An Integrated View of Greenland Ice Sheet Mass Changes Based on Models and Satellite Observations
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René Forsberg | Jan Wuite | Thomas Nagler | Sebastian B. Simonsen | Ruth Mottram | Synne Høyer Svendsen | Valentina R. Barletta | Louise Sandberg Sørensen | Andreas Groh | Martin Horwath | Job Rosier | Anne Solgaard | Christine S. Hvidberg | R. Forsberg | T. Nagler | V. Barletta | C. Hvidberg | A. Groh | R. Mottram | M. Horwath | L. Sørensen | S. Simonsen | J. Wuite | A. Solgaard | S. H. Svendsen | Job Rosier | Job F. Rosier
[1] Sivaprasad Gogineni,et al. A new ice thickness and bed data set for the Greenland ice sheet: 1. Measurement, data reduction, and errors , 2001 .
[2] B. Scheuchl,et al. Fast retreat of Zachariæ Isstrøm, northeast Greenland , 2015, Science.
[3] Robert N. Swift,et al. Greenland Ice Sheet: Increased coastal thinning , 2004 .
[4] Ron Kwok,et al. Ice flow of Humboldt, Petermann and Ryder Gletscher, northern Greenland , 1999, Journal of Glaciology.
[5] M. R. van den Broeke,et al. Partitioning Recent Greenland Mass Loss , 2009, Science.
[6] M. R. van den Broeke,et al. Higher surface mass balance of the Greenland ice sheet revealed by high‐resolution climate modeling , 2009 .
[7] Maik Thomas,et al. Melting at the base of the Greenland ice sheet explained by Iceland hotspot history , 2016 .
[8] W. Peltier,et al. Space geodesy constrains ice age terminal deglaciation: The global ICE‐6G_C (VM5a) model , 2015 .
[9] Willem Jan van de Berg,et al. A high‐resolution record of Greenland mass balance , 2016 .
[10] Søren Rysgaard,et al. Quantifying Energy and Mass Fluxes Controlling Godthåbsfjord Freshwater Input in a 5-km Simulation (1991–2012)*,+ , 2015 .
[11] J. Wahr,et al. Computations of the viscoelastic response of a 3-D compressible Earth to surface loading: an application to Glacial Isostatic Adjustment in Antarctica and Canada , 2012 .
[12] Jamin S. Greenbaum,et al. Basal channels drive active surface hydrology and transverse ice shelf fracture , 2018, Science Advances.
[13] Xavier Fettweis,et al. Estimating the Greenland ice sheet surface mass balance contribution to future sea level rise using the regional atmospheric climate model MAR , 2012 .
[14] M. Watkins,et al. The gravity recovery and climate experiment: Mission overview and early results , 2004 .
[15] Lisa Bengtsson,et al. The HARMONIE-AROME Model Configuration in the ALADIN-HIRLAM NWP System , 2017 .
[16] Ed Bueler,et al. An enthalpy formulation for glaciers and ice sheets , 2012, Journal of Glaciology.
[17] S. Shyam Sunder,et al. Creep of Polycrystalline Ice , 1990 .
[18] Eric Rignot,et al. Channelized bottom melting and stability of floating ice shelves , 2008 .
[19] Helene Seroussi,et al. Recent Progress in Greenland Ice Sheet Modelling , 2017, Current Climate Change Reports.
[20] M. R. van den Broeke,et al. Clouds enhance Greenland ice sheet meltwater runoff , 2016, Nature Communications.
[21] Leslie Morland,et al. Plane and Radial Ice-Shelf Flow with Prescribed Temperature Profile , 1987 .
[22] Sebastian B. Simonsen,et al. Assessing a multilayered dynamic firn-compaction model for Greenland with ASIRAS radar measurements , 2013, Journal of Glaciology.
[23] Jens Hesselbjerg Christensen,et al. Role of Model Initialisation for Projections of 21st Century Greenland Ice Sheet Mass Loss , 2014 .
[24] L Mayer,et al. BedMachine v3: Complete Bed Topography and Ocean Bathymetry Mapping of Greenland From Multibeam Echo Sounding Combined With Mass Conservation , 2017, Geophysical research letters.
[25] Louise Sørensen,et al. Greenland and Antarctica Ice Sheet Mass Changes and Effects on Global Sea Level , 2017, Surveys in Geophysics.
[26] Kalle Eerola,et al. Twenty-One Years of Verification from the HIRLAM NWP System , 2013 .
[27] Allan Aasbjerg Nielsen,et al. Acceleration of the Greenland ice sheet mass loss as observed by GRACE: Confidence and sensitivity , 2013 .
[28] Jeanine Weekes Schroer,et al. The Finite String Newsletter Abstracts of Current Literature Glisp User's Manual , 2022 .
