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Turbulent premixed combustion: Flamelet structure and its effect on turbulent burning velocities

Driscoll, J. F. (2008). Turbulent premixed combustion: Flamelet structure and its effect on turbulent burning velocities. Progress in Energy and Combustion Science, 34(1), 91-134+. https://doi.org/10.1016/j.pecs.2007.04.002 (Original work published 2025)

Simplified partitioning model to simulate high pressure under-expanded jet flows impinging vertical obstacles

Hu, J. H., Christopher, D. M., & Li, X. F. (2018). Simplified partitioning model to simulate high pressure under-expanded jet flows impinging vertical obstacles. International Journal of Hydrogen Energy, 43(29), 13649-13658+. https://doi.org/10.1016/j.ijhydene.2018.05.036 (Original work published)

RANS analyses on erosion behavior of density stratification consisted of helium-air mixture gas by a low momentum vertical buoyant jet in the PANDA test facility, the third international benchmark exercise (IBE-3)

Abe, S. ., Ishigaki, M. ., Sibamoto, Y. ., & Yonomoto, T. . (2015). RANS analyses on erosion behavior of density stratification consisted of helium-air mixture gas by a low momentum vertical buoyant jet in the PANDA test facility, the third international benchmark exercise (IBE-3). Nuclear Engineering and Design, 289, 231-239+. https://doi.org/10.1016/j.nucengdes.2015.04.002 (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)

Modelling and simulation of high-pressure hydrogen jets using notional nozzle theory and open source code OpenFOAM

Keenan, J. J., Makarov, D. V., & Molkov, V. V. (2017). Modelling and simulation of high-pressure hydrogen jets using notional nozzle theory and open source code OpenFOAM. International Journal of Hydrogen Energy, 42(11), 7447-7456+. https://doi.org/10.1016/j.ijhydene.2016.07.022 (Original work published)

Investigation of ignited hydrogen leaks from tube fittings

Iverson, D. ., DeVaal, J. ., Kerr, J. ., & Oshkai, P. . (2015). Investigation of ignited hydrogen leaks from tube fittings. International Journal of Hydrogen Energy, 40(38), 13134-13145+. https://doi.org/10.1016/j.ijhydene.2015.08.006 (Original work published)
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