Research result
Cryosphere / Land
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Geothermal heat flux distribution for the Greenland ice sheet, derived by combining a global representation and information from deep ice cores
Greve, R.: Geothermal heat flux distribution for the Greenland ice sheet, derived by combining a global representation and information from deep ice cores. Polar Data J., 3, 22-36, doi: 10.20575/00000006, 2019/02/21
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Underwater Ice Terrace Observed at the Front of Glaciar Grey, a Freshwater Calving Glacier in Patagonia
Sugiyama S, Minowa M, Schaefer M: Underwater ice terrace observed at the front of Glaciar Grey, a freshwater calving glacier in Patagonia. Geophysical Research Letters, 46, 2602-2609, doi:10.1029/2018GL081441
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initMIP-Antarctica: An ice sheet model initialization experiment of ISMIP6
Seroussi, H., S. Nowicki, E. Simon, A. Abe-Ouchi, T. Albrecht, J. Brondex, S. Cornford, C. Dumas, F. Gillet-Chaulet, H. Goelzer, N. R. Golledge, J. M. Gregory, R. Greve, M. J. Hoffman, A. Humbert, P. Huybrechts, T. Kleiner, E. Larour, G. Leguy, W. H. Lipscomb, D. Lowry, M. Mengel, M. Morlighem, F. Pattyn, A. J. Payne, D. Pollard, S. Price, A. Quiquet, T. Reerink, R. Reese, C. B. Rodehacke, N.-J. Schlegel, A. Shepherd, S. Sun, J. Sutter, J. van Breedam, R. S. W. van de Wal, R. Winkelmann, T. Zhang: InitMIP-Antarctica: An ice sheet model initialization experiment of ISMIP6. Cryosphere Discuss., doi: 10.5194/tc-2018-271, 2019/01/17
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Surface zooplankton size and taxonomic composition in Bowdoin Fjord, north-western Greenland: A comparison of ZooScan, OPC and microscopic analyses
Naito, A., Y. Abe, K. Matsuno, B. Nishizawa, N. Kanna, S. Sugiyama, and A. Yamaguchi: Surface zooplankton size and taxonomic composition in Bowdoin Fjord, north-western Greenland: A comparison of ZooScan, OPC and microscopic analyses. Polar Science, 19, 120-129, doi:10.1016/j.polar.2019.01.001 (20190109)
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Calving flux estimation from tsunami waves.
Minowa, M., E. A. Podolskiy, G. Jouvet, Y. Weidmann, D. Sakakibara, S. Tsutaki, E. Genco and S. Sugiyama. Calving flux estimation from tsunami waves. Earth and Planetary Science Letters, 515, 283-290.
https://doi.org/10.1016/j.epsl.2019.03.023 -
Comparative simulations of the evolution of the Greenland ice sheet under simplified Paris Agreement scenarios with the models SICOPOLIS and ISSM
Rückamp, M., R. Greve, A. Humbert: Comparative simulations of the evolution of the Greenland ice sheet under simplified Paris Agreement scenarios with the models SICOPOLIS and ISSM. Polar Sci., doi: 10.1016/j.polar.2018.12.003, 2018/12/07
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SHMIP The subglacial hydrology model intercomparison Project
B. de Fleurian, M. A. Werder, S. Beyer, D. J. Brinkerhoff, I. Delaney, C. F. Dow, J. Downs, O. Gagliardini, M. J. Hoffman, R. LeB Hooke, J. Seguinot, and A. N. Sommers. SHMIP The Subglacial Hydrology Model Intercomparison Project. J. Glaciology, https://doi.org/10.1017/jog.2018.78, 2018.
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Winter iron supply processes fueling spring phytoplankton growth in a sub-polar marginal sea, the Sea of Okhotsk: Importance of sea ice and the East Sakhalin Current
Kanna, N., Sibano, Y., Toyota, T., & Nishioka, J. (2018). Winter iron supply processes fueling spring phytoplankton growth in a sub-polar marginal sea, the Sea of Okhotsk: Importance of sea ice and the East Sakhalin Current. Marine Chemistry 206, 109-120. https://doi.org/10.1016/j.marchem.2018.08.006. 2018/09/01
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Modelling last glacial cycle ice dynamics in the Alps
Seguinot, J., S. Ivy-Ochs, G. Jouvet, M. Huss, M. Funk, and F. Preusser., Modelling last glacial cycle ice dynamics in the Alps The Cryosphere, 12:3265–3285, https://doi.org/10.5194/tc-12-3265-2018, 2018.
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Simulation of the future sea level contribution of Greenland with a new glacial system model
Calov, R., S. Beyer, R. Greve, J. Beckmann, M. Willeit, T. Kleiner, M. Rückamp, A. Humbert, A. Ganopolski: Simulation of the future sea level contribution of Greenland with a new glacial system model. Cryosphere, 12(10), 3097-3121, doi: 10.5194/tc-12-3097-2018, 2018/10/02






