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A well-resolved numerical study of a turbulent buoyant helium jet in a highly-confined two-vented enclosure

Saikali, E. ., Sergent, A. ., Wang, Y. S., Le Quere, P. ., Bernard-Michel, G. ., & Tenaud, C. . (2020). A well-resolved numerical study of a turbulent buoyant helium jet in a highly-confined two-vented enclosure. International Journal of Heat and Mass Transfer, 163, 17+. https://doi.org/10.1016/j.ijheatmasstransfer.2020.120470 (Original work published 2025)

Un-ignited and ignited high pressure hydrogen releases: Concentration - turbulence mapping and overpressure effects

Daubech, J. ., Hebrard, J. ., Jallais, S. ., Vyazmina, E. ., Jamois, D. ., & Verbecke, F. . (2015). Un-ignited and ignited high pressure hydrogen releases: Concentration - turbulence mapping and overpressure effects. Journal of Loss Prevention in the Process Industries, 36, 441-448+. https://doi.org/10.1016/j.jlp.2015.05.013 (Original work published 2025)

Simulation analysis on the risk of hydrogen releases and combustion in subsea tunnels

. Y. Bie, H. ., & Hao, Z. R. (2017). Simulation analysis on the risk of hydrogen releases and combustion in subsea tunnels. International Journal of Hydrogen Energy, 42(11), 7617-7624+. https://doi.org/10.1016/j.ijhydene.2016.05.263 (Original work published)

The role of CFD combustion modeling in hydrogen safety management - V: Validation for slow deflagrations in homogeneous hydrogen-air experiments

Sathiah, P. ., Holler, T. ., Kljenak, I. ., & Komen, E. . (2016). The role of CFD combustion modeling in hydrogen safety management - V: Validation for slow deflagrations in homogeneous hydrogen-air experiments. Nuclear Engineering and Design, 310, 520-531+. https://doi.org/10.1016/j.nucengdes.2016.06.030 (Original work published)

Numerical validation of pressure peaking from an ignited hydrogen release in a laboratory-scale enclosure and application to a garage scenario

Hussein, H. G., Brennan, S. ., Shentsov, V. ., Makarov, D. ., & Molkov, V. . (2018). Numerical validation of pressure peaking from an ignited hydrogen release in a laboratory-scale enclosure and application to a garage scenario. International Journal of Hydrogen Energy, 43(37), 17954-17968+. https://doi.org/10.1016/j.ijhydene.2018.07.154 (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)
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