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Similitude analysis and critical conditions for spontaneous ignition of hydrogen release into the atmosphere through a tube

Gong, L. ., Duan, Q. L., Sun, J. H., & Molkov, V. . (2019). Similitude analysis and critical conditions for spontaneous ignition of hydrogen release into the atmosphere through a tube. Fuel, 245, 413-419+. https://doi.org/10.1016/j.fuel.2019.02.064 (Original work published)

Prevention of hydrogen accumulation inside the vacuum vessel pressure suppression system of the ITER facility by means of passive auto-catalytic recombiners

Steffen, P. M., Reinecke, E. A., Kelm, S. ., Bentaib, A. ., Chaumeix, N. ., & Allelein, H. J. (2019). Prevention of hydrogen accumulation inside the vacuum vessel pressure suppression system of the ITER facility by means of passive auto-catalytic recombiners. International Journal of Hydrogen Energy, 44(17), 8971-8980+. https://doi.org/10.1016/j.ijhydene.2018.07.039 (Original work published)

Numerical and experimental investigation of H2-air and H2O2 detonation parameters in a 9 m long tube, introduction of a new detonation model

Malik, K. ., Żbikowski, M. ., Bąk, D. ., Lesiak, P. ., & Teodorczyk, A. . (2019). Numerical and experimental investigation of H2-air and H2O2 detonation parameters in a 9 m long tube, introduction of a new detonation model. International Journal of Hydrogen Energy, 44(17), 8743-8750+. https://doi.org/10.1016/j.ijhydene.2018.04.161 (Original work published)

Hydrogen explosions in 20′ ISO container

Sommersel, O. K., Vaagsaether, K. ., & Bjerketvedt, D. . (2017). Hydrogen explosions in 20′ ISO container. International Journal of Hydrogen Energy, 42(11), 7740-7748+. https://doi.org/10.1016/j.ijhydene.2016.06.239 (Original work published)
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