341 to 350 of 1,167 Results
May 1, 2026Energy resources
The GoNorth 2024 expedition on board the Norwegian icebreaker Kronprins Haakon acquired 1577 km of sub-bottom profiler (SBP) data in the Wandel Sea (Fig. 1), using a Kongsberg SBP 300-6 Deep Water sub-bottom profiler operating on FM frequency modulated pulses between 2.5 kHz and... |
Apr 14, 2026 -
Greenland Ice Velocity from Sentinel-1 Edition 5
Network Common Data Form - 345.3 MB -
MD5: 9a4044f9499e38f6199cdb96a183cde9
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Apr 14, 2026 -
Greenland Ice Velocity from Sentinel-1 Edition 5
PNG Image - 4.0 MB -
MD5: 2303943abaaadde2d7fde793cbada9f8
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Apr 9, 2026 -
Greenland Ice Velocity from Sentinel-1 Edition 5
Network Common Data Form - 343.6 MB -
MD5: 138a8a50c112bfb24d46ec4fb291bbad
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Apr 9, 2026 -
Greenland Ice Velocity from Sentinel-1 Edition 5
PNG Image - 7.6 MB -
MD5: bd8596c84d86f2a71364c15c2d08275f
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Apr 8, 2026 - GEUS Bulletin Dataverse
Lösing, Mareen; Colgan, William; Stål, Tobias; Ebbing, Jörg; Busck, Anne G.; Zhang, Tong; Seroussi, Hélène L.; McCormack, Felicity; Fahrner, Dominik; Stearns, Leigh; Svendsen, Synne H.; Reading, Anya, 2026, "Supplementary Files for: Community heat flow recommendations: suitable basal boundary conditions for Greenland and Antarctica in ISMIP7", https://doi.org/10.22008/FK2/RJNF92, GEUS Dataverse, V1
Geothermal heat flow (GHF) influences ice sheet thermal conditions, affecting ice flow by sliding and deformation. However, GHF distribution under polar ice sheets remains poorly constrained, with few direct borehole-derived estimates and large discrepancies between glaciological... |
application/vnd.oasis.opendocument.text - 40.6 KB -
MD5: 504e7369f24b618007b72cdcd2a8c52d
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Adobe PDF - 292.8 KB -
MD5: a826a279d8d9a6c08292362f2c26e8c5
GHF Methods Overview |
Adobe PDF - 3.5 MB -
MD5: 36391d38770e78cc6d66074547df44cc
Survey results |
Apr 7, 2026 - GEUS Bulletin Dataverse
Voutchkova, Denitza D.; Hansen, Birgitte; Thorling, Lærke; Kim, Hyojin; Aamand, Jens; Jakobsen, Rasmus, 2026, "Supplementary File for: Denitrification in carbonate aquifers: a literature review", https://doi.org/10.22008/FK2/MD5QBY, GEUS Dataverse, V1
Denitrification is the most important process for nitrate removal in groundwater. Although carbonate aquifers are important for drinking water supply, the denitrification process in these systems is less understood than for unconsolidated sedimentary aquifers. We reviewed studies... |
