Improved representation of East Antarctic surface mass balance in a regional atmospheric climate model

Publication date

2014-10-31

Authors

van Wessem, J.M.ISNI 0000000492963006
Reijmer, C.H.ORCID 0000-0001-8299-3883ISNI 0000000392002072
Morlighem, M.
Mouginot, J.
Rignot, E.
Medley, B.
Joughin, I.
Wouters, B.ISNI 0000000080129605
Depoorter, M. A.
Bamber, J. L.

Editors

Advisors

Supervisors

Document Type

Article

License

Abstract

This study evaluates the impact of a recent upgrade in the physics package of the regional atmospheric climate model RACMO2 on the simulated surface mass balance (SMB) of the Antarctic ice sheet. The modelled SMB increases, in particular over the grounded ice sheet of East Antarctica (+44Gt a-1), with a small change in West Antarctica. This mainly results from an increase in precipitation, which is explained by changes in the cloud microphysics, including a new parameterization for ice cloud supersaturation, and changes in large-scale circulation patterns, which alter topographically forced precipitation. The spatial changes in SMB are evaluated using 3234 in situ SMB observations and ice-balance velocities, and the temporal variability using GRACE satellite retrievals. The in situ observations and balance velocities show a clear improvement of the spatial representation of the SMB in the interior of East Antarctica, which has become considerably wetter. No improvements are seen for West Antarctica and the coastal regions. A comparison of model SMB temporal variability with GRACE satellite retrievals shows no significant change in performance.

Keywords

Accumulation, Atmosphere/ice/ocean interactions, Ice and climate, Ice velocity, Surface mass budget, Earth-Surface Processes, SDG 13 - Climate Action, SDG 14 - Life Below Water

Citation

Van Wessem, J M, Reijmer, C H, Morlighem, M, Mouginot, J, Rignot, E, Medley, B, Joughin, I, Wouters, B, Depoorter, M A, Bamber, J L, Lenaerts, J T M, Van De Berg, W J, Van Den Broeke, M R & Van Meijgaard, E 2014, 'Improved representation of East Antarctic surface mass balance in a regional atmospheric climate model', Journal of Glaciology, vol. 60, no. 222, pp. 761-770. https://doi.org/10.3189/2014JoG14J051