Artículos de revistas sobre el tema "Ice sheet and climate interactions"
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Scherrenberg, Meike D. W., Constantijn J. Berends, Lennert B. Stap y Roderik S. W. van de Wal. "Modelling feedbacks between the Northern Hemisphere ice sheets and climate during the last glacial cycle". Climate of the Past 19, n.º 2 (8 de febrero de 2023): 399–418. http://dx.doi.org/10.5194/cp-19-399-2023.
Texto completoGregory, J. M., O. J. H. Browne, A. J. Payne, J. K. Ridley y I. C. Rutt. "Modelling large-scale ice-sheet–climate interactions following glacial inception". Climate of the Past 8, n.º 5 (11 de octubre de 2012): 1565–80. http://dx.doi.org/10.5194/cp-8-1565-2012.
Texto completoGregory, J. M., O. J. H. Browne, A. J. Payne, J. K. Ridley y I. C. Rutt. "Modelling large-scale ice-sheet–climate interactions following glacial inception". Climate of the Past Discussions 8, n.º 1 (9 de enero de 2012): 169–213. http://dx.doi.org/10.5194/cpd-8-169-2012.
Texto completoAbe-Ouchi, Ayako y Bette Otto-Bliesner. "Ice sheet-climate interactions during the ice age cycle". PAGES news 17, n.º 2 (junio de 2009): 73–74. http://dx.doi.org/10.22498/pages.17.2.73.
Texto completoNIU, LU, GERRIT LOHMANN, SEBASTIAN HINCK, EVAN J. GOWAN y UTA KREBS-KANZOW. "The sensitivity of Northern Hemisphere ice sheets to atmospheric forcing during the last glacial cycle using PMIP3 models". Journal of Glaciology 65, n.º 252 (3 de julio de 2019): 645–61. http://dx.doi.org/10.1017/jog.2019.42.
Texto completoXie, Zhiang, Dietmar Dommenget, Felicity S. McCormack y Andrew N. Mackintosh. "GREB-ISM v1.0: A coupled ice sheet model for the Globally Resolved Energy Balance model for global simulations on timescales of 100 kyr". Geoscientific Model Development 15, n.º 9 (10 de mayo de 2022): 3691–719. http://dx.doi.org/10.5194/gmd-15-3691-2022.
Texto completoDutton, Andrea, EJ Stone y A. Carlson. "Ice sheet climate interactions: Implications for coastal engineering". PAGES news 21, n.º 1 (marzo de 2013): 40. http://dx.doi.org/10.22498/pages.21.1.40.
Texto completoStap, L. B., R. S. W. van de Wal, B. de Boer, R. Bintanja y L. J. Lourens. "Interaction of ice sheets and climate during the past 800 000 years". Climate of the Past Discussions 10, n.º 3 (23 de junio de 2014): 2547–94. http://dx.doi.org/10.5194/cpd-10-2547-2014.
Texto completoStap, L. B., R. S. W. van de Wal, B. de Boer, R. Bintanja y L. J. Lourens. "Interaction of ice sheets and climate during the past 800 000 years". Climate of the Past 10, n.º 6 (4 de diciembre de 2014): 2135–52. http://dx.doi.org/10.5194/cp-10-2135-2014.
Texto completoVan Breedam, Jonas, Philippe Huybrechts y Michel Crucifix. "A Gaussian process emulator for simulating ice sheet–climate interactions on a multi-million-year timescale: CLISEMv1.0". Geoscientific Model Development 14, n.º 10 (25 de octubre de 2021): 6373–401. http://dx.doi.org/10.5194/gmd-14-6373-2021.
Texto completoSmith, Robin S., Steve George y Jonathan M. Gregory. "FAMOUS version xotzt (FAMOUS-ice): a general circulation model (GCM) capable of energy- and water-conserving coupling to an ice sheet model". Geoscientific Model Development 14, n.º 9 (17 de septiembre de 2021): 5769–87. http://dx.doi.org/10.5194/gmd-14-5769-2021.
Texto completoGoelzer, Heiko, Philippe Huybrechts, Marie-France Loutre y Thierry Fichefet. "Last Interglacial climate and sea-level evolution from a coupled ice sheet–climate model". Climate of the Past 12, n.º 12 (15 de diciembre de 2016): 2195–213. http://dx.doi.org/10.5194/cp-12-2195-2016.
