ISSM-Publications
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References ISSM
Total peer and non-peer reviewed publications |
99 |
Journal Articles |
59 |
Books |
0 |
Book sections |
0 |
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Peer reviewed reference(s) | Year | type | Cited |
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Peer reviewed reference(s) | Year | type | Cited |
Koo, Younghyun; Rahnemoonfar, Maryam; 2024. Graph convolutional network as a fast statistical emulator for numerical ice sheet modeling. Journal of Glaciology, None1–30. 10.1017/jog.2024.93 | 2024 | Model application | 2 |
Rahnemoonfar, Maryam; Koo, Younghyun; 2024. Graph Neural Networks as Fast and High-fidelity Emulators for Finite-Element Ice Sheet Modeling. , . 10.48550/ARXIV.2402.05291 | 2024 | Model application | 1 |
Sommers, A. N.; Meyer, C. R.; Poinar, K.; Mejia, J.; Morlighem, M.; Rajaram, H.; Warburton, K. L. P.; Chu, W.; 2024. Velocity of Greenland's Helheim Glacier Controlled Both by Terminus Effects and Subglacial Hydrology With Distinct Realms of Influence. Geophysical Research Letters, 51. 10.1029/2024GL109168 | 2024 | Model application | 0 |
Cuzzone, Joshua; Romero, Matias; Marcott, Shaun A.; 2024. Modeling the timing of Patagonian Ice Sheet retreat in the Chilean Lake District from 22–10 ka. The Cryosphere, 181381–1398. 10.5194/tc-18-1381-2024 | 2024 | Model application | 1 |
Koo, Younghyun; Rahnemoonfar, Maryam; 2024. Graph Neural Network as Computationally Efficient Emulator of Ice-sheet and Sea-level System Model (ISSM). , . 10.48550/ARXIV.2407.01464 | 2024 | Model application | 0 |
McArthur, Koi; McCormack, Felicity S.; Dow, Christine F.; 2023. Basal conditions of Denman Glacier from glacier hydrology and ice dynamics modeling. The Cryosphere, 174705–4727. 10.5194/tc-17-4705-2023 | 2023 | Model application | 6 |
Fischler, Yannic; Kleiner, Thomas; Bischof, Christian; Schmiedel, Jeremie; Sayag, Roiy; Emunds, Raban; Oestreich, Lennart Frederik; Humbert, Angelika; 2023. A parallel implementation of the confined–unconfined aquifer system model for subglacial hydrology: design, verification, and performance analysis (CUAS-MPI v0.1.0). Geoscientific Model Development, 165305–5322. 10.5194/gmd-16-5305-2023 | 2023 | Model application | 2 |
Baek, Yi-Jeong; Lim, Su-Jeong; So, Byung-Dal; 2023. Development and Benchmarking of the Shallow Shelf Approximation Ice Sheet Dynamics Module. Ocean Science Journal, 58. 10.1007/s12601-023-00120-3 | 2023 | Model application | 0 |
Das, Indrani; Morlighem, Mathieu; Barnes, Jowan; Gudmundsson, G. Hilmar; Goldberg, Daniel; Dias dos Santos, Thiago; 2023. In the Quest of a Parametric Relation Between Ice Sheet Model Inferred Weertman's Sliding‐Law Parameter and Airborne Radar‐Derived Basal Reflectivity Underneath Thwaites Glacier, Antarctica. Geophysical Research Letters, 50. 10.1029/2022GL098910 | 2023 | Model application | 4 |
Schwans, Emily; Parizek, Byron R.; Alley, Richard B.; Anandakrishnan, Sridhar; Morlighem, Mathieu M.; 2023. Model insights into bed control on retreat of Thwaites Glacier, West Antarctica. Journal of Glaciology, 691241–1259. 10.1017/jog.2023.13 | 2023 | Model application | 3 |
Wilner, Joel A.; Morlighem, Mathieu; Cheng, Gong; 2023. Evaluation of four calving laws for Antarctic ice shelves. The Cryosphere, 174889–4901. 10.5194/tc-17-4889-2023 | 2023 | Model application | 2 |
Castleman, Blake A.; Schlegel, Nicole-Jeanne; Caron, Lambert; Larour, Eric; Khazendar, Ala; 2022. Derivation of bedrock topography measurement requirements for the reduction of uncertainty in ice-sheet model projections of Thwaites Glacier. The Cryosphere, 16761–778. 10.5194/tc-16-761-2022 | 2022 | Model application | 5 |
