References

[Beckmann & Goosse, 2003]

Beckmann, A., & Goosse, H. (2003). A parameterization of ice shelf–ocean interaction for climate models. Ocean Modelling, 5(2), 157-170. doi:10.1016/S1463-5003(02)00019-7

[Burgard et al., 2022]

Burgard, C., Jourdain, N.C., Reese, R., Jenkins, A., & Mathiot, P. (2022). An assessment of basal melt parameterisations for antarctic ice shelves. The Cryosphere, 16, 4931–4975. doi:10.5194/tc-16-4931-2022

[DeConto & Pollard, 2016]

DeConto, R.M., & Pollard, D. (2016). Contribution of antarctica to past and future sea-level rise. Nature, 531(7596), 591-597. doi:10.1038/nature17145

[Favier et al., 2019]

Favier, L., Jourdain, N.C., Jenkins, A., Merino, N., Durand, G., Gagliardini, O., … Mathiot, P. (2019). Assessment of sub-shelf melting parameterisations using the ocean–ice-sheet coupled model nemo(v3.6)–elmer/ice(v8.3). Geoscientific Model Development, 12(6), 2255-2283. doi:10.5194/gmd-12-2255-2019

[Holland et al., 2008]

Holland, P.R., Jenkins, A., & Holland, D.M. (2008). The response of ice shelf basal melting to variations in ocean temperature. Journal of Climate, 21(11), 2558-2572. doi:10.1175/2007JCLI1909.1

[Jenkins et al., 2018]

Jenkins, A., Shoosmith, D., Dutrieux, P., Jacobs, S., Kim, T.W., Lee, S.H., … Stammerjohn, S. (2018). West antarctic ice sheet retreat in the amundsen sea driven by decadal oceanic variability. Nature Geoscience, 11, 733–738. doi:10.1038/s41561-018-0207-4

[Jourdain et al., 2020]

Jourdain, N.C., Asay-Davis, X., Hattermann, T., Straneo, F., Seroussi, H., Little, C.M., & Nowicki, S. (2020). A protocol for calculating basal melt rates in the ismip6 antarctic ice sheet projections. The Cryosphere, 14(9), 3111-3134. doi:10.5194/tc-14-3111-2020

[Lazeroms et al., 2018]

Lazeroms, W.M.J., Jenkins, A., Gudmunsson, G.H., & van de Wal, R.S.W. (2018). Modelling present-day basal melt rates for antarctic ice shelves using a parametrization of buoyant meltwater plumes. The Cryosphere, 12(1), 49-70. doi:10.5194/tc-12-49-2018

[Lazeroms et al., 2019]

Lazeroms, W.M.J., Jenkins, A., Rienstra, S.W., & van de Wal, R.S.W. (2019). An analytical derivation of ice-shelf basal melt based on the dynamics of meltwater plumes. Journal of Physical Oceanography, 49(4), 917-939. doi:10.1175/JPO-D-18-0131.1

[Pelle et al., 2019]

Pelle, T., Morlighem, M., & Bondzio, J.H. (2019). Brief communication: picop, a new ocean melt parameterization under ice shelves combining pico and a plume model. The Cryosphere, 13(3), 1043-1049. doi:10.5194/tc-13-1043-2019

[Reese et al., 2018]

Reese, R., Albrecht, T., Mengel, M., Asay-Davis, X., & Winkelmann, R. (2018). Antarctic sub-shelf melt rates via pico. The Cryosphere, 12(6), 1969-1985. doi:10.5194/tc-12-1969-2018

[NEMO Team, 2019]

NEMO Team. (2019). Nemo ocean engine. Scientific Notes of Climate Modelling Center, 27. doi:10.5281/zenodo.1464816