C065-06
Platelet Ice under Arctic Pack Ice in Winter

Wednesday, 16 December 2020: 05:45
Virtual
Christian Katlein1, Volker Mohrholz2, Igor Sheikin3, Polona Itkin4, Dmitry Divine5, Julienne Stroeve6, Arttu Jutila1, Daniela Krampe1, Egor Shimanchuk3, Ian Raphael7, Benjamin Rabe1, Ivan Kuznetsov1, Maria Mallet1, Hailong Liu8, Mario Hoppmann9, Ying-Chih Fang1, Adela Dumitrascu10, Stefanie Arndt1, Philipp Anhaus11, Marcel Nicolaus12, Ilkka Matero1, Marc Oggier13, Hajo Eicken13 and Christian Haas1, (1)Alfred Wegener Institute Helmholtz-Center for Polar and Marine Research Bremerhaven, Bremerhaven, Germany, (2)Leibniz-Institute for Baltic Sea Research Warnemünde, Physical Oceanography and Instrumentation, Rostock-Warnemünde, Germany, (3)Arctic and Antarctic Research Institute, St.Petersburg, Russia, (4)UiT The Arctic University of Norway, Tromsø, Norway, (5)Norwegian Polar Inst, Tromso, Norway, (6)University College London, London, United Kingdom, (7)Dartmouth College, Thayer School of Engineering, Hanover, NH, United States, (8)Shanghai Jiao Tong University, Shanghai, China, (9)Alfred-Wegener-Institute, Oldenburg, Germany, (10)University of Gothenburg, Gothenburg, Sweden, (11)Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung, Bremerhaven, Germany, (12)Alfred Wegener Institute, Bremerhaven, Germany, (13)University of Alaska Fairbanks, International Arctic Research Center, Fairbanks, AK, United States
Abstract:
Platelet ice is a unique type of sea ice; its occurrence has numerous implications for physical and ecological systems. Mostly, platelet ice has been reported from the Antarctic where ice crystals grow in supercooled ice shelf water and accumulate below sea ice to form sub-ice platelet layers. In the Arctic however, platelet ice formation has only been sparsely documented so far. The associated formation processes and morphology differ significantly from the Antarctic, but currently remain poorly understood. Here, we present the first comprehensive, repeat in-situ observations of a decimeter thick sub-ice platelet layer under drifting pack ice of the Central Arctic in winter. Observations carried out with a remotely operated underwater vehicle (ROV) during the midwinter leg of the MOSAiC drift expedition provided clear evidence of the growth of platelet layers from supercooled water present in the ocean mixed layer. This process was observed under all ice types present during the surveys. Oceanographic data from autonomous observing platforms leads us to the conclusion that platelet ice formation is a widespread yet overlooked feature of Arctic winter sea ice growth.