id ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.930669
record_format openpolar
spelling ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.930669 2024-09-15T18:08:05+00:00 Long-term mean annual ground temperature data for permafrost GTN-P MEDIAN LATITUDE: 58.748098 * MEDIAN LONGITUDE: -37.960023 * SOUTH-BOUND LATITUDE: -66.275300 * WEST-BOUND LONGITUDE: -149.580400 * NORTH-BOUND LATITUDE: 82.500000 * EAST-BOUND LONGITUDE: 128.849400 * MINIMUM DEPTH, sediment/rock: 3.60 m * MAXIMUM DEPTH, sediment/rock: 24.40 m 2021 text/tab-separated-values, 523 data points https://doi.pangaea.de/10.1594/PANGAEA.930669 https://doi.org/10.1594/PANGAEA.930669 en eng PANGAEA Biskaborn, Boris K; Smith, Sharon L; Noetzli, Jeannette; Matthes, Heidrun; Vieira, Gonçalo; Streletskiy, Dmitry A; Schoeneich, Philippe; Romanovsky, Vladimir E; Lewkowicz, Antoni G; Abramov, Andrey; Allard, Michel; Boike, Julia; Cable, William L; Christiansen, Hanne Hvidtfeldt; Delaloye, Reynald; Diekmann, Bernhard; Drozdov, Dimitry S; Etzelmüller, Bernd; Grosse, Guido; Guglielmin, Mauro; Ingeman-Nielsen, Thomas; Isaksen, Ketil; Ishikawa, Mamoru; Johansson, Margareta; Johannsson, Halldor; Joo, Anseok; Kaverin, Dmitry; Kholodov, Alexander L; Konstantinov, Pavel; Kröger, Silke; Lambiel, Christophe; Lanckman, Jean-Pierre; Luo, Dongliang; Malkova, Galina; Meiklejohn, Ian; Moskalenko, Nataliya G; Oliva, Marc; Ramos, Miguel; Sannel, A Britta K; Sergeev, Dmitry V; Seybold, Cathy; Skryabin, Pavel; Vasiliev, Alexander; Wu, Qingbai; Yoshikawa, Kenji; Zheleznyak, Mikail; Lantuit, Hugues (2019): Permafrost is warming at a global scale. Nature Communications, 10(1), https://doi.org/10.1038/s41467-018-08240-4 PERMOS 2019 (2019). PERMOS Database. Swiss Permafrost Monitoring Network, Fribourg and Davos, Switzerland, https://doi.org/10.13093/permos-2019-01 GTN-P 2019 authors list (URI: https://store.pangaea.de/Publications/BiskabornB-etal_2018/GTN-P_2018_Authors.pdf) https://doi.pangaea.de/10.1594/PANGAEA.930669 https://doi.org/10.1594/PANGAEA.930669 CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess Alert 2 Bolvansky 54 Boreholes Boulder Clay Chandalar Shelf COR_0287 Deadhorse DEPTH sediment/rock DRILL Drilling/drill rig Elevation of event Event label FranklBluffs Global Terrestrial Network for Permafrost GTN-P GTN-P_TSP_102 GTN-P_TSP_1113 GTN-P_TSP_117 GTN-P_TSP_1710 GTN-P_TSP_265 GTN-P_TSP_287 GTN-P_TSP_356 GTN-P_TSP_386 GTN-P_TSP_431 GTN-P_TSP_444 GTN-P_TSP_501 GTN-P_TSP_528 GTN-P_TSP_55 GTN-P_TSP_64 GTN-P_TSP_674 GTN-P_TSP_710 GTN-P_TSP_79 GTN-P_TSP_831 GTN-P_TSP_854 GTN-P_TSP_871 Gulakana Identification Janssonhaugen_P10 KAN2005-01 Kangiqsualujjuaq Creep site (KANGCRE) Latitude of event Longitude of event MAGT Norman Wells Optional event label PACE 30 Juvvasshoe PACE Tarfalaryggen Permafrost dataset 2021 ftpangaea https://doi.org/10.1594/PANGAEA.93066910.1038/s41467-018-08240-410.13093/permos-2019-01 2024-07-24T02:31:34Z This data set provides selected ground temperature time series of long-term established boreholes in permafrost regions. Data include mean annual ground temperature (MAGT), borehole ID's, depths of measurements in a borehole, coordinates (lat, long, elevation), and principle investigators of the boreholes. Data comprise averaged values per year in °C from 1978 to 2016 CE at depths ranging from 3.6 to 24.4 m (mean 16.2 m) below surface. The entire data set provides n=483 temperature values and was used, including methods description, in the overview figure in Biskaborn et al. 2019 (Fig. 1). Data from the Swiss Alps are provided by the Swiss Permafrost Monitoring Network PERMOS, PERMOS 2019: doi:10.13093/permos-2019-01. Dataset Global Terrestrial Network for Permafrost GTN-P Kangiqsualujjuaq permafrost PANGAEA - Data Publisher for Earth & Environmental Science ENVELOPE(-149.580400,128.849400,82.500000,-66.275300)