[29] M. Engdahl,et al. Grounding line migration from 1992 to 2011 on Petermann Glacier, North-West Greenland , 2016, Journal of Glaciology.
[30] Douglas I. Benn,et al. Testing crevasse-depth models: a field study at Breiðamerkurjökull, Iceland , 2009, Journal of Glaciology.
[31] Harihar Rajaram,et al. Glacier crevasses: Observations, models, and mass balance implications , 2016 .
[32] M. A. Dembitskaya,et al. Cyclone Activity in the Arctic From an Ensemble of Regional Climate Models (Arctic CORDEX) , 2016 .
[33] Eric Rignot,et al. Undercutting of marine‐terminating glaciers in West Greenland , 2015, Geophysical research letters.
[34] Son V. Nghiem,et al. The extreme melt across the Greenland ice sheet in 2012 , 2012 .
[35] Jesper Heile Christensen,et al. Surface mass balance of the Greenland icesheet in the regional climate model HIRHAM5:Present state and future prospects , 2017 .
[36] Baptiste Vandecrux,et al. Liquid Water Flow and Retention on the Greenland Ice Sheet in the Regional Climate Model HIRHAM5: Local and Large-Scale Impacts , 2017, Front. Earth Sci..
[37] Martin Jakobsson,et al. Capabilities and limitations of numerical ice sheet models : a discussion for Earth-scientists and modelers , 2011 .
[38] Colin J. Gleason,et al. Direct measurements of meltwater runoff on the Greenland ice sheet surface , 2017, Proceedings of the National Academy of Sciences.
[39] Ian Joughin,et al. Seasonal to multiyear variability of glacier surface velocity, terminus position, and sea ice/ice mélange in northwest Greenland , 2015 .
[40] Kirill S. Khvorostovsky,et al. Merging and Analysis of Elevation Time Series Over Greenland Ice Sheet From Satellite Radar Altimetry , 2012, IEEE Transactions on Geoscience and Remote Sensing.
[41] Adrian Luckman,et al. Glacier Calving in Greenland , 2017, Current Climate Change Reports.
[42] Mark R. Anderson,et al. Variations in snowpack melt on the Greenland ice sheet based on passive-microwave measurements , 1995, Journal of Glaciology.
[43] H. Fricker,et al. Interannual changes of the floating ice shelf of Petermann Gletscher, North Greenland, from 2000 to 2012 , 2014 .
[44] Martin Truffer,et al. Complex Greenland outlet glacier flow captured , 2016, Nature Communications.
[45] Hyung-Sup Jung,et al. Intercomparison and Validation of SAR-Based Ice Velocity Measurement Techniques within the Greenland Ice Sheet CCI Project , 2018, Remote. Sens..
[46] A. Vieli,et al. A physically based calving model applied to marine outlet glaciers and implications for the glacier dynamics , 2010, Journal of Glaciology.
[47] Andreas Groh,et al. The method of tailored sensitivity kernels for GRACE mass change estimates , 2016 .
[48] Helmut Rott,et al. The Sentinel-1 Mission: New Opportunities for Ice Sheet Observations , 2015, Remote. Sens..
[49] S. Swenson,et al. Accuracy of GRACE mass estimates , 2006 .
[50] Ingo Kirchner,et al. ENSO variability and atmospheric response in a global coupled atmosphere-ocean GCM , 1996 .
[51] Eric Rignot,et al. Acceleration of the contribution of the Greenland and Antarctic ice sheets to sea level rise , 2011 .
[52] William H. Lipscomb,et al. Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison , 2017 .
[53] Jason Lowe,et al. Greenland ice sheet surface mass balance: evaluating simulations and making projections with regional climate models , 2012 .
[54] Ian M. Howat,et al. On the recent contribution of the Greenland ice sheet to sea level change , 2016 .
[55] D. Benn,et al. Calving processes and the dynamics of calving glaciers , 2007 .
[56] Eric Rignot,et al. Timing and origin of recent regional ice-mass loss in Greenland , 2012 .
[57] Alun Hubbard,et al. The response of Petermann Glacier, Greenland, to large calving events, and its future stability in the context of atmospheric and oceanic warming , 2012 .
[58] Marcus E. Engdahl,et al. 25 years of elevation changes of the Greenland Ice Sheet from ERS, Envisat, and CryoSat-2 radar altimetry , 2018 .
[59] Sebastian B. Simonsen,et al. Envisat-derived elevation changes of the Greenland ice sheet, and a comparison with ICESat results in the accumulation area , 2015 .
[60] J. Wahr,et al. Acceleration of Greenland ice mass loss in spring 2004 , 2006, Nature.
[61] C. J. van der Veen,et al. Fracture mechanics approach to penetration of surface crevasses on glaciers , 1998 .
