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BibEntryCargo > Journal : Journal of Coastal Research or The Cryosphere & Volume : 5 or 8 or 11

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Firstname:
Albrecht, T.; Levermann, A.; (1) · Albrecht, T.; Martin, M.; Haseloff, M.; Winkelmann, R.; Levermann, A.; (1) · Bellaire, S.; Jamieson, J. B.; Fierz, C.; (1) · Bennetts, Luke G.; O'Farrell, Siobhan; Uotila, Petteri; (1) · Bernales, Jorge; Rogozhina, Irina; Greve, Ralf; Thomas, Maik; (1) · Borge, Amund F.; Westermann, Sebastian; Solheim, Ingvild; Etzelmüller, Bernd; (1) · Daanen, R. P.; Ingeman-Nielsen, T.; Marchenko, S. S.; Romanovsky, V. E.; Foged, N.; Stendel, M.; Christensen, J. H.; Hornbech Svendsen, K.; (1) · Edwards, T. L.; Fettweis, X.; Gagliardini, O.; Gillet-Chaulet, F.; Goelzer, H.; Gregory, J. M.; Hoffman, M.; Huybrechts, P.; Payne, A. J.; Perego, M.; Price, S.; Quiquet, A.; Ritz, C.; (1) · Haberkorn, Anna; Wever, Nander; Hoelzle, Martin; Phillips, Marcia; Kenner, Robert; Bavay, Mathias; Lehning, Michael; (1) · Larour, E.; Utke, J.; Csatho, B.; Schenk, A.; Seroussi, H.; Morlighem, M.; Rignot, E.; Schlegel, N.; Khazendar, A.; (1) · Logan, Liz C.; Lavier, Luc L.; Choi, Eunseo; Tan, Eh; Catania, Ginny A.; (1) · Martin, M. A.; Winkelmann, R.; Haseloff, M.; Albrecht, T.; Bueler, E.; Khroulev, C.; Levermann, A.; (1) · Marty, Christoph; Schlögl, Sebastian; Bavay, Mathias; Lehning, Michael; (1) · Mott, R.; Egli, L.; Grünewald, T.; Dawes, N.; Manes, C.; Bavay, M.; Lehning, M.; (1) · Petty, A. A.; Holland, P. R.; Feltham, D. L.; (2) · Robinson, A.; Goelzer, H.; (1) · Rogozhina, I.; Rau, D.; (1) · Seguinot, J.; Khroulev, C.; Rogozhina, I.; Stroeven, A. P.; Zhang, Q.; (1) · Seroussi, H.; Morlighem, M.; Larour, E.; Rignot, E.; Khazendar, A.; (1) · Sørensen, L. S.; Simonsen, S. B.; Nielsen, K.; Lucas-Picher, P.; Spada, G.; Adalgeirsdottir, G.; Forsberg, R.; Hvidberg, C. S.; (1) · Wever, N.; Fierz, C.; Mitterer, C.; Hirashima, H.; Lehning, M.; (1) · Winkelmann, R.; Martin, M. A.; Haseloff, M.; Albrecht, T.; Bueler, E.; Khroulev, C.; Levermann, A.; (1)
Title:
Brief communication: Impacts of ocean-wave-induced breakup of Antarctic sea ice via thermodynamics in a stand-alone version of the CICE sea-ice model (1) · Comparison of hybrid schemes for the combination of shallow approximations in numerical simulations of the Antarctic Ice Sheet (1) · Distributed snow and rock temperature modelling in steep rock walls using Alpine3D (1) · Effect of uncertainty in surface mass balance–elevation feedback on projections of the future sea level contribution of the Greenland ice sheet (1) · Forcing the snow-cover model SNOWPACK with forecasted weather data (1) · Fracture-induced softening for large-scale ice dynamics (1) · How much can we save? Impact of different emission scenarios on future snow cover in the Alps (1) · Hydrostatic grounding line parameterization in ice sheet models (1) · Inferred basal friction and surface mass balance of the Northeast Greenland Ice Stream using data assimilation of ICESat (Ice Cloud and land Elevation Satellite) surface altimetry and ISSM (Ice Sheet System Model) (1) · Mass balance of the Greenland ice sheet (2003–2008) from ICESat data – the impact of interpolation, sampling and firn density (1) · Micrometeorological processes driving snow ablation in an Alpine catchment (1) · Parameterization for subgrid-scale motion of ice-shelf calving fronts (1) · Permafrost degradation risk zone assessment using simulation models (1) · Sea ice and the ocean mixed layer over the Antarctic shelf seas (2) · Semi-brittle rheology and ice dynamics in DynEarthSol3D (1) · Solving Richards Equation for snow improves snowpack meltwater runoff estimations in detailed multi-layer snowpack model (1) · Strong degradation of palsas and peat plateaus in northern Norway during the last 60 years (1) · The Potsdam Parallel Ice Sheet Model (PISM-PIK) – Part 1: Model description (1) · The Potsdam Parallel Ice Sheet Model (PISM-PIK) – Part 2: Dynamic equilibrium simulation of the Antarctic ice sheet (1) · The effect of climate forcing on numerical simulations of the Cordilleran ice sheet at the Last Glacial Maximum (1) · The importance of insolation changes for paleo ice sheet modeling (1) · Vital role of daily temperature variability in surface mass balance parameterizations of the Greenland Ice Sheet (1)
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