Texto completoStap, Lennert B., Constantijn J. Berends, Meike D. W. Scherrenberg, Roderik S. W. van de Wal y Edward G. W. Gasson. "Net effect of ice-sheet–atmosphere interactions reduces simulated transient Miocene Antarctic ice-sheet variability". Cryosphere 16, n.º 4 (11 de abril de 2022): 1315–32. http://dx.doi.org/10.5194/tc-16-1315-2022.
Texto completoBradley, Sarah L., Raymond Sellevold, Michele Petrini, Miren Vizcaino, Sotiria Georgiou, Jiang Zhu, Bette L. Otto-Bliesner y Marcus Lofverstrom. "Surface mass balance and climate of the Last Glacial Maximum Northern Hemisphere ice sheets: simulations with CESM2.1". Climate of the Past 20, n.º 1 (24 de enero de 2024): 211–35. http://dx.doi.org/10.5194/cp-20-211-2024.
Texto completoEly, Jeremy C., Chris D. Clark, David Small y Richard C. A. Hindmarsh. "ATAT 1.1, the Automated Timing Accordance Tool for comparing ice-sheet model output with geochronological data". Geoscientific Model Development 12, n.º 3 (12 de marzo de 2019): 933–53. http://dx.doi.org/10.5194/gmd-12-933-2019.
Texto completoNowicki, Sophie, Heiko Goelzer, Hélène Seroussi, Anthony J. Payne, William H. Lipscomb, Ayako Abe-Ouchi, Cécile Agosta et al. "Experimental protocol for sea level projections from ISMIP6 stand-alone ice sheet models". Cryosphere 14, n.º 7 (23 de julio de 2020): 2331–68. http://dx.doi.org/10.5194/tc-14-2331-2020.
Texto completoSiahaan, Antony, Robin S. Smith, Paul R. Holland, Adrian Jenkins, Jonathan M. Gregory, Victoria Lee, Pierre Mathiot, Antony J. Payne, Jeff K. Ridley y Colin G. Jones. "The Antarctic contribution to 21st-century sea-level rise predicted by the UK Earth System Model with an interactive ice sheet". Cryosphere 16, n.º 10 (7 de octubre de 2022): 4053–86. http://dx.doi.org/10.5194/tc-16-4053-2022.
Texto completoFong, Peter. "Influence Of Ice Sheets On Climate and Ice-Sheet Dynamics". Annals of Glaciology 14 (1990): 335. http://dx.doi.org/10.3189/s026030550000896x.
Texto completoFong, Peter. "Influence Of Ice Sheets On Climate and Ice-Sheet Dynamics". Annals of Glaciology 14 (1990): 335. http://dx.doi.org/10.1017/s026030550000896x.
Texto completoQuiquet, Aurélien, Didier M. Roche, Christophe Dumas, Nathaëlle Bouttes y Fanny Lhardy. "Climate and ice sheet evolutions from the last glacial maximum to the pre-industrial period with an ice-sheet–climate coupled model". Climate of the Past 17, n.º 5 (19 de octubre de 2021): 2179–99. http://dx.doi.org/10.5194/cp-17-2179-2021.
Texto completoStap, Lennert B., Roderik S. W. van de Wal, Bas de Boer, Richard Bintanja y Lucas J. Lourens. "The influence of ice sheets on temperature during the past 38 million years inferred from a one-dimensional ice sheet–climate model". Climate of the Past 13, n.º 9 (25 de septiembre de 2017): 1243–57. http://dx.doi.org/10.5194/cp-13-1243-2017.
Texto completoRoe, Gerard H. "Modeling precipitation over ice sheets: an assessment using Greenland". Journal of Glaciology 48, n.º 160 (2002): 70–80. http://dx.doi.org/10.3189/172756502781831593.
Texto completoZwally, H. Jay. "Ice-Sheet Elevation Change". Annals of Glaciology 14 (1990): 366. http://dx.doi.org/10.3189/s0260305500009460.
Texto completoZwally, H. Jay. "Ice-Sheet Elevation Change". Annals of Glaciology 14 (1990): 366. http://dx.doi.org/10.1017/s0260305500009460.
Texto completoHinck, Sebastian, Evan J. Gowan, Xu Zhang y Gerrit Lohmann. "PISM-LakeCC: Implementing an adaptive proglacial lake boundary in an ice sheet model". Cryosphere 16, n.º 3 (14 de marzo de 2022): 941–65. http://dx.doi.org/10.5194/tc-16-941-2022.
