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Numerical study on uniform-shear flow over a circular disk at low Reynolds numbers

Yang, J. Z., Liu, M. H., Wang, C. J., Zhu, X. W., & Zhang, A. F. (2018). Numerical study on uniform-shear flow over a circular disk at low Reynolds numbers. Physics of Fluids, 30(8), 11+. https://doi.org/10.1063/1.5043518 (Original work published 2025)

Numerical investigation on the flow around an inclined prolate spheroid

Wang, Z. ., Yang, J. Z., Andersson, H. I., Zhu, X. W., Liu, M. H., Wang, L. P., & Lu, X. M. (2021). Numerical investigation on the flow around an inclined prolate spheroid. Physics of Fluids, 33(7), 22+. https://doi.org/10.1063/5.0058516 (Original work published 2025)

Laminar burning velocities of lean hydrogen-air mixtures at pressures up to 1.0 MPa

Bradley, D. ., Lawes, M. ., Liu, K. ., Verhelst, S. ., & Woolley, R. . (2007). Laminar burning velocities of lean hydrogen-air mixtures at pressures up to 1.0 MPa. Combustion and Flame, 149(1-2), 162-172+. https://doi.org/10.1016/j.combustflame.2006.12.002 (Original work published 2025)

Hydrogen-air explosion with concentration gradients in a cubic enclosure

Rui, S. C., Wang, C. J., Guo, S. S., Jing, R. L., & Li, Q. . (2021). Hydrogen-air explosion with concentration gradients in a cubic enclosure. Process Safety and Environmental Protection, 151, 141-150+. https://doi.org/10.1016/j.psep.2021.05.003 (Original work published 2025)

Experimental investigation of spherical-flame acceleration in lean hydrogen-air mixtures

Bauwens, C. R. L., Bergthorson, J. M., & Dorofeev, S. B. (2017). Experimental investigation of spherical-flame acceleration in lean hydrogen-air mixtures. International Journal of Hydrogen Energy, 42(11), 7691-7697+. https://doi.org/10.1016/j.ijhydene.2016.05.028 (Original work published)
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