Climate of the Greenland ice sheet using a high-resolution climate model - Part 1: Evaluation

Publication date

2010

Authors

Ettema, J.ISNI 0000000397112860
van den Broeke, MichielORCID 0000-0003-4662-7565ISNI 0000000389564445
van Meijgaard, E.
van de Berg, Willem-JanORCID 0000-0002-8232-2040ISNI 0000000419423214
Box, J. E.
Steffen, K.

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

A simulation of 51 years (1957-2008) has been performed over Greenland using the regional atmospheric climate model (RACMO2/GR) at a horizontal grid spacing of 11 km and forced by ECMWF re-analysis products. To better represent processes affecting ice sheet surface mass balance, such as meltwater refreezing and penetration, an additional snow/ice surface module has been developed and implemented into the surface part of the climate model. The temporal evolution and climatology of the model is evaluated with in situ coastal and ice sheet atmospheric measurements of near-surface variables and surface energy balance components. The bias for the near-surface air temperature (-0.8 degrees C), specific humidity (0.1 g kg(-1)), wind speed (0.3 ms(-1)) as well as for radiative (2.5 Wm(-2) for net radiation) and turbulent heat fluxes shows that the model is in good accordance with available observations on and around the ice sheet. The modelled surface energy budget underestimates the downward longwave radiation and overestimates the sensible heat flux. Due to their compensating effect, the averaged 2m temperature bias is small and the katabatic wind circulation well captured by the model.

Keywords

Weather station data, Mass-balance, West greenland, Transfer-coefficients, Antarctica, Wind, Temperature, Reanalysis, Roughness, Runoff, SDG 13 - Climate Action

Citation

Ettema, J, van den Broeke, M R, van Meijgaard, E, van de Berg, W J, Box, J E & Steffen, K 2010, 'Climate of the Greenland ice sheet using a high-resolution climate model - Part 1 : Evaluation', The Cryosphere, vol. 4, no. 4, pp. 511-527. https://doi.org/10.5194/tc-4-511-2010