S. Bonelli, S. Charbit, M. Kageyama, M. Woillez, G. Ramstein et al., Investigating the evolution of major Northern Hemisphere ice sheets during the last glacialinterglacial cycle, Clim. Past, vol.55194, pp.329-34510, 2009.

J. E. Box, D. H. Bromwich, B. A. Veenhuis, L. Bai, J. C. Stroeve et al., Greenland Ice Sheet Surface Mass Balance Variability (1988???2004) from Calibrated Polar MM5 Output*, Journal of Climate, vol.19, issue.12, pp.2783-280010, 1988.
DOI : 10.1175/JCLI3738.1

P. Braconnot, C. Marzin, L. Grégoire, E. Mosquet, M. et al., Monsoon response to changes in Earth's orbital parameters: comparisons between simulations of the Eemian and of the Holocene, Clim. Past, vol.45194, pp.281-29410, 2008.

R. J. Braithwaite, Calculation of degree-days for glacier?climate research, Z. Gletscherkd. Glazialgeol, vol.20, pp.1-20, 1984.

E. Brun, E. Martin, V. Simon, C. Gendre, and C. Coléou, Abstract, Journal of Glaciology, vol.4, issue.121, pp.333-342, 1989.
DOI : 10.1029/JC079i030p04527

E. Brun, P. David, M. Sudul, and G. Brunot, Abstract, Journal of Glaciology, vol.13, issue.128, pp.13-22, 1992.
DOI : 10.1029/RG020i001p00067

R. Calov, A. Ganopolski, M. Claussen, V. Petoukhov, and R. Greve, Transient simulation of the last glacial inception. Part I: glacial inception as a bifurcation in the climate system, Climate Dynamics, vol.31, issue.(12, pp.545-56110, 2005.
DOI : 10.1007/s00382-005-0007-6

J. Cappelen, E. V. Laursen, P. V. Jørgensen, and C. Kern-hansen, DMI Monthly Climate Data Collection 1768?2009, Denmark, The FaroeIslands and Greenland, DMI, p.26, 2010.

J. L. Chen, C. R. Wilson, and B. D. Tapley, Satellite Gravity Measurements Confirm Accelerated Melting of Greenland Ice Sheet, Science, vol.313, issue.5795, 1958.
DOI : 10.1126/science.1129007

H. Douville, J. F. Royer, and J. F. Mahfouf, A new snow parameterization for the Météo-France climate model, Clim. Dynam, vol.12, pp.21-3510, 1995.

J. Ettema, M. R. Van-den-broeke, E. Van-meijgaard, W. J. Van-de-berg, J. L. Bamber et al., Higher surface mass balance of the Greenland ice sheet revealed by highresolution climate modeling, Geophys. Res. Lett, pp.10-1029, 2009.

J. Ettema, M. R. Van-den-broeke, E. Van-meijgaard, W. J. Van-de-berg, J. E. Box et al., Climate of the Greenland ice sheet using a high-resolution climate model ? Part 1: Evaluation, The Cryosphere, pp.511-52710, 2010.

X. Fettweis, Reconstruction of the 1979?2006 Greenland ice sheet surface mass balance using the regional climate model MAR, The Cryosphere, pp.21-40, 2007.

X. Fettweis, M. Tedesco, M. Van-den-broeke, and J. Ettema, Melting trends over the Greenland ice sheet) from spaceborne microwave data and regional climate models, The Cryosphere, pp.359-37510, 1958.

J. G. Fyke, A. J. Weaver, D. Pollard, M. Eby, L. Carter et al., A new coupled ice sheet/climate model: description and sensitivity to model physics under Eemian, Last Glacial Maximum, late Holocene and modern climate conditions, Geosci. Model Dev, vol.45194, pp.117-13610, 2011.

H. Gallée and P. G. Duynkerke, Air-snow interactions and the surface energy and mass balance over the melting zone of west Greenland during the Greenland Ice Margin Experiment, Journal of Geophysical Research: Atmospheres, vol.42, issue.3, pp.13813-13824, 1997.
DOI : 10.1029/96JD03358

H. Gallée, J. P. Van-ypersele, T. Fichefet, C. Tricot, and A. Berger, Simulation of the last glacial cycle by a coupled, sectorially averaged climate???ice sheet model: 1. The climate model, Journal of Geophysical Research, vol.44, issue.D7, pp.13139-1316110, 1991.
DOI : 10.1029/91JD00874

H. Gallée, G. Guyomarc-'h, and E. Brun, Impact of snow drift on the antarctic ice sheet surface mass balance: possible sensitivity to snow-surface properties, Bound.-Lay, Meteorol, vol.99, pp.1-1910, 2001.