Texto completoO'Neill, James F., Tamsin L. Edwards, Daniel F. Martin, Courtney Shafer, Stephen L. Cornford, Hélène L. Seroussi, Sophie Nowicki, Mira Adhikari y Lauren J. Gregoire. "ISMIP6-based Antarctic projections to 2100: simulations with the BISICLES ice sheet model". Cryosphere 19, n.º 2 (4 de febrero de 2025): 541–63. https://doi.org/10.5194/tc-19-541-2025.
Texto completoHoang, Thi-Khanh-Dieu, Aurélien Quiquet, Christophe Dumas, Andreas Born y Didier M. Roche. "Using a multi-layer snow model for transient paleo-studies: surface mass balance evolution during the Last Interglacial". Climate of the Past 21, n.º 1 (7 de enero de 2025): 27–51. https://doi.org/10.5194/cp-21-27-2025.
Texto completoKennedy, Joseph H. y Erin C. Pettit. "The response of fabric variations to simple shear and migration recrystallization". Journal of Glaciology 61, n.º 227 (2015): 537–50. http://dx.doi.org/10.3189/2015jog14j156.
Texto completoBerger, A., Th Fichefet, H. Gallée, I. Marsiat, C. Tricot y J. P. van Ypersele. "Physical interactions within a coupled climate model over the last glacial–interglacial cycle". Transactions of the Royal Society of Edinburgh: Earth Sciences 81, n.º 4 (1990): 357–69. http://dx.doi.org/10.1017/s026359330002085x.
Texto completoAlvarez-Solas, Jorge, Rubén Banderas, Alexander Robinson y Marisa Montoya. "Ocean-driven millennial-scale variability of the Eurasian ice sheet during the last glacial period simulated with a hybrid ice-sheet–shelf model". Climate of the Past 15, n.º 3 (4 de junio de 2019): 957–79. http://dx.doi.org/10.5194/cp-15-957-2019.
Texto completoBORN, ANDREAS. "Tracer transport in an isochronal ice-sheet model". Journal of Glaciology 63, n.º 237 (20 de octubre de 2016): 22–38. http://dx.doi.org/10.1017/jog.2016.111.
Texto completoGoelzer, H., P. Huybrechts, M. F. Loutre, H. Goosse, T. Fichefet y A. Mouchet. "Impact of Greenland and Antarctic ice sheet interactions on climate sensitivity". Climate Dynamics 37, n.º 5-6 (3 de agosto de 2010): 1005–18. http://dx.doi.org/10.1007/s00382-010-0885-0.
Texto completoPunge, H. J., H. Gallée, M. Kageyama y G. Krinner. "Modelling snow accumulation on Greenland in Eemian, glacial inception, and modern climates in a GCM". Climate of the Past 8, n.º 6 (5 de noviembre de 2012): 1801–19. http://dx.doi.org/10.5194/cp-8-1801-2012.
Texto completoAbe-Ouchi, A., T. Segawa y F. Saito. "Climatic Conditions for modelling the Northern Hemisphere ice sheets throughout the ice age cycle". Climate of the Past 3, n.º 3 (19 de julio de 2007): 423–38. http://dx.doi.org/10.5194/cp-3-423-2007.
Texto completoAbe-Ouchi, A., T. Segawa y F. Saito. "Climatic conditions for modelling the Northern Hemisphere ice sheets throughout the ice age cycle". Climate of the Past Discussions 3, n.º 1 (6 de febrero de 2007): 301–36. http://dx.doi.org/10.5194/cpd-3-301-2007.
Texto completoAndernach, Malena, Marie-Luise Kapsch y Uwe Mikolajewicz. "Impact of Greenland Ice Sheet disintegration on atmosphere and ocean disentangled". Earth System Dynamics 16, n.º 2 (14 de marzo de 2025): 451–74. https://doi.org/10.5194/esd-16-451-2025.
Texto completoAlbrecht, Torsten, Meike Bagge y Volker Klemann. "Feedback mechanisms controlling Antarctic glacial-cycle dynamics simulated with a coupled ice sheet–solid Earth model". Cryosphere 18, n.º 9 (19 de septiembre de 2024): 4233–55. http://dx.doi.org/10.5194/tc-18-4233-2024.
Texto completoZhan, Jingang, Hongling Shi, Yong Wang y Yixin Yao. "Complex Principal Component Analysis of Antarctic Ice Sheet Mass Balance". Remote Sensing 13, n.º 3 (29 de enero de 2021): 480. http://dx.doi.org/10.3390/rs13030480.
