Research result
Cryosphere / Land
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Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison
Goelzer, H., S. Nowicki, T. Edwards, M. Beckley, A. Abe-Ouchi, A. Aschwanden, R. Calov, O. Gagliardini, F. Gillet-Chaulet, N. R. Golledge, J. Gregory, R. Greve, A. Humbert, P. Huybrechts, J. H. Kennedy, E. Larour, W. H. Lipscomb, S. Le clec’h, V. Lee, M. Morlighem, F. Pattyn, A. J. Payne, C. Rodehacke, M. Rückamp, F. Saito, N. Schlegel, H. Seroussi, A. Shepherd, S. Sun, R. van de Wal and F. A. Ziemen (2018). Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison. Cryosphere, in press, doi: 10.5194/tc-2017-129.
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Frost flowers and sea-salt aerosols over seasonal sea-ice areas in northwestern Greenland during winter-spring
Hara, K., S. Matoba, M. Hirabayashi and T. Yamasaki (2017): Frost flowers and sea-salt aerosols over seasonal sea-ice areas in northwestern Greenland during winter-spring, Atmos. Chem. Phys., 17, 8577-8598
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Surface mass balance, ice velocity and near-surface ice temperature on Qaanaaq Ice Cap, northwestern Greenland, from 2012 to 2016
Tsutaki, S., S. Sugiyama, D. Sakakibara, T. Aoki, M. Niwano. (2017). Surface mass balance, ice velocity and near-surface ice temperature on Qaanaaq Ice Cap, northwestern Greenland, from 2012 to 2016. Annals of Glaciology, 59(75), doi:10.1017/aog.2017.7.
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Initiation of a major calving event on Bowdoin Glacier captured by UAV photogrammetry
Jouvet, G., Y. Weidmann, J. Seguinot, M. Funk, T. Abe, D. Sakakibara, H. Seddik, S. Sugiyama. (2017). Initiation of a major calving event on Bowdoin Glacier captured by UAV photogrammetry. The Cryosphere, 11, 911-921.
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Seismic and infrasound monitoring of Bowdoin Glacier, Greenland
Podolskiy, E. A.; Genco, R.; Sugiyama, S.; Walter, F.; Funk, M.; Minowa, M.; Tsutaki, S.; Ripepe, M. (2017). Seismic and infrasound monitoring of Bowdoin Glacier, Greenland, Low Temperature Science, 75, 15-36.
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NHM–SMAP: spatially and temporally high-resolution nonhydrostatic atmospheric model coupled with detailed snow process model for Greenland Ice Sheet
Niwano, M., Aoki, T., Hashimoto, A., Matoba, S., Yamaguchi, S., Tanikawa, T., Fujita, K., Tsushima, A., Iizuka, Y., Shimada, R., and Hori, M.: NHM–SMAP: spatially and temporally high-resolution nonhydrostatic atmospheric model coupled with detailed snow process model for Greenland Ice Sheet, The Cryosphere, 12, 635-655, 2018.
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A firn densification process in the high accumulation dome of southeastern Greenland.
Iizuka, Y., A. Miyamoto, A. Hori, S. Matoba, R. Furukawa, T. Saito, S. Fujita, M. Hirabayashi, S. Yamaguchi, K. Fujita and N. Takeuchi (2017). A firn densification process in the high accumulation dome of southeastern Greenland. Arctic, Antarctic, and Alpine Research, 49(1), 13-27.
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Frontiers in Cryoseismology
Podolskiy, E.A. and F. Florindo (2016), Frontiers in Cryoseismology, EOS – Editors’ Vox (AGU)
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Cryoseismology
Podolskiy, E.A. and F. Walter (2016). Cryoseismology, Reviews of Geophysics, 54, 708-758
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Arctic Frontiers: Four things to know about Arctic politics, business, and science
Podolskiy, E. A. 2016. Arctic Frontiers: Four things to know about Arctic politics, business, and science, JCAR Newsletter, 4 (July 2016), 10-12.