[62] Sebastian B. Simonsen,et al. Mass balance of the Greenland ice sheet (2003–2008) from ICESat data – the impact of interpolation, sampling and firn density , 2011 .
[63] Eric Rignot,et al. A Reconciled Estimate of Ice-Sheet Mass Balance , 2012, Science.
[64] Xavier Fettweis,et al. The darkening of the Greenland ice sheet: trends, drivers, and projections (1981–2100) , 2015 .
[65] Eric Rignot,et al. Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project II: Greenland , 2013, Journal of Geophysical Research: Earth Surface.
[66] Xavier Fettweis,et al. Surface mass balance model intercomparison for the Greenland ice sheet , 2012 .
[67] J. Thepaut,et al. The ERA‐Interim reanalysis: configuration and performance of the data assimilation system , 2011 .
[68] Kristian Pagh Nielsen,et al. Modelling Glaciers in the HARMONIE-AROME NWP model , 2017 .
[69] Chris R. Stokes,et al. Dynamic changes in outlet glaciers in northern Greenland from 1948 to 2015 , 2018 .
[70] Jack L. Saba,et al. Greenland ice sheet mass balance: distribution of increased mass loss with climate warming; 2003–07 versus 1992–2002 , 2011, Journal of Glaciology.
[71] F. Ticconi,et al. ESA ice sheet CCI: derivation of the optimal method for surface elevation change detection of the Greenland ice sheet – round robin results , 2015 .
[72] D. Macayeal,et al. Seasonal evolution of supraglacial lakes on a floating ice tongue, Petermann Glacier, Greenland , 2018, Annals of Glaciology.
[73] Chris R. Stokes,et al. Dynamic changes in outlet glaciers in northern Greenland from 1948 to 2015 , 2018, The Cryosphere.
[74] Louise Sandberg Sørensen,et al. Scatter of mass changes estimates at basin scale for Greenland and Antarctica , 2013 .
[75] Beate Klinger,et al. ITSG-Grace2016 - Monthly and Daily Gravity Field Solutions from GRACE , 2016 .
[76] Myoung-Jong Noh,et al. An improved mass budget for the Greenland ice sheet , 2013 .
[77] Angelika Humbert,et al. Calving Induced Speedup of Petermann Glacier , 2019, Journal of Geophysical Research: Earth Surface.
[78] Miren Vizcaino,et al. Ice sheets as interactive components of Earth System Models: progress and challenges , 2014 .
[79] Robin E. Bell,et al. Identifying Spatial Variability in Greenland's Outlet Glacier Response to Ocean Heat , 2018, Front. Earth Sci..
[80] I. Joughin,et al. High Geothermal Heat Flow, Basal Melt, and the Origin of Rapid Ice Flow in Central Greenland , 2001, Science.
[81] Ed Bueler,et al. Shallow shelf approximation as a “sliding law” in a thermomechanically coupled ice sheet model , 2008, 0810.3449.
[82] Jed Brown,et al. Exact solutions to the thermomechanically coupled shallow-ice approximation: effective tools for verification , 2007 .
[83] Louise Sandberg Sørensen,et al. Implications of changing scattering properties on Greenland ice sheet volume change from Cryosat-2 altimetry , 2017 .
[84] Jan Wuite,et al. Application of PROMICE Q‐Transect in Situ Accumulation and Ablation Measurements (2000–2017) to Constrain Mass Balance at the Southern Tip of the Greenland Ice Sheet , 2018, Journal of Geophysical Research: Earth Surface.
[85] Jason E. Box,et al. Quantifying the Surface Energy Fluxes in South Greenland during the 2012 High Melt Episodes Using In-situ Observations , 2016, Front. Earth Sci..
[86] Eric Rignot,et al. Antarctic grounding line mapping from differential satellite radar interferometry , 2011 .
[87] Anders Kusk,et al. Highly temporally resolved response to seasonal surface melt of the Zachariae and 79N outlet glaciers in northeast Greenland , 2017 .
[88] Kirill Khvorostovsky,et al. Recent Ice-Sheet Growth in the Interior of Greenland , 2005, Science.
[89] Sridhar Anandakrishnan,et al. Dilatant till facilitates ice-stream flow in northeast Greenland , 2014 .
[90] Curt H. Davis,et al. Elevation change of the Antarctic ice sheet, 1995-2000, from ERS-2 satellite radar altimetry , 2004, IEEE Transactions on Geoscience and Remote Sensing.
[91] C. Schoof. Ice sheet grounding line dynamics: Steady states, stability, and hysteresis , 2007 .
[92] R. S. W. van de Wal,et al. Evaluation of the updated regional climate model RACMO2.3: summer snowfall impact on the Greenland Ice Sheet , 2015 .