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Experimental study of end-vented hydrogen deflagrations in a 40-foot container

Rui, S. C., Wang, C. J., Wan, Y. ., Luo, X. J., Zhang, Z. ., & Li, Q. . (2020). Experimental study of end-vented hydrogen deflagrations in a 40-foot container. International Journal of Hydrogen Energy, 45(31), 15710-15719+. https://doi.org/10.1016/j.ijhydene.2020.04.036 (Original work published)

Effect of ignition position on vented hydrogen-air explosions

Guo, J. ., Sun, X. X., Rui, S. C., Cao, Y. ., Hu, K. L., & Wang, C. J. (2015). Effect of ignition position on vented hydrogen-air explosions. International Journal of Hydrogen Energy, 40(45), 15780-15788+. https://doi.org/10.1016/j.ijhydene.2015.09.038 (Original work published)

Duct-vented hydrogen-air deflagrations: The effect of duct length and hydrogen concentration

Yang, F. Q., Guo, J. ., Wang, C. J., & Lu, S. X. (2018). Duct-vented hydrogen-air deflagrations: The effect of duct length and hydrogen concentration. International Journal of Hydrogen Energy, 43(45), 21142-21148+. https://doi.org/10.1016/j.ijhydene.2018.09.074 (Original work published)

Deflagrations of localised homogeneous and inhomogeneous hydrogen-air mixtures in enclosures

Makarov, D. ., Hooker, P. ., Kuznetsov, M. ., & Molkov, V. . (2018). Deflagrations of localised homogeneous and inhomogeneous hydrogen-air mixtures in enclosures. International Journal of Hydrogen Energy, 43(20), 9848-9869+. https://doi.org/10.1016/j.ijhydene.2018.03.159 (Original work published)

Application of PET as a non-metallic liner for the 6.8 L type-4 cylinder based on the hydrogen cycling test

Cho, S. M., Kim, K. S., Kim, W. ., & Choi, S. J. (2022). Application of PET as a non-metallic liner for the 6.8 L type-4 cylinder based on the hydrogen cycling test. International Journal of Hydrogen Energy, 47(10), 6965-6973+. https://doi.org/10.1016/j.jhydene.2021.12.061 (Original work published)
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