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Propagation dynamics uncertainty analysis of a premixed laminar unstable hydrogen-air flame

Elyanov, A. E., Gavrikov, A. ., Golub, V. V., . Y. Mikushkin, A. ., & Volodin, V. V. (2022). Propagation dynamics uncertainty analysis of a premixed laminar unstable hydrogen-air flame. Process Safety and Environmental Protection, 164, 50-56+. https://doi.org/10.1016/j.psep.2022.06.007 (Original work published 2025)

Premixed flame propagation in hydrogen explosions

Xiao, H. H., Duan, Q. L., & Sun, J. H. (2018). Premixed flame propagation in hydrogen explosions. Renewable & Sustainable Energy Reviews, 81, 1988-2001+. https://doi.org/10.1016/j.rser.2017.06.008 (Original work published 2025)

Numerical study on laminar flame velocity of hydrogen-air combustion under water spray effects

Gai, G. D., Kudriakov, S. ., Rogg, B. ., Hadjadj, A. ., Studer, E. ., & Thomine, O. . (2019). Numerical study on laminar flame velocity of hydrogen-air combustion under water spray effects. International Journal of Hydrogen Energy, 44(31), 17015-17029+. https://doi.org/10.1016/j.ijhydene.2019.04.225 (Original work published)

Large-scale flame structures in ultra-lean hydrogen-air mixtures

Yakovenko, I. S., Ivanov, M. F., Kiverin, A. D., & Melnikova, K. S. (2018). Large-scale flame structures in ultra-lean hydrogen-air mixtures. International Journal of Hydrogen Energy, 43(3), 1894-1901+. https://doi.org/10.1016/j.ijhydene.2017.11.138 (Original work published)

Geometric influence of perforated plate on premixed hydrogen-air flame propagation

Li, Q. ., Sun, X. X., Wang, X. ., Zhang, Z. ., Lu, S. X., & Wang, C. J. (2018). Geometric influence of perforated plate on premixed hydrogen-air flame propagation. International Journal of Hydrogen Energy, 43(46), 21572-21581+. https://doi.org/10.1016/j.ijhydene.2018.09.138 (Original work published)

Experiments on combustion regimes for hydrogen/air mixtures in a thin layer geometry

Kuznetsov, M. ., & Grune, J. . (2019). Experiments on combustion regimes for hydrogen/air mixtures in a thin layer geometry. International Journal of Hydrogen Energy, 44(17), 8727-8742+. https://doi.org/10.1016/j.ijhydene.2018.11.144 (Original work published)

Experimental study of flame propagation across a perforated plate

Li, Q. ., Sun, X. X., Lu, S. X., Zhang, Z. ., Wang, X. ., Han, S. ., & Wang, C. J. (2018). Experimental study of flame propagation across a perforated plate. International Journal of Hydrogen Energy, 43(17), 8524-8533+. https://doi.org/10.1016/j.ijhydene.2018.03.079 (Original work published)

Experimental study of flame propagation across flexible obstacles in a square cross-section channel

Li, Q. ., Sun, X. X., Wang, X. ., Zhang, Z. ., Lu, S. X., & Wang, C. J. (2019). Experimental study of flame propagation across flexible obstacles in a square cross-section channel. International Journal of Hydrogen Energy, 44(7), 3944-3952+. https://doi.org/10.1016/j.ijhydene.2018.12.085 (Original work published)

Experimental study of premixed hydrogen-air flame quenching in a channel with the perforated plate

Wan, Y. ., Wang, C. J., Li, Q. ., & Luo, X. J. (2020). Experimental study of premixed hydrogen-air flame quenching in a channel with the perforated plate. Fuel, 263, 8+. https://doi.org/10.1016/j.fuel.2019.116733 (Original work published)

Effect of orifice plates spaces on flame propagation in a square cross-section channel

Li, Q. ., Lu, S. X., & Wang, C. J. (2019). Effect of orifice plates spaces on flame propagation in a square cross-section channel. International Journal of Hydrogen Energy, 44(40), 22537-22546+. https://doi.org/10.1016/j.ijhydene.2018.11.220 (Original work published)
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