Cuzzone, Joshua K.; Young, Nicolás E.; Morlighem, Mathieu; Briner, Jason P.; Schlegel, Nicole-Jeanne; 2022. Simulating the Holocene deglaciation across a marine-terminating portion of southwestern Greenland in response to marine and atmospheric forcings. The Cryosphere, 162355–2372. 10.5194/tc-16-2355-2022 | 2022 | Model application | 4 |
Robel, Alexander A.; Wilson, Earle; Seroussi, Helene; 2022. Layered seawater intrusion and melt under grounded ice. The Cryosphere, 16451–469. 10.5194/tc-16-451-2022 | 2022 | Model application | 18 |
Bulthuis, Kevin; Larour, Eric; 2022. Implementation of a Gaussian Markov random field sampler for forward uncertainty quantification in the Ice-sheet and Sea-level System Model v4.19. Geoscientific Model Development, 151195–1217. 10.5194/gmd-15-1195-2022 | 2022 | Model application | 2 |
Smith-Johnsen, Silje; de Fleurian, Basile; Nisancioglu, Kerim H.; 2020. The role of subglacial hydrology in ice streams with elevated geothermal heat flux. Journal of Glaciology, 66303–312. 10.1017/jog.2020.8 | 2020 | Model application | 7 |
Rückamp, Martin; Goelzer, Heiko; Humbert, Angelika; 2020. Sensitivity of Greenland ice sheet projections to spatial resolution in higher-order simulations: the Alfred Wegener Institute (AWI) contribution to ISMIP6 Greenland using the Ice-sheet and Sea-level System Model (ISSM). The Cryosphere, 143309–3327. 10.5194/tc-14-3309-2020 | 2020 | Model application | 13 |
Smith-Johnsen, Silje; de Fleurian, Basile; Schlegel, Nicole; Seroussi, Helene; Nisancioglu, Kerim; 2020. Exceptionally high heat flux needed to sustain the Northeast Greenland Ice Stream. The Cryosphere, 14841–854. 10.5194/tc-14-841-2020 | 2020 | Model application | 30 |
Rückamp, Martin; Humbert, Angelika; Kleiner, Thomas; Morlighem, Mathieu; Seroussi, Helene; 2020. Extended enthalpy formulations in the Ice-sheet and Sea-level System Model (ISSM) version 4.17: discontinuous conductivity and anisotropic streamline upwind Petrov–Galerkin (SUPG) method. Geoscientific Model Development, 134491–4501. 10.5194/gmd-13-4491-2020 | 2020 | Model application | 4 |
Forbes, Martin; Hulbe, Christina; 2019. Coupling an XFEM code for linear elastic fracture propagation to a viscous flow model. GeoComputation 2019. , 10435777 Bytes. 10.17608/K6.AUCKLAND.9869561.V2 | 2019 | Model application | 0 |
Rückamp, Martin; Greve, Ralf; Humbert, Angelika; 2019. Comparative simulations of the evolution of the Greenland ice sheet under simplified Paris Agreement scenarios with the models SICOPOLIS and ISSM. Polar Science, 2114–25. 10.1016/j.polar.2018.12.003 | 2019 | Model application | 35 |
dos Santos, Thiago Dias; Morlighem, Mathieu; Seroussi, Hélène; Devloo, Philippe Remy Bernard; Simões, Jefferson Cardia; 2019. Implementation and performance of adaptive mesh refinement in the Ice Sheet System Model (ISSM v4.14). Geoscientific Model Development, 12215–232. 10.5194/gmd-12-215-2019 | 2019 | Model application | 1 |
Morlighem, Mathieu; Wood, Michael; Seroussi, Hélène; Choi, Youngmin; Rignot, Eric; 2019. Modeling the response of northwest Greenland to enhanced ocean thermal forcing and subglacial discharge. The Cryosphere, 13723–734. 10.5194/tc-13-723-2019 | 2019 | Model application | 50 |
dos Santos, Thiago Dias; Morlighem, Mathieu; Seroussi, Hélène; Devloo, Philippe Remy Bernard; Simões, Jefferson Cardia; 2019. Implementation and performance of adaptive mesh refinement in the Ice Sheet System Model (ISSM v4.14). Geoscientific Model Development, 12215–232. 10.5194/gmd-12-215-2019 | 2019 | Model application | 1 |