A. Ganopolski and A. Robinson, Palaeoclimate: The past is not the future, Nature Geoscience, vol.59, issue.10, pp.661-663, 2011.
DOI : 10.1029/2009GL038110

A. Ganopolski, R. Calov, and M. Claussen, Simulation of the last glacial cycle with a coupled climate ice-sheet model of intermediate complexity, Clim. Past, vol.65194, issue.6, pp.229-24410, 2010.

H. J. Punge, Modelling snow accumulation on Greenland in a GCM doi:10, 2010.

E. Hanna, P. Huybrechts, J. Cappelen, K. Steffen, R. C. Bales et al., Greenland Ice Sheet surface mass balance 1870 to 2010 based on Twentieth Century Reanalysis, and links with global climate forcing, Journal of Geophysical Research: Atmospheres, vol.57, issue.D1, p.2412110, 1029.
DOI : 10.1029/2011JD016387

M. M. Helsen, R. S. Van-de-wal, M. R. Van-den-broeke, W. J. Van-de-berg, and J. Oerlemans, Coupling of climate models and ice sheet models by surface mass balance gradients: application to the Greenland Ice Sheet, The Cryosphere, vol.6, issue.2, pp.255-27210, 2012.
DOI : 10.5194/tc-6-255-2012

F. Hourdin, I. Musat, S. Bony, P. Braconnot, F. Codron et al., The LMDZ4 general circulation model: climate performance and sensitivity to parametrized physics with emphasis on tropical convection, Climate Dynamics, vol.19, issue.16, pp.787-813, 2006.
DOI : 10.1007/s00382-006-0158-0

URL : https://hal.archives-ouvertes.fr/hal-00113202

P. Huybrechts, Sea-level changes at the LGM from ice-dynamic reconstructions of the Greenland and Antarctic ice sheets during the glacial cycles, Quaternary Science Reviews, vol.21, issue.1-3, pp.203-23110, 2002.
DOI : 10.1016/S0277-3791(01)00082-8

M. Khodri, M. A. Cane, G. Kukla, J. Gavin, and P. Braconnot, The impact of precession changes on the Arctic climate during the last interglacial???glacial transition, Earth and Planetary Science Letters, vol.236, issue.1-2, pp.285-304, 2005.
DOI : 10.1016/j.epsl.2005.05.011

R. E. Kopp, F. J. Simons, J. X. Mitrovica, A. C. Maloof, and M. Oppenheimer, Probabilistic assessment of sea level during the last interglacial stage, Nature, vol.25, issue.7275, pp.863-86710, 2009.
DOI : 10.1038/nature08686

G. Krinner, C. Genthon, Z. Li, L. Van, and P. , Studies of the Antarctic climate with a stretched-grid general circulation model, Journal of Geophysical Research: Atmospheres, vol.3, issue.5, pp.13731-1374510, 1997.
DOI : 10.1029/96JD03356

K. Munneke, P. K. Van-den-broeke, M. R. Lenaerts, J. T. Flanner, M. G. Gardner et al., A new albedo parameterization for use in climate models over the Antarctic ice sheet, J. Geophys. Res, vol.116, pp.511410-1029, 2011.

T. Kuramoto, K. Goto-azuma, M. Hirabayashi, T. Miyake, H. Motoyama et al., Seasonal variations of snow chemistry at NEEM, Greenland, Annals of Glaciology, vol.52, issue.58, pp.193-20010, 2011.
DOI : 10.3189/172756411797252365

F. Lefebre, H. Gallée, J. Van-ypersele, and P. Huybrechts, Modelling of large-scale melt parameters with a regional climate model in south Greenland during the 1991 melt season, Annals of Glaciology, vol.35, issue.1, pp.391-39710, 2002.
DOI : 10.3189/172756402781816889

F. Lefebre, H. Gallée, J. Van-ypersele, and W. Greuell, Modeling of snow and ice melt at ETH Camp (West Greenland): A study of surface albedo, Journal of Geophysical Research, vol.42, issue.D8, pp.423110-1029, 2003.
DOI : 10.1029/2001JD001160

F. Lefebre, X. Fettweis, H. Gallée, J. Van-ypersele, P. Marbaix et al., Evaluation of a high-resolution regional climate simulation over Greenland, Climate Dynamics, vol.9, issue.143, pp.99-116, 2005.
DOI : 10.1007/s00382-005-0005-8

URL : https://hal.archives-ouvertes.fr/insu-00374621

M. Lynch-stieglitz, J. Giss-gcm, and . Climate, The Development and validation of a simple snow model for the, pp.1842-1855, 1994.