Texto completoBorreguero, Laura Herraiz, Ruth Mottram y Ivana Cvijanovic. "Discussing Progress in Understanding Ice Sheet—Ocean Interactions: Advanced Climate Dynamics Course 2010: Ice Sheet—Ocean Interactions; Lyngen, Norway, 8–19 June 2010". Eos, Transactions American Geophysical Union 91, n.º 45 (2010): 419. http://dx.doi.org/10.1029/2010eo450006.
Texto completoBraithwaite, Roger J. "Models of ice-atmosphere interactions for the Greenland ice sheet". Annals of Glaciology 23 (1996): 149–53. http://dx.doi.org/10.3189/s0260305500013379.
Texto completoBraithwaite, Roger J. "Models of ice-atmosphere interactions for the Greenland ice sheet". Annals of Glaciology 23 (1996): 149–53. http://dx.doi.org/10.1017/s0260305500013379.
Texto completoRen, Diandong y Lance M. Leslie. "Three positive feedback mechanisms for ice-sheet melting in a warming climate". Journal of Glaciology 57, n.º 206 (2011): 1057–66. http://dx.doi.org/10.3189/002214311798843250.
Texto completoBintanja, R., G. J. van Oldenborgh y C. A. Katsman. "The effect of increased fresh water from Antarctic ice shelves on future trends in Antarctic sea ice". Annals of Glaciology 56, n.º 69 (2015): 120–26. http://dx.doi.org/10.3189/2015aog69a001.
Texto completoPérez, Lara F., Paul C. Knutz, John R. Hopper, Marit-Solveig Seidenkrantz, Matt O'Regan y Stephen Jones. "NorthGreen: unlocking records from sea to land in Northeast Greenland". Scientific Drilling 33, n.º 1 (2 de abril de 2024): 33–46. http://dx.doi.org/10.5194/sd-33-33-2024.
Texto completoGoelzer, Heiko, Sophie Nowicki, Anthony Payne, Eric Larour, Helene Seroussi, William H. Lipscomb, Jonathan Gregory et al. "The future sea-level contribution of the Greenland ice sheet: a multi-model ensemble study of ISMIP6". Cryosphere 14, n.º 9 (17 de septiembre de 2020): 3071–96. http://dx.doi.org/10.5194/tc-14-3071-2020.
Texto completoLe clec'h, Sébastien, Sylvie Charbit, Aurélien Quiquet, Xavier Fettweis, Christophe Dumas, Masa Kageyama, Coraline Wyard y Catherine Ritz. "Assessment of the Greenland ice sheet–atmosphere feedbacks for the next century with a regional atmospheric model coupled to an ice sheet model". Cryosphere 13, n.º 1 (1 de febrero de 2019): 373–95. http://dx.doi.org/10.5194/tc-13-373-2019.
Texto completoZhang, Enze, Ginny Catania y Daniel T. Trugman. "AutoTerm: an automated pipeline for glacier terminus extraction using machine learning and a “big data” repository of Greenland glacier termini". Cryosphere 17, n.º 8 (24 de agosto de 2023): 3485–503. http://dx.doi.org/10.5194/tc-17-3485-2023.
Texto completoPayne, A. J., P. Huybrechts, A. Abe-Ouchi, R. Calov, J. L. Fastook, R. Greve, S. J. Marshall et al. "Results from the EISMINT model intercomparison: the effects of thermomechanical coupling". Journal of Glaciology 46, n.º 153 (2000): 227–38. http://dx.doi.org/10.3189/172756500781832891.
Texto completoKreuzer, Moritz, Ronja Reese, Willem Nicholas Huiskamp, Stefan Petri, Torsten Albrecht, Georg Feulner y Ricarda Winkelmann. "Coupling framework (1.0) for the PISM (1.1.4) ice sheet model and the MOM5 (5.1.0) ocean model via the PICO ice shelf cavity model in an Antarctic domain". Geoscientific Model Development 14, n.º 6 (22 de junio de 2021): 3697–714. http://dx.doi.org/10.5194/gmd-14-3697-2021.
Texto completoStraneo, Fiammetta, Patrick Heimbach, Olga Sergienko, Gordon Hamilton, Ginny Catania, Stephen Griffies, Robert Hallberg et al. "Challenges to Understanding the Dynamic Response of Greenland's Marine Terminating Glaciers to Oceanic and Atmospheric Forcing". Bulletin of the American Meteorological Society 94, n.º 8 (1 de agosto de 2013): 1131–44. http://dx.doi.org/10.1175/bams-d-12-00100.1.
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