institution Open Polar
collection PANGAEA - Data Publisher for Earth & Environmental Science
op_collection_id ftpangaea
language English
topic Alert 2
Bolvansky 54
Boreholes
Boulder Clay
Chandalar Shelf
COR_0287
Deadhorse
DEPTH
sediment/rock
DRILL
Drilling/drill rig
Elevation of event
Event label
FranklBluffs
Global Terrestrial Network for Permafrost
GTN-P
GTN-P_TSP_102
GTN-P_TSP_1113
GTN-P_TSP_117
GTN-P_TSP_1710
GTN-P_TSP_265
GTN-P_TSP_287
GTN-P_TSP_356
GTN-P_TSP_386
GTN-P_TSP_431
GTN-P_TSP_444
GTN-P_TSP_501
GTN-P_TSP_528
GTN-P_TSP_55
GTN-P_TSP_64
GTN-P_TSP_674
GTN-P_TSP_710
GTN-P_TSP_79
GTN-P_TSP_831
GTN-P_TSP_854
GTN-P_TSP_871
Gulakana
Identification
Janssonhaugen_P10
KAN2005-01
Kangiqsualujjuaq
Creep site (KANGCRE)
Latitude of event
Longitude of event
MAGT
Norman Wells
Optional event label
PACE 30 Juvvasshoe
PACE Tarfalaryggen
Permafrost
spellingShingle Alert 2
Bolvansky 54
Boreholes
Boulder Clay
Chandalar Shelf
COR_0287
Deadhorse
DEPTH
sediment/rock
DRILL
Drilling/drill rig
Elevation of event
Event label
FranklBluffs
Global Terrestrial Network for Permafrost
GTN-P
GTN-P_TSP_102
GTN-P_TSP_1113
GTN-P_TSP_117
GTN-P_TSP_1710
GTN-P_TSP_265
GTN-P_TSP_287
GTN-P_TSP_356
GTN-P_TSP_386
GTN-P_TSP_431
GTN-P_TSP_444
GTN-P_TSP_501
GTN-P_TSP_528
GTN-P_TSP_55
GTN-P_TSP_64
GTN-P_TSP_674
GTN-P_TSP_710
GTN-P_TSP_79
GTN-P_TSP_831
GTN-P_TSP_854
GTN-P_TSP_871
Gulakana
Identification
Janssonhaugen_P10
KAN2005-01
Kangiqsualujjuaq
Creep site (KANGCRE)
Latitude of event
Longitude of event
MAGT
Norman Wells
Optional event label
PACE 30 Juvvasshoe
PACE Tarfalaryggen
Permafrost
GTN-P
Long-term mean annual ground temperature data for permafrost
topic_facet Alert 2
Bolvansky 54
Boreholes
Boulder Clay
Chandalar Shelf
COR_0287
Deadhorse
DEPTH
sediment/rock
DRILL
Drilling/drill rig
Elevation of event
Event label
FranklBluffs
Global Terrestrial Network for Permafrost
GTN-P
GTN-P_TSP_102
GTN-P_TSP_1113
GTN-P_TSP_117
GTN-P_TSP_1710
GTN-P_TSP_265
GTN-P_TSP_287
GTN-P_TSP_356
GTN-P_TSP_386
GTN-P_TSP_431
GTN-P_TSP_444
GTN-P_TSP_501
GTN-P_TSP_528
GTN-P_TSP_55
GTN-P_TSP_64
GTN-P_TSP_674
GTN-P_TSP_710
GTN-P_TSP_79
GTN-P_TSP_831
GTN-P_TSP_854
GTN-P_TSP_871
Gulakana
Identification
Janssonhaugen_P10
KAN2005-01
Kangiqsualujjuaq
Creep site (KANGCRE)
Latitude of event
Longitude of event
MAGT
Norman Wells
Optional event label
PACE 30 Juvvasshoe
PACE Tarfalaryggen
Permafrost
description This data set provides selected ground temperature time series of long-term established boreholes in permafrost regions. Data include mean annual ground temperature (MAGT), borehole ID's, depths of measurements in a borehole, coordinates (lat, long, elevation), and principle investigators of the boreholes. Data comprise averaged values per year in °C from 1978 to 2016 CE at depths ranging from 3.6 to 24.4 m (mean 16.2 m) below surface. The entire data set provides n=483 temperature values and was used, including methods description, in the overview figure in Biskaborn et al. 2019 (Fig. 1). Data from the Swiss Alps are provided by the Swiss Permafrost Monitoring Network PERMOS, PERMOS 2019: doi:10.13093/permos-2019-01.
