Articles | Volume 9, issue 4
https://doi.org/10.5194/tc-9-1373-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/tc-9-1373-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Comparison between observed and simulated aeolian snow mass fluxes in Adélie Land, East Antarctica
University of Grenoble Alpes, LGGE, 38041 Grenoble, France
CNRS, LGGE, UMR5183, 38401 Grenoble, France
University of Grenoble Alpes, IRSTEA, 38041 Grenoble, France
IRSTEA, UR ETNA, 38402 Saint-Martin d'Hères, France
A. Trouvilliez
University of Grenoble Alpes, LGGE, 38041 Grenoble, France
CNRS, LGGE, UMR5183, 38401 Grenoble, France
University of Grenoble Alpes, IRSTEA, 38041 Grenoble, France
IRSTEA, UR ETNA, 38402 Saint-Martin d'Hères, France
Cerema-DTecEMF, 29280 Plouzané, France
H. Gallée
University of Grenoble Alpes, LGGE, 38041 Grenoble, France
CNRS, LGGE, UMR5183, 38401 Grenoble, France
V. Favier
University of Grenoble Alpes, LGGE, 38041 Grenoble, France
CNRS, LGGE, UMR5183, 38401 Grenoble, France
F. Naaim-Bouvet
University of Grenoble Alpes, IRSTEA, 38041 Grenoble, France
IRSTEA, UR ETNA, 38402 Saint-Martin d'Hères, France
C. Genthon
University of Grenoble Alpes, LGGE, 38041 Grenoble, France
CNRS, LGGE, UMR5183, 38401 Grenoble, France
C. Agosta
University of Liège, Department of Geography, 4020 Liège, Belgium
L. Piard
University of Grenoble Alpes, LGGE, 38041 Grenoble, France
CNRS, LGGE, UMR5183, 38401 Grenoble, France
H. Bellot
University of Grenoble Alpes, IRSTEA, 38041 Grenoble, France
IRSTEA, UR ETNA, 38402 Saint-Martin d'Hères, France
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- Katabatic winds diminish precipitation contribution to the Antarctic ice mass balance J. Grazioli et al. 10.1073/pnas.1707633114
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42 citations as recorded by crossref.
- Observations of Drifting Snow Using FlowCapt Sensors in the Southern Altai Mountains, Central Asia W. Zhang et al. 10.3390/w14060845
- Atmospheric circulation-constrained model sensitivity recalibrates Arctic climate projections D. Topál & Q. Ding 10.1038/s41558-023-01698-1
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- Effects of ocean mesoscale eddies on atmosphere–sea ice–ocean interactions off Adélie Land, East Antarctica P. Huot et al. 10.1007/s00382-021-06115-x
- Using Sequence Analysis to Quantify How Strongly Life Courses Are Linked T. Liao 10.15195/v8.a3
- Drifting-snow statistics from multiple-year autonomous measurements in Adélie Land, East Antarctica C. Amory 10.5194/tc-14-1713-2020
- Sensitivity of the current Antarctic surface mass balance to sea surface conditions using MAR C. Kittel et al. 10.5194/tc-12-3827-2018
- The Effect of Foehn‐Induced Surface Melt on Firn Evolution Over the Northeast Antarctic Peninsula R. Datta et al. 10.1029/2018GL080845
- Alexander Tall Tower! A Study of the Boundary Layer on the Ross Ice Shelf, Antarctica M. Mateling et al. 10.1175/JAMC-D-17-0017.1
- Brief communication: Impact of the recent atmospheric circulation change in summer on the future surface mass balance of the Greenland Ice Sheet A. Delhasse et al. 10.5194/tc-12-3409-2018
- Blowing snow detection from ground-based ceilometers: application to East Antarctica A. Gossart et al. 10.5194/tc-11-2755-2017
- Brief communication: Two well-marked cases of aerodynamic adjustment of sastrugi C. Amory et al. 10.5194/tc-10-743-2016
- Diverging future surface mass balance between the Antarctic ice shelves and grounded ice sheet C. Kittel et al. 10.5194/tc-15-1215-2021
- Understanding the drivers of near-surface winds in Adélie Land, East Antarctica C. Davrinche et al. 10.5194/tc-18-2239-2024
- Seasonal Variations in Drag Coefficient over a Sastrugi-Covered Snowfield in Coastal East Antarctica C. Amory et al. 10.1007/s10546-017-0242-5
- Effect of prescribed sea surface conditions on the modern and future Antarctic surface climate simulated by the ARPEGE atmosphere general circulation model J. Beaumet et al. 10.5194/tc-13-3023-2019