Cuzzone, Joshua K.; Schlegel, Nicole-Jeanne; Morlighem, Mathieu; Larour, Eric; Briner, Jason P.; Seroussi, Helene; Caron, Lambert; 2019. The impact of model resolution on the simulated Holocene retreat of the southwestern Greenland ice sheet using the Ice Sheet System Model (ISSM). The Cryosphere, 13879–893. 10.5194/tc-13-879-2019 | 2019 | Model application | 33 |
dos Santos, Thiago Dias; Morlighem, Mathieu; Seroussi, Hélène; Devloo, Philippe Remy Bernard; Simões, Jefferson Cardia; 2019. Implementation and performance of adaptive mesh refinement in the Ice Sheet System Model (ISSM v4.14). Geoscientific Model Development, 12215–232. 10.5194/gmd-12-215-2019 | 2019 | Model application | 1 |
Choi, Youngmin; Morlighem, Mathieu; Wood, Michael; Bondzio, Johannes H.; 2018. Comparison of four calving laws to model Greenland outlet glaciers. The Cryosphere, 123735–3746. 10.5194/tc-12-3735-2018 | 2018 | Model application | 48 |
Rückamp, Martin; Falk, Ulrike; Frieler, Katja; Lange, Stefan; Humbert, Angelika; 2018. The effect of overshooting 1.5 °C global warming on the mass loss of the Greenland ice sheet. Earth System Dynamics, 91169–1189. 10.5194/esd-9-1169-2018 | 2018 | Model application | 18 |
Beyer, Sebastian; Kleiner, Thomas; Aizinger, Vadym; Rückamp, Martin; Humbert, Angelika; 2018. A confined–unconfined aquifer model for subglacial hydrology and its application to the Northeast Greenland Ice Stream. The Cryosphere, 123931–3947. 10.5194/tc-12-3931-2018 | 2018 | Model application | 30 |
Hascoët, L.; Morlighem, M.; 2018. Source-to-source adjoint Algorithmic Differentiation of an ice sheet model written in C. Optimization Methods and Software, 33829–843. 10.1080/10556788.2017.1396600 | 2018 | Model application | 9 |
Hück, Alexander; Bischof, Christian; Sagebaum, Max; Gauger, Nicolas R.; Jurgelucks, Benjamin; Larour, Eric; Perez, Gilberto; 2018. A usability case study of algorithmic differentiation tools on the ISSM ice sheet model. Optimization Methods and Software, 33844–867. 10.1080/10556788.2017.1396602 | 2018 | Model application | 7 |
Sommers, Aleah; Rajaram, Harihar; Morlighem, Mathieu; 2018. SHAKTI: Subglacial Hydrology and Kinetic, Transient Interactions v1.0. Geoscientific Model Development, 112955–2974. 10.5194/gmd-11-2955-2018 | 2018 | Model application | 33 |
Graham, Felicity S.; Morlighem, Mathieu; Warner, Roland C.; Treverrow, Adam; 2018. Implementing an empirical scalar constitutive relation for ice with flow-induced polycrystalline anisotropy in large-scale ice sheet models. The Cryosphere, 121047–1067. 10.5194/tc-12-1047-2018 | 2018 | Model application | 24 |
Cuzzone, Joshua K.; Morlighem, Mathieu; Larour, Eric; Schlegel, Nicole; Seroussi, Helene; 2018. Implementation of higher-order vertical finite elements in ISSM v4.13 for improved ice sheet flow modeling over paleoclimate timescales. Geoscientific Model Development, 111683–1694. 10.5194/gmd-11-1683-2018 | 2018 | Model application | 23 |
Haubner, Konstanze; Box, Jason E.; Schlegel, Nicole J.; Larour, Eric Y.; Morlighem, Mathieu; Solgaard, Anne M.; Kjeldsen, Kristian K.; Larsen, Signe H.; Rignot, Eric; Dupont, Todd K.; Kjær, Kurt H.; 2018. Simulating ice thickness and velocity evolution of Upernavik Isstrøm 1849–2012 by forcing prescribed terminus positions in ISSM. The Cryosphere, 121511–1522. 10.5194/tc-12-1511-2018 | 2018 | Model application | 15 |
Schlegel, Nicole-Jeanne; Seroussi, Helene; Schodlok, Michael P.; Larour, Eric Y.; Boening, Carmen; Limonadi, Daniel; Watkins, Michael M.; Morlighem, Mathieu; van den Broeke, Michiel R.; 2018. Exploration of Antarctic Ice Sheet 100-year contribution to sea level rise and associated model uncertainties using the ISSM framework. The Cryosphere, 123511–3534. 10.5194/tc-12-3511-2018 | 2018 | Model application | 61 |
