C003-0018
A pan-Arctic initiative on the spatial and temporal dynamics of Arctic coasts

Monday, 7 December 2020
Poster
Anna M. Irrgang1, Benjamin M Jones2, Louise Melanie Farquharson2, Daria Aleksyutina3, Alisa Baranskaya4, Nataliya Belova4, Mette Bendixen5, Antoine Boisson6, Donald L Forbes7, Pedro Antonio Faria Freitas8, Ann Gibbs9, Frank Günther1, Marek Jaskolski10, Osip Konin4, Aart Kroon11, Gavin K. Manson12, Alexey Maslakov4, Anna V. Novikova4, Stanislav A. Ogorodov4, Paul Overduin13, Bruce M Richmond9, Rebecca Rolph14,15, Matt C. Strzelecki16, Craig E. Tweedie17, Alexandra Veremeeva18, Goncalo Vieira19, Dustin Whalen7, Michael O'Rourke20 and Hugues Lantuit15, (1)Alfred Wegener Institute Helmholtz-Center for Polar and Marine Research Potsdam, Potsdam, Germany, (2)University of Alaska Fairbanks, Fairbanks, AK, United States, (3)Lomonosov Moscow State Univesity, Moscow, Russia, (4)Lomonosov Moscow State University, Moscow, Russia, (5)University of Colorado, Boulder, Boulder, United States, (6)Laval University, Quebec City, QC, Canada, (7)Geological Survey of Canada, Dartmouth, NS, Canada, (8)Universitade de Lisboa, Lisbon, Portugal, (9)USGS Pacific Coastal and Marine Science Center, Santa Cruz, CA, United States, (10)University of Wroclaw, Wroclaw, Poland, (11)University of Copenhagen, Copenhagen, Denmark, (12)Geological Survey of Canada, Dartmouth, Canada, (13)Alfred Wegener Institute Hemlholtz Centre for Polar and Marine Research, Potsdam, Potsdam, Germany, (14)Humboldt University of Berlin, Department of Geography, Berlin, Germany, (15)Alfred Wegener Institute Helmholtz-Center for Polar and Marine Research, Permafrost Research Section, Potsdam, Germany, (16)University of Wroclaw, Geomorphology, Wroclaw, Poland, (17)University of Texas at El Paso, El Paso, TX, United States, (18)Russian Academy of Sciences, Pushchino, Pushchino, Russia, (19)Universidade de Lisboa, Lisbon, Portugal, (20)Prince of Wales Northern Heritage Centre, Yellowknife, Canada
Abstract:
Permafrost coasts make up roughly one third of all coasts worldwide. Their erosion leads to the release of previously locked organic carbon, changes in ecosystems and the destruction of cultural heritage, infrastructure and whole communities. Since rapid environmental changes lead to an intensification of Arctic coastal dynamics, it is of great importance to adequately quantify current and future coastal changes. However, the remoteness of the Arctic and scarcity of data limit our understanding of coastal dynamics at a pan-Arctic scale and prohibit us from getting a complete picture of the diversity of impacts on the human and natural environment. In a joint effort of the EU project NUNATARYUK and the NSF project PerCS-Net, we seek to close this knowledge gap by collecting and analyzing all accessible high-resolution shoreline position data for the Arctic coastline. These datasets include geographical coordinates combined with coastal positions derived from archived data, surveying data, air and space born remote sensing products, or LiDAR data. The compilation of this unique dataset will enable us to reach unprecedented data coverage and will allow us a first insight into the magnitude and trends of shoreline changes on a pan-Arctic scale with locally highly resolved temporal and spatial changes in shoreline dynamics. By comparing consistently derived shoreline change data from all over the Arctic we expect that the trajectory of coastal change in the Arctic becomes evident. A synthesis of some initial results will be presented in the 2020 Arctic Report Card on Arctic Coastal Dynamics. This initiative is an ongoing effort – new data contributions are welcome!