Surface and snowdrift sublimation at Princess Elisabeth station, East Antarctica

Publication date

2012

Authors

Thiery, W.
Gorodetskaya, I.V.
Bintanja, R.ISNI 0000000359530236
van Lipzig, N.P.M.
Van Den Broeke, Michiel R.ORCID 0000-0003-4662-7565ISNI 0000000389564445
Reijmer, CarleenORCID 0000-0001-8299-3883ISNI 0000000392002072
Kuipers Munneke, PeterISNI 0000000392156952

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Abstract

In the near-coastal regions of Antarctica, a significant fraction of the snow precipitating onto the surface is removed again through sublimation – either directly from the surface or from drifting snow particles. Meteorological observations from an Automatic Weather Station (AWS) near the Belgian research station Princess Elisabeth in Dronning Maud Land, East-Antarctica, are used to study surface and snowdrift sublimation and to assess their impacts on both the surface mass balance and the surface energy balance during 2009 and 2010. Comparison to three other AWSs in Dronning Maud Land with 11 to 13 yr of observations shows that sublimation has a significant influence on the surface mass balance at katabatic locations by removing 10–23% of their total precipitation, but at the same time reveals anomalously low surface and snowdrift sublimation rates at Princess Elisabeth (17mmw.e. yr−1 compared to 42mmw.e. yr−1 at Svea Cross and 52mmw.e. yr−1 at Wasa/Aboa). This anomaly is attributed to local topography, which shields the station from strong katabatic influence, and, therefore, on the one hand allows for a strong surface inversion to persist throughout most of the year and on the other hand causes a lower probability of occurrence of intermediately strong winds. This wind speed class turns out to contribute most to the total snowdrift sublimation mass flux, given its ability to lift a high number of particles while still allowing for considerable undersaturation.

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Thiery, W, Gorodetskaya, I V, Bintanja, R, van Lipzig, N P M, van den Broeke, M R, Reijmer, C H & Kuipers Munneke, P 2012, 'Surface and snowdrift sublimation at Princess Elisabeth station, East Antarctica', The Cryosphere, vol. 6, pp. 841-857. https://doi.org/10.5194/tc-6-841-2012