Larour, Eric; Cheng, Daniel; Perez, Gilberto; Quinn, Justin; Morlighem, Mathieu; Duong, Bao; Nguyen, Lan; Petrie, Kit; Harounian, Silva; Halkides, Daria; Hayes, Wayne; 2017. A JavaScript API for the Ice Sheet System Model (ISSM) 4.11: towards an online interactive model for the cryosphere community. Geoscientific Model Development, 104393–4403. 10.5194/gmd-10-4393-2017 | 2017 | Model application | 2 |
Habbal, Feras; Larour, Eric; Morlighem, Mathieu; Seroussi, Helene; Borstad, Christopher P.; Rignot, Eric; 2017. Optimal numerical solvers for transient simulations of ice flow using the Ice Sheet System Model (ISSM versions 4.2.5 and 4.11). Geoscientific Model Development, 10155–168. 10.5194/gmd-10-155-2017 | 2017 | Model overview | 10 |
Larour, Eric; Utke, Jean; Bovin, Anton; Morlighem, Mathieu; Perez, Gilberto; 2016. An approach to computing discrete adjoints for MPI-parallelized models applied to Ice Sheet System Model 4.11. Geoscientific Model Development, 93907–3918. 10.5194/gmd-9-3907-2016 | 2016 | Model application | 10 |
Larour, E.; Schlegel, N.; 2016. On ISSM and leveraging the Cloud towards faster quantification of the uncertainty in ice-sheet mass balance projections. Computers & Geosciences, 96193–201. 10.1016/j.cageo.2016.08.007 | 2016 | Model overview | 8 |
Adhikari, Surendra; Ivins, Erik R.; Larour, Eric; 2016. ISSM-SESAW v1.0: mesh-based computation of gravitationally consistent sea-level and geodetic signatures caused by cryosphere and climate driven mass change. Geoscientific Model Development, 91087–1109. 10.5194/gmd-9-1087-2016 | 2016 | Model application | 54 |
Larour, Eric; Utke, Jean; Bovin, Anton; Morlighem, Mathieu; Perez, Gilberto; 2016. An approach to computing discrete adjoints for MPI-parallelized models applied to Ice Sheet System Model 4.11. Geoscientific Model Development, 93907–3918. 10.5194/gmd-9-3907-2016 | 2016 | Model application | 10 |
Bondzio, Johannes H.; Seroussi, Hélène; Morlighem, Mathieu; Kleiner, Thomas; Rückamp, Martin; Humbert, Angelika; Larour, Eric Y.; 2016. Modelling calving front dynamics using a level-set method: application to Jakobshavn Isbræ, West Greenland. The Cryosphere, 10497–510. 10.5194/tc-10-497-2016 | 2016 | Model application | 73 |
Alexander, Patrick M.; Tedesco, Marco; Schlegel, Nicole-Jeanne; Luthcke, Scott B.; Fettweis, X.; Larour, Eric; 2016. Greenland Ice Sheet seasonal and spatial mass variability from model simulations and GRACE (2003–2012). , . 10.7916/D8989KKN | 2016 | Model application | 20 |
Schlegel, Nicole-Jeanne; Wiese, David N.; Larour, Eric Y.; Watkins, Michael M.; Box, Jason E.; Fettweis, Xavier; van den Broeke, Michiel R.; 2016. Application of GRACE to the assessment of model-based estimates of monthly Greenland Ice Sheet mass balance (2003–2012). The Cryosphere, 101965–1989. 10.5194/tc-10-1965-2016 | 2016 | Model application | 23 |
Borstad, Chris; Khazendar, Ala; Scheuchl, Bernd; Morlighem, Mathieu; Larour, Eric; Rignot, Eric; 2016. A constitutive framework for predicting weakening and reduced buttressing of ice shelves based on observations of the progressive deterioration of the remnant Larsen B Ice Shelf: CONSTITUTIVE FRAMEWORK FOR ICE WEAKENING. Geophysical Research Letters, 432027–2035. 10.1002/2015GL067365 | 2016 | Model application | 42 |
Le Morzadec, K.; Tarasov, L.; Morlighem, M.; Seroussi, H.; 2015. A new sub-grid surface mass balance and flux model for continental-scale ice sheet modelling: testing and last glacial cycle. Geoscientific Model Development, 83199–3213. 10.5194/gmd-8-3199-2015 | 2015 | Model application | 12 |
Bondzio, J. H.; Seroussi, H.; Morlighem, M.; Kleiner, T.; Rückamp, M.; Humbert, A.; Larour, E.; 2015. Modelling the dynamic response of Jakobshavn Isbræ, West Greenland, to calving rate perturbations. The Cryosphere Discussions, 95485–5520. 10.5194/tcd-9-5485-2015 | 2015 | Model application | 1 |
