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Visualization of spontaneous ignition under controlled burst pressure

Yamashita, K. ., Saburi, T. ., Wada, Y. ., Asahara, M. ., Mogi, T. ., & Hayashi, A. K. (2017). Visualization of spontaneous ignition under controlled burst pressure. International Journal of Hydrogen Energy, 42(11), 7755-7760+. https://doi.org/10.1016/j.ijhydene.2016.06.240 (Original work published)

Numerical study on the mechanism of spontaneous ignition of high-pressure hydrogen during its sudden release into a tube

Gong, L. ., Li, Z. S., . Y. Jin, K. ., Gao, Y. J., Duan, Q. L., Zhang, Y. C., & Sun, J. H. (2020). Numerical study on the mechanism of spontaneous ignition of high-pressure hydrogen during its sudden release into a tube. Safety Science, 129, 10+. https://doi.org/10.1016/j.ssci.2020.104807 (Original work published 2025)

Numerical simulation on the spontaneous ignition of high-pressure hydrogen release through a tube at different burst pressures

. Y. Zhu, M. ., Jin, K. Q., Duan, Q. L., Zeng, Q. ., & Sun, J. H. (2022). Numerical simulation on the spontaneous ignition of high-pressure hydrogen release through a tube at different burst pressures. International Journal of Hydrogen Energy, 47(18), 10431-10440+. https://doi.org/10.1016/j.ijhydene.2022.01.081 (Original work published)

Non-premixed flame propagation inside and outside the different three-way tubes after the self-ignition of pressurized hydrogen

Jiang, Y. M., Pan, X. H., Hua, M. ., Zhang, T. ., . Y. Wang, Q. ., Wang, Z. L., … Jiang, J. C. (2022). Non-premixed flame propagation inside and outside the different three-way tubes after the self-ignition of pressurized hydrogen. Process Safety and Environmental Protection, 165, 102-113+. https://doi.org/10.1016/j.psep.2022.06.061 (Original work published 2025)

Mechanisms of high-pressure hydrogen gas self-ignition in tubes

Golub, V. V., Baklanov, D. I., Golovastov, S. V., Ivanov, M. F., Laskin, I. N., Saveliev, A. S., … Volodin, V. V. (2008). Mechanisms of high-pressure hydrogen gas self-ignition in tubes. Journal of Loss Prevention in the Process Industries, 21(2), 185-198+. https://doi.org/10.1016/j.jlp.2007.06.012 (Original work published 2025)

Flame acceleration and transition to detonation in ducts

Ciccarelli, G. ., & Dorofeev, S. . (2008). Flame acceleration and transition to detonation in ducts. Progress in Energy and Combustion Science, 34(4), 499-550+. https://doi.org/10.1016/j.pecs.2007.11.002 (Original work published 2025)

Experimental study on shock wave propagation and spontaneous ignition induced by high-pressure hydrogen suddenly released into T-shaped tubes

Wang, Z. L., Pan, X. H., Jiang, Y. M., . Y. Wang, Q. ., . Y. Li, Y. ., Xiao, J. J., … Jiang, J. C. (2020). Experimental study on shock wave propagation and spontaneous ignition induced by high-pressure hydrogen suddenly released into T-shaped tubes. Safety Science, 127, 9+. https://doi.org/10.1016/j.ssci.2020.104694 (Original work published 2025)

An experimental study on the mechanism of self-ignition of high-pressure hydrogen

Kaneko, W. ., & Ishii, K. . (2017). An experimental study on the mechanism of self-ignition of high-pressure hydrogen. International Journal of Hydrogen Energy, 42(11), 7374-7379+. https://doi.org/10.1016/j.ijhydene.2016.06.046 (Original work published)

Experimental investigation on shock wave propagation and self-ignition of pressurized hydrogen in different three-way tubes

Ta, L. ., Wang, Z. L., Zhang, B. ., Jiang, Y. M., . Y. Li, Y. ., . Y. Wang, Q. ., … Jiang, J. C. (2022). Experimental investigation on shock wave propagation and self-ignition of pressurized hydrogen in different three-way tubes. Process Safety and Environmental Protection, 160, 139-152+. https://doi.org/10.1016/j.psep.2022.01.075 (Original work published 2025)

Experiment study on the pressure and flame characteristics induced by high-pressure hydrogen spontaneous ignition

Wang, Z. L., Pan, X. H., Jiang, Y. M., . Y. Wang, Q. ., . Y. Yan, W. ., Xiao, J. J., … Jiang, J. C. (2020). Experiment study on the pressure and flame characteristics induced by high-pressure hydrogen spontaneous ignition. International Journal of Hydrogen Energy, 45(35), 18042-18056+. https://doi.org/10.1016/j.ijhydene.2020.04.051 (Original work published)
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