471 to 480 of 677 Results
Mar 10, 2022 - Geological Maps and Sections - Greenland
Garde, Adam A., 1989, "Geologisk kort over Grønland, 1:100 000, Fiskefjord 64 V.1 Nord", https://doi.org/10.22008/FK2/JWDCT3, GEUS Dataverse, V2
Geologisk kort over Grønland / Geological map of Greenland - 1:100 000, South-West Greenland, Tasiuasarsuaq |
Mar 10, 2022 - Geological Maps and Sections - Greenland
Escher, Jan C., 1985, "Geologisk kort over Grønland, 1:100 000, Bjørnesund 62 V.1 Nord", https://doi.org/10.22008/FK2/KQU1UE, GEUS Dataverse, V2
Geologisk kort over Grønland / Geological map of Greenland - 1:100 000, southern West Greenland, Fredrikshåb Isblink |
Mar 10, 2022 - Geological Maps and Sections - Greenland
Olesen, Niels Ø., 1984, "Geologisk kort over Grønland, 1:100 000, Agto 67 V.1 Nord", https://doi.org/10.22008/FK2/ECXCQL, GEUS Dataverse, V2
Geologisk kort over Grønland / Geological map of Greenland - 1:100 000, central West Greenland, Nassuttooq/Nordre Strømfjord |
Mar 10, 2022 - Geological Maps and Sections - Greenland
Henriksen, Niels, 1986, "Geologisk kort over Grønland, 1:100 000, Ivigtut 61 V.1 Syd", https://doi.org/10.22008/FK2/38HXCW, GEUS Dataverse, V3
Geologisk kort over Grønland / Geological map of Greenland - 1:100 000, southern West Greenland, Ivittuut |
Mar 3, 2022 - GEUS Bulletin Dataverse
Bennike, Ole; Wiberg-Larsen, Peter, 2022, "Supplementary files for: A new Middle Pleistocene interglacial occurrence from Ejby, Sjælland, Denmark", https://doi.org/10.22008/FK2/QEUAXO, GEUS Dataverse, V1
Despite more than a century of investigations, parts of the Quaternary stratigraphy of Denmark with their fragmented record of deposits remain ambiguous. Here we describe a newly found interglacial clay deposit from Ejby on Sjælland, Denmark from a borehole at 55.695°N, 11.839°E... |
Jan 28, 2022 - Nature and climate
Charalampos Charalampidis; Dirk van As; William Colgan; Robert Fausto; Michael MacFerrin; Horst Machguth; Baptiste Vandecrux, 2022, "Subsurface monitoring at 1840 m a.s.l. on the southwestern Greenland ice sheet during 2012–2013", https://doi.org/10.22008/FK2/OVGQZ9, GEUS Dataverse, V1
The dataset is fully described in: Charalampidis, C., Van As, D., Colgan, W. T., Fausto, R. S., Macferrin, M. and Machguth, H.: Thermal tracing of retained meltwater in the lower accumulation area of the Southwestern Greenland ice sheet, Ann. Glaciol., 57(72), 1–10, https://doi.o... |
Jan 25, 2022 - Nature and climate
Colgan, William; Wansing, Agnes, 2021, "Greenland Geothermal Heat Flow Database and Map", https://doi.org/10.22008/FK2/F9P03L, GEUS Dataverse, V2
Database of all geothermal heat flow measurements within 500 km of Greenland's coastline with self-consistent machine-learning geothermal heat flow map over all onshore and offshore areas. Updated as new measurements become available. |
Jan 18, 2022 - SICE - Arctic and Antarctic land ice snow and ice surface properties from Sentinel-3 OLCI
Box, Jason E, Kristian Pagh Nielsen, Baptiste Vandecrux, Adrien Wehrlé, 2022, "Deliverables for ESA PRODEX contract Seamless Integration of Sentinel-3 Albedos in a Weather-modelling System (SISAWS)", https://doi.org/10.22008/FK2/JMU6MD, GEUS Dataverse, V1
Deliverables for ESA PRODEX contract Seamless Integration of Sentinel-3 Albedos in a Weather-modelling System (SISAWS) |
Jan 13, 2022 - GEUS Bulletin Dataverse
Koch, Julian; Schneider, Raphael, 2022, "Supplementary files for: Long short-term memory networks enhance rainfall-runoff modelling at the national scale of Denmark", https://doi.org/10.22008/FK2/WCF76I, GEUS Dataverse, V1
This study explores the application of long short-term memory (LSTM) networks to simulate runoff at the national scale of Denmark using data from 301 catchments. This is the first LSTM application on Danish data. The results were benchmarked against the Danish national water reso... |
Jan 10, 2022 - Water resources
Seidenfaden, Ida Karlsson, 2022, "Redoxmaps from CRES2016", https://doi.org/10.22008/FK2/YEMDIS, GEUS Dataverse, V1
Resulting redoxmaps from the paper https://doi.org/10.5194/hess-2020-570. Maps are given for 45 combinations of 4 land use scenarioes, observational land use and climate data, and four different future climate models. Please see publication for details. |