Schlegel, N.-J.; Larour, E.; Seroussi, H.; Morlighem, M.; Box, J. E.; 2015. Ice discharge uncertainties in Northeast Greenland from boundary conditions and climate forcing of an ice flow model: Ice discharge uncertainties in Northeast Greenland from boundary conditions and climate forcing of an ice flow model. Journal of Geophysical Research: Earth Surface, 12029–54. 10.1002/2014JF003359 | 2015 | Model application | 33 |
Larour, Eric; Schlegel, Nicole; Morlighem, Mathieu; 2014. Modeling the Evolution of Polar Ice Sheets: Ice Sheet System Model Workshop; Bergen, Norway, 2-4 June 2014. Eos, Transactions American Geophysical Union, 95411–411. 10.1002/2014EO450005 | 2014 | Model application | 0 |
Adhikari, S.; Ivins, E. R.; Larour, E.; Seroussi, H.; Morlighem, M.; Nowicki, S.; 2014. Future Antarctic bed topography and its implications for ice sheet dynamics. Solid Earth, 5569–584. 10.5194/se-5-569-2014 | 2014 | Model application | 31 |
Seroussi, H.; Morlighem, M.; Larour, E.; Rignot, E.; Khazendar, A.; 2014. Hydrostatic grounding line parameterization in ice sheet models. The Cryosphere, 82075–2087. 10.5194/tc-8-2075-2014 | 2014 | Model application | 103 |
Larour, E.; Utke, J.; Csatho, B.; Schenk, A.; Seroussi, H.; Morlighem, M.; Rignot, E.; Schlegel, N.; Khazendar, A.; 2014. 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). The Cryosphere, 82335–2351. 10.5194/tc-8-2335-2014 | 2014 | Model application | 62 |
Schlegel, N-J.; Larour, E.; Seroussi, H.; Morlighem, M.; Box, J. E.; 2013. Decadal-scale sensitivity of Northeast Greenland ice flow to errors in surface mass balance using ISSM: GREENLAND DECADAL ICE FLOW SENSITIVITY. Journal of Geophysical Research: Earth Surface, 118667–680. 10.1002/jgrf.20062 | 2013 | Model application | 35 |
Borstad, C. P.; Khazendar, A.; Larour, E.; Morlighem, M.; Rignot, E.; Schodlok, M. P.; Seroussi, H.; 2012. A damage mechanics assessment of the Larsen B ice shelf prior to collapse: Toward a physically-based calving law: A CALVING LAW BASED ON DAMAGE MECHANICS. Geophysical Research Letters, 39None. 10.1029/2012GL053317 | 2012 | Other | |
Larour, E.; Seroussi, H.; Morlighem, M.; Rignot, E.; 2012. Continental scale, high order, high spatial resolution, ice sheet modeling using the Ice Sheet System Model (ISSM): ICE SHEET SYSTEM MODEL. Journal of Geophysical Research: Earth Surface, 117n/a–n/a. 10.1029/2011JF002140 | 2012 | Model overview | 453 |
Larour, E.; Schiermeier, J.; Rignot, E.; Seroussi, H.; Morlighem, M.; Paden, J.; 2012. Sensitivity Analysis of Pine Island Glacier ice flow using ISSM and DAKOTA: PIG SENSITIVITY ANALYSIS. Journal of Geophysical Research: Earth Surface, 117n/a–n/a. 10.1029/2011JF002146 | 2012 | Model application | 58 |
Borstad, C. P.; Khazendar, A.; Larour, E.; Morlighem, M.; Rignot, E.; Schodlok, M. P.; Seroussi, H.; 2012. A damage mechanics assessment of the Larsen B ice shelf prior to collapse: Toward a physically-based calving law: A CALVING LAW BASED ON DAMAGE MECHANICS. Geophysical Research Letters, 39. 10.1029/2012GL053317 | 2012 | Model application | 107 |
Seroussi, H.; Morlighem, M.; Rignot, E.; Larour, E.; Aubry, D.; Ben Dhia, H.; Kristensen, S. S.; 2011. Ice flux divergence anomalies on 79north Glacier, Greenland: THE 79NORTH GLACIER. Geophysical Research Letters, 38n/a–n/a. 10.1029/2011GL047338 | 2011 | Model application | 135 |
Citations
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Nr. of publications: | 98 |
Total citations: | 2198 |
h-index: | 27 |
m-quotient: | 1.8 |
Publications per year
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