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Influence of perforated plate thickness on supersonic combustion wave propagation mechanism in a stoichiometric H2-O2 mixture

Guo, W. ., Li, Q. ., Lv, Z. W., Zhang, A. F., & Shen, Z. H. (2022). Influence of perforated plate thickness on supersonic combustion wave propagation mechanism in a stoichiometric H2-O2 mixture. Fuel, 311, 11+. https://doi.org/10.1016/j.fuel.2021.122609 (Original work published)

Effect of perforated plate with high blockage rate on detonation re-initiation in H2–O2-Ar mixture

Zhang, Z. ., Wang, C. ., Luo, X. ., Guo, Y. ., Rui, S. ., & Guo, W. . (2021). Effect of perforated plate with high blockage rate on detonation re-initiation in H2–O2-Ar mixture. International Journal of Hydrogen Energy, 46(42), 22208-22221+. https://doi.org/10.1016/j.ijhydene.2021.04.025 (Original work published)
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