- Grand Challenges in Cryospheric Sciences: Toward Better Predictability of Glaciers, Snow and Sea Ice R. Hock et al. 10.3389/feart.2017.00064
- Antarctica-Regional Climate and Surface Mass Budget V. Favier et al. 10.1007/s40641-017-0072-z
- Introducing CRYOWRF v1.0: multiscale atmospheric flow simulations with advanced snow cover modelling V. Sharma et al. 10.5194/gmd-16-719-2023
- Understanding snow bedform formation by adding sintering to a cellular automata model V. Sharma et al. 10.5194/tc-13-3239-2019
- Observations and simulations of new snow density in the drifting snow-dominated environment of Antarctica N. Wever et al. 10.1017/jog.2022.102
- Acoustic methods in physical geography: Applications and future development D. Dunkerley 10.1177/03091333221111480
- Sensitivity of the surface energy budget to drifting snow as simulated by MAR in coastal Adelie Land, Antarctica L. Le Toumelin et al. 10.5194/tc-15-3595-2021
- Estimation of the Antarctic surface mass balance using the regional climate model MAR (1979–2015) and identification of dominant processes C. Agosta et al. 10.5194/tc-13-281-2019
- Case Study of Blowing Snow Impacts on the Antarctic Peninsula Lower Atmosphere and Surface Simulated With a Snow/Ice Enhanced WRF Model L. Luo et al. 10.1029/2020JD033936
- A 60-year ice-core record of regional climate from Adélie Land, coastal Antarctica S. Goursaud et al. 10.5194/tc-11-343-2017
- Spatial and Temporal Variability of Glacier Surface Velocities and Outlet Areas on James Ross Island, Northern Antarctic Peninsula S. Lippl et al. 10.3390/geosciences9090374
- Coastal water vapor isotopic composition driven by katabatic wind variability in summer at Dumont d'Urville, coastal East Antarctica C. Bréant et al. 10.1016/j.epsl.2019.03.004
- Flow and deposition measurement of foam beads in a closed re-circulating wind tunnel for snowdrift modelling G. Kumar et al. 10.1016/j.flowmeasinst.2019.101687
- Katabatic winds diminish precipitation contribution to the Antarctic ice mass balance J. Grazioli et al. 10.1073/pnas.1707633114
- NHM–SMAP: spatially and temporally high-resolution nonhydrostatic atmospheric model coupled with detailed snow process model for Greenland Ice Sheet M. Niwano et al. 10.5194/tc-12-635-2018
- Statistical Classification of Self‐Organized Snow Surfaces K. Kochanski et al. 10.1029/2018GL077616
- Moisture transport in observations and reanalyses as a proxy for snow accumulation in East Antarctica A. Dufour et al. 10.5194/tc-13-413-2019
- Importance of Blowing Snow During Cloudy Conditions in East Antarctica: Comparison of Ground-Based and Space-Borne Retrievals Over Ice-Shelf and Mountain Regions A. Gossart et al. 10.3389/feart.2020.00240
- Brief communication: Evaluation of the near-surface climate in ERA5 over the Greenland Ice Sheet A. Delhasse et al. 10.5194/tc-14-957-2020
- Modeling Snow Saltation: The Effect of Grain Size and Interparticle Cohesion D. Melo et al. 10.1029/2021JD035260
- Understanding snow saltation parameterizations: lessons from theory, experiments and numerical simulations D. Melo et al. 10.5194/tc-18-1287-2024
- Performance of MAR (v3.11) in simulating the drifting-snow climate and surface mass balance of Adélie Land, East Antarctica C. Amory et al. 10.5194/gmd-14-3487-2021
- Discrepancies between observations and climate models of large-scale wind-driven Greenland melt influence sea-level rise projections D. Topál et al. 10.1038/s41467-022-34414-2
- Dynamics of the snow grain size in a windy coastal area of Antarctica from continuous in situ spectral-albedo measurements S. Arioli et al. 10.5194/tc-17-2323-2023
- Interannual variability of summer surface mass balance and surface melting in the Amundsen sector, West Antarctica M. Donat-Magnin et al. 10.5194/tc-14-229-2020
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