You can find a full list of my articles on my Google Scholar profile.
Griffies, S. M., Adcroft, A., Beadling, R. L., Bushuk, M., Chang, C.-Y., Drake, H. F., …, Sergienko O., et al. (2025). The GFDL-CM4X climate model hierarchy, Part I: Model description and thermal properties. Journal of Advances in Modeling Earth Systems, 17, e2024MS004861 doi:10.1029/2024MS004861
Griffies, S. M., Adcroft, A., Beadling, R. L., Bushuk, M., Chang, C.-Y., Drake, H. F., …, Sergienko O., et al. (2025). The GFDL-CM4X Climate Model Hierarchy, Part II: Case Studies. Journal of Advances in Modeling Earth Systems, 17, e2024MS004862 doi:10.1029/2024MS004862
Sergienko O. (2025). Pine Island Glacier Ice Shelf (West Antarctica) is more sensitive to climate conditions than to rheological parameters on multidecadal timescales. Phys. Rev. E doi:10.1103/n3xh-bt95.
Sergienko O. (2025). Treatment of the ice-shelf backpressure and buttressing in two horizontal dimensions. Journal of Glaciology 71, e7. doi:10.1017/jog.2024.83.
MacGregor, J. A., Colgan, W. T., Paxman, G. J. G., Tinto, K. J., Csathó, B., Darbyshire, F. A., Fahnestock, M. A., Kokfelt, T. F., MacKie, E. J., Morlighem, M. & Sergienko, O. V. (2024). Geologic Provinces Beneath the Greenland Ice Sheet Constrained by Geophysical Data Synthesis. Geophysical Research Letters 51. doi:10.1029/2023GL107357.
Sergienko O. & Wingham, D. (2024). Diverse behaviors of marine ice sheets in response to temporal variability of the atmospheric and basal conditions. Journal of Glaciology 70, e52. doi:10.1017/jog.2024.43.
Huth, A., Duddu, R., Smith, B., & Sergienko, O. (2023). Simulating the processes controlling ice-shelf rift paths using damage mechanics. Journal of Glaciology. 1915-1928. doi:10.1017/jog.2023.71.
Sergienko, O. & Haseloff, M. (2023). ‘Stable’ and ‘unstable’ are not useful descriptions of marine ice sheets in the Earth’s climate system. Journal of Glaciology 69, 1483–1499. doi:10.1017/jog.2023.40.
Coffey, N. B., MacAyeal, D. R., Copland, L., Mueller, D. R., Sergienko, O. V., Banwell, A. F. & Lai, C.-Y. (2022). Enigmatic surface rolls of the Ellesmere Ice Shelf. Journal of Glaciology, 867-878. doi:10.1017/jog.2022.3.
Harrison, M., Adcroft, A., Hallberg, R. & Sergienko O. (2022). Improved Surface Mass Balance Closure in Ocean Hindcast Simulations. Journal of Advances in Modeling Earth Systems 14, e2021MS002888. doi:10.1029/2021MS002888.
Haseloff, M. & Sergienko, O. (2022). Effects of calving and submarine melting on steady states and stability of buttressed marine ice sheets. Journal of Glaciology, 1149–1166. doi:10.1017/jog.2022.29.
Huth, A., Adcroft, A., Sergienko, O., & Khan, N. (2022). Ocean Currents Break up a Tabular Iceberg. Science Advances. 8, eabq6974. doi:10.1126/sciadv.abq6974.
Huth, A., Adcroft, A., & Sergienko, O. (2022). Parameterizing tabular-iceberg decay in an ocean model. Journal of Advances in Modeling Earth Systems. 14, e2021MS002869. doi:10.1029/2021MS002869.
Sergienko, O. (2022). Marine outlet glacier dynamics, steady states and steady-state stability. Journal ofGlaciology 68, 946–960. doi:10.1017/jog.2022.13.
Sergienko, O. (2022). No general stability conditions for marine ice-sheet grounding lines in the presence of feedbacks. Nature Communications 13, 2265. doi:10.1038/s41467-022-29892-3.
Sergienko, O. & Wingham, D. J. (2022). Bed topography and marine ice-sheet stability. Journal of Glaciology 68, 124–138. doi:10.1017/jog.2021.79.