Andrei N. Lipatnikov, “A numerical support of leading point concept”, International Journal of Hydrogen Energy, 47:55 (2022), 23444  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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