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First 1846 results for ” Semjon Schimanke”

  1. The modelled surface mass balance of the Antarctic Pensinsula at 5.5 km horizontal resolution

    This study presents a high-resolution (5.5 km) estimate of surface mass balance (SMB) over ...

    JM van Wessem, SRM Ligtenberg, CH Reijmer, WJ van de Berg, MR van den Broeke, NE Barrand, ER Thomas, J Turner, J Wuite, TA Scambos, E van Meijgaard | Status: published | Journal: The Cryosphere | Year: 2016 | First page: 271 | Last page: 285 | doi: 10.5194/tc-10-271-2016

    Publication

  2. Modelling the climate and surface mass balance of polar ice sheets using RACMO2 – Part 2: Antarctica (1979–2016)

    We evaluate modelled Antarctic ice sheet (AIS) near-surface climate, surface mass balance (SMB) a...

    JM van Wessem, WJ van de Berg, BPY Noël, E van Meijgaard, LH van Ulft, MR van den Broeke, 13 CoAuthors | Status: published | Journal: The Cryosphere | Year: 2018 | First page: 1479 | Last page: 1498 | doi: 10.5194/tc-12-1479-2018

    Publication

  3. Modelling the climate and surface mass balance of polar ice sheets using RACMO2 – Part 1: Greenland (1958–2016)

    We evaluate modelled Greenland ice sheet (GrIS) near-surface climate, surface energy balance (SEB...

    BPY Noël, WJ van de Berg, JM van Wessem, E van Meijgaard, LH van Ulft, MR van den Broeke, 6 CoAuthors | Status: published | Journal: The Cryosphere | Year: 2018 | First page: 811 | Last page: 831 | doi: 10.5194/tc-12-811-2018

    Publication

  4. Temperature and Wind Climate of the Antarctic Peninsula as Simulated by a High-Resolution Regional Atmospheric Climate Model

    The latest polar version of the Regional Atmospheric Climate Model (RACMO2.3) has been applied to...

    JM van Wessem, CH Reijmer, WJ van de Berg, MR van den Broeke, AJ Cook, LH van Ulft, E van Meijgaard | Status: published | Journal: J. Climate | Volume: 28 | Year: 2015 | First page: 7306 | Last page: 7326 | doi: 10.1175/JCLI-D-15-0060.1

    Publication

  5. Sea level rise risks and societal adaptation benefits in low-lying coastal areas

    Sea level rise (SLR) will increase adaptation needs along low-lying coasts worldwide. Despite cen...

    Alexandre K. Magnan, Michael Oppenheimer, Matthias Garschagen, Maya K. Buchanan, Virginie K. E. Duvat, Donald L. Forbes, James D. Ford, Erwin Lambert, Jan Petzold, Fabrice G. Renaud, Zita Sebesvari, Roderik S. W. van de Wal, Jochen Hinkel & Hans-Otto Pörtner | Journal: Nature Scientific Reports | Volume: 12 | Year: 2022 | doi: 10.1038/s41598-022-14303-w

    Publication