I. Marsiat, Simulation of the Northern Hemisphere continental ice sheets over the last glacial-interglacial cycle: experiments with a latitude-longitude vertically integrated ice sheet model coupled to a zonally averaged climate model, pp.59-98, 1994.

T. L. Mote, Greenland surface melt trends, Geophys. Res. Lett, pp.10-1029, 1973.

B. L. Otto-bliesner, S. J. Marshall, J. T. Overpeck, G. H. Miller, and A. Hu, Simulating Arctic Climate Warmth and Icefield Retreat in the Last Interglaciation, Science, vol.311, issue.5768, pp.1751-1753, 2006.
DOI : 10.1126/science.1120808

J. T. Overpeck, B. L. Otto-bliesner, G. H. Miller, D. R. Muhs, R. B. Alley et al., Paleoclimatic Evidence for Future Ice-Sheet Instability and Rapid Sea-Level Rise, Science, vol.311, issue.5768, pp.311-1747, 2006.
DOI : 10.1126/science.1115159

A. Quiquet, H. J. Punge, C. Ritz, X. Fettweis, H. Gallée et al., Sensitivity of a Greenland ice sheet model to atmospheric forcing fields, The Cryosphere, pp.999-101810, 2012.

N. Reeh, Parameterization of melt rate and surface temperature on the Greenland ice sheet, Polarforschung, vol.59, pp.113-128, 1991.

J. K. Ridley, P. Huybrechts, J. M. Gregory, and J. A. Lowe, Climate, Journal of Climate, vol.18, issue.17, pp.3409-342710, 2005.
DOI : 10.1175/JCLI3482.1

URL : https://hal.archives-ouvertes.fr/insu-00653744

E. Rignot, J. E. Box, E. Burgess, H. , and E. , Mass balance of the Greenland ice sheet from, Geophys. Res. Lett, pp.10-1029, 1958.

A. Robinson, R. Calov, and A. Ganopolski, Greenland ice sheet model parameters constrained using simulations of the Eemian Interglacial, Clim. Past, vol.75194, issue.10, pp.381-396, 2011.

A. G. Slater, C. A. Schlosser, C. E. Desborough, A. J. Pitman, A. Henderson-sellers et al., The Representation of snow in land surface schemes, 002<0007:TROSIL>2.0.CO, pp.7-2510, 2001.

K. Steffen and J. Box, Surface climatology of the Greenland Ice Sheet: Greenland Climate Network 1995-1999, Journal of Geophysical Research: Atmospheres, vol.1386, issue.149, pp.33951-3396410, 1995.
DOI : 10.1029/2001JD900161

K. Steffen, J. Box, W. Abdalati, W. J. Berg, M. Van-den-broeke et al., Significant contribution of insolation to Eemian melting of the Greenland ice sheet Partitioning recent Greenland mass loss, Greenland Climate Network: GC-Net US Army Cold regions Research and Engineering Laboratory., and Smeets, P.: Temperature thresholds for degree-day modelling of Greenland ice sheet melt rates, pp.96-123, 1029.

I. Velicogna, Increasing rates of ice mass loss from the Greenland and Antarctic ice sheets revealed by GRACE, Geophysical Research Letters, vol.33, issue.19, pp.10-1029, 2009.
DOI : 10.1029/2009GL040222

G. Vettoretti and W. R. Peltier, Post-Eemian Glacial Inception. Part I: The Impact of Summer Seasonal Temperature Bias, Journal of Climate, vol.16, issue.6, pp.889-911, 2003.
DOI : 10.1175/1520-0442(2003)016<0889:PEGIPI>2.0.CO;2

M. Vizcaíno, U. Mikolajewicz, J. Jungclaus, and G. Schurgers, Climate modification by future ice sheet changes and consequences for ice sheet mass balance, Climate Dynamics, vol.5, issue.23, pp.301-324, 2010.
DOI : 10.1007/s00382-009-0591-y

L. M. Wake, P. Huybrechts, J. E. Box, E. Hanna, I. Janssens et al., Surface mass-balance changes of the Greenland ice sheet since 1866, Annals of Glaciology, vol.50, issue.50, pp.178-18410, 2009.
DOI : 10.3189/172756409787769636

B. Wouters, D. Chambers, and E. Schrama, GRACE observes small-scale mass loss in Greenland, Geophysical Research Letters, vol.51, issue.175, pp.10-1029, 2008.
DOI : 10.1029/2008GL034816