format Dataset
author GTN-P
author_facet GTN-P
author_sort GTN-P
title Long-term mean annual ground temperature data for permafrost
title_short Long-term mean annual ground temperature data for permafrost
title_full Long-term mean annual ground temperature data for permafrost
title_fullStr Long-term mean annual ground temperature data for permafrost
title_full_unstemmed Long-term mean annual ground temperature data for permafrost
title_sort long-term mean annual ground temperature data for permafrost
publisher PANGAEA
publishDate 2021
url https://doi.pangaea.de/10.1594/PANGAEA.930669
https://doi.org/10.1594/PANGAEA.930669
op_coverage MEDIAN LATITUDE: 58.748098 * MEDIAN LONGITUDE: -37.960023 * SOUTH-BOUND LATITUDE: -66.275300 * WEST-BOUND LONGITUDE: -149.580400 * NORTH-BOUND LATITUDE: 82.500000 * EAST-BOUND LONGITUDE: 128.849400 * MINIMUM DEPTH, sediment/rock: 3.60 m * MAXIMUM DEPTH, sediment/rock: 24.40 m
long_lat ENVELOPE(-149.580400,128.849400,82.500000,-66.275300)
genre Global Terrestrial Network for Permafrost
GTN-P
Kangiqsualujjuaq
permafrost
genre_facet Global Terrestrial Network for Permafrost
GTN-P
Kangiqsualujjuaq
permafrost
op_relation Biskaborn, Boris K; Smith, Sharon L; Noetzli, Jeannette; Matthes, Heidrun; Vieira, Gonçalo; Streletskiy, Dmitry A; Schoeneich, Philippe; Romanovsky, Vladimir E; Lewkowicz, Antoni G; Abramov, Andrey; Allard, Michel; Boike, Julia; Cable, William L; Christiansen, Hanne Hvidtfeldt; Delaloye, Reynald; Diekmann, Bernhard; Drozdov, Dimitry S; Etzelmüller, Bernd; Grosse, Guido; Guglielmin, Mauro; Ingeman-Nielsen, Thomas; Isaksen, Ketil; Ishikawa, Mamoru; Johansson, Margareta; Johannsson, Halldor; Joo, Anseok; Kaverin, Dmitry; Kholodov, Alexander L; Konstantinov, Pavel; Kröger, Silke; Lambiel, Christophe; Lanckman, Jean-Pierre; Luo, Dongliang; Malkova, Galina; Meiklejohn, Ian; Moskalenko, Nataliya G; Oliva, Marc; Ramos, Miguel; Sannel, A Britta K; Sergeev, Dmitry V; Seybold, Cathy; Skryabin, Pavel; Vasiliev, Alexander; Wu, Qingbai; Yoshikawa, Kenji; Zheleznyak, Mikail; Lantuit, Hugues (2019): Permafrost is warming at a global scale. Nature Communications, 10(1), https://doi.org/10.1038/s41467-018-08240-4
PERMOS 2019 (2019). PERMOS Database. Swiss Permafrost Monitoring Network, Fribourg and Davos, Switzerland, https://doi.org/10.13093/permos-2019-01
GTN-P 2019 authors list (URI: https://store.pangaea.de/Publications/BiskabornB-etal_2018/GTN-P_2018_Authors.pdf)
https://doi.pangaea.de/10.1594/PANGAEA.930669
https://doi.org/10.1594/PANGAEA.930669
op_rights CC-BY-4.0: Creative Commons Attribution 4.0 International
Access constraints: unrestricted
info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.1594/PANGAEA.93066910.1038/s41467-018-08240-410.13093/permos-2019-01
_version_ 1810445436044967936