Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ...
The data was collected with an IRIS Syscal Pro Deep Marine resistivity system that was equipped with a GPS and an echo-sounder to record water depths. The geoelectric cable had an electrode separation of 10 m and the electrodes were arranged in a reciprocal Wenner Schlumberger array. The offset betw...
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ftdatacite:10.1594/pangaea.934159 2024-09-15T18:17:41+00:00 Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... Angelopoulos, Michael Overduin, Pier Paul Jenrich, Maren Nitze, Ingmar Günther, Frank Strauss, Jens Westermann, Sebastian Schirrmeister, Lutz Kholodov, Alexander L Krautblatter, Michael Grigoriev, Mikhail N Grosse, Guido 2021 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.934159 https://doi.pangaea.de/10.1594/PANGAEA.934159 en eng PANGAEA https://dx.doi.org/10.1594/pangaea.934169 Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 Alas Bykovsky electrical resistivity Lena Delta Near surface geophysics Submarine Permafrost subsea permafrost talik Thermokarst Lagoon POINT DISTANCE from start DEPTH, water Resistivity, apparent Position LATITUDE LONGITUDE Electrical resistivity tomography Resistivity profiler, IRIS Syscal Pro Deep Marine RU-Land_2017_Lena AWI Arctic Land Expedition CATS - The Changing Arctic Transpolar System CATS NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK Rapid Permafrost Thaw in a Warming Arctic and Impacts on the Soil Organic Carbon Pool PETA-CARB Dataset dataset 2021 ftdatacite https://doi.org/10.1594/pangaea.93415910.1594/pangaea.934169 2024-07-03T10:20:00Z The data was collected with an IRIS Syscal Pro Deep Marine resistivity system that was equipped with a GPS and an echo-sounder to record water depths. The geoelectric cable had an electrode separation of 10 m and the electrodes were arranged in a reciprocal Wenner Schlumberger array. The offset between the first electrode and the boat was approximately 10 m. ... : Distance: Distance of boat position from starting point (m). This is not a cumulative distance.Water_depth: Water depth (m) from echo-sounderP1P2: Apparent resistivity (ohm-m) measured between potential electrodes P1 and P2. The remaining apparent resistivity columns have the same structure.C1: Position (m) of current electrode C1 relative to the boat position. For example, -60 m indicates that C1 is located 60 m behind the boat at the profile start.C2: Position (m) of current electrode C2 relative to the boat position. For example, -70 m indicates that C2 is located 70 m behind the boat at the profile start.P1: Position (m) of potential electrode P1 relative to the boat position. For example, -80 m indicates that P1 is located 80 m behind the boat at the profile start.P2: Position (m) of potential electrode P2 relative to the boat position. For example, -50 m indicates that P2 is located 50 m behind the boat at the profile start.The remaining electrode position columns follow the same structure.Latitude: ... Dataset lena delta permafrost Thermokarst Siberia DataCite |
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Open Polar |
collection |
DataCite |
op_collection_id |
ftdatacite |
language |
English |
topic |
Alas Bykovsky electrical resistivity Lena Delta Near surface geophysics Submarine Permafrost subsea permafrost talik Thermokarst Lagoon POINT DISTANCE from start DEPTH, water Resistivity, apparent Position LATITUDE LONGITUDE Electrical resistivity tomography Resistivity profiler, IRIS Syscal Pro Deep Marine RU-Land_2017_Lena AWI Arctic Land Expedition CATS - The Changing Arctic Transpolar System CATS NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK Rapid Permafrost Thaw in a Warming Arctic and Impacts on the Soil Organic Carbon Pool PETA-CARB |
spellingShingle |
Alas Bykovsky electrical resistivity Lena Delta Near surface geophysics Submarine Permafrost subsea permafrost talik Thermokarst Lagoon POINT DISTANCE from start DEPTH, water Resistivity, apparent Position LATITUDE LONGITUDE Electrical resistivity tomography Resistivity profiler, IRIS Syscal Pro Deep Marine RU-Land_2017_Lena AWI Arctic Land Expedition CATS - The Changing Arctic Transpolar System CATS NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK Rapid Permafrost Thaw in a Warming Arctic and Impacts on the Soil Organic Carbon Pool PETA-CARB Angelopoulos, Michael Overduin, Pier Paul Jenrich, Maren Nitze, Ingmar Günther, Frank Strauss, Jens Westermann, Sebastian Schirrmeister, Lutz Kholodov, Alexander L Krautblatter, Michael Grigoriev, Mikhail N Grosse, Guido Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... |
topic_facet |
Alas Bykovsky electrical resistivity Lena Delta Near surface geophysics Submarine Permafrost subsea permafrost talik Thermokarst Lagoon POINT DISTANCE from start DEPTH, water Resistivity, apparent Position LATITUDE LONGITUDE Electrical resistivity tomography Resistivity profiler, IRIS Syscal Pro Deep Marine RU-Land_2017_Lena AWI Arctic Land Expedition CATS - The Changing Arctic Transpolar System CATS NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK Rapid Permafrost Thaw in a Warming Arctic and Impacts on the Soil Organic Carbon Pool PETA-CARB |
description |
The data was collected with an IRIS Syscal Pro Deep Marine resistivity system that was equipped with a GPS and an echo-sounder to record water depths. The geoelectric cable had an electrode separation of 10 m and the electrodes were arranged in a reciprocal Wenner Schlumberger array. The offset between the first electrode and the boat was approximately 10 m. ... : Distance: Distance of boat position from starting point (m). This is not a cumulative distance.Water_depth: Water depth (m) from echo-sounderP1P2: Apparent resistivity (ohm-m) measured between potential electrodes P1 and P2. The remaining apparent resistivity columns have the same structure.C1: Position (m) of current electrode C1 relative to the boat position. For example, -60 m indicates that C1 is located 60 m behind the boat at the profile start.C2: Position (m) of current electrode C2 relative to the boat position. For example, -70 m indicates that C2 is located 70 m behind the boat at the profile start.P1: Position (m) of potential electrode P1 relative to the boat position. For example, -80 m indicates that P1 is located 80 m behind the boat at the profile start.P2: Position (m) of potential electrode P2 relative to the boat position. For example, -50 m indicates that P2 is located 50 m behind the boat at the profile start.The remaining electrode position columns follow the same structure.Latitude: ... |
format |
Dataset |
author |
Angelopoulos, Michael Overduin, Pier Paul Jenrich, Maren Nitze, Ingmar Günther, Frank Strauss, Jens Westermann, Sebastian Schirrmeister, Lutz Kholodov, Alexander L Krautblatter, Michael Grigoriev, Mikhail N Grosse, Guido |
author_facet |
Angelopoulos, Michael Overduin, Pier Paul Jenrich, Maren Nitze, Ingmar Günther, Frank Strauss, Jens Westermann, Sebastian Schirrmeister, Lutz Kholodov, Alexander L Krautblatter, Michael Grigoriev, Mikhail N Grosse, Guido |
author_sort |
Angelopoulos, Michael |
title |
Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... |
title_short |
Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... |
title_full |
Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... |
title_fullStr |
Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... |
title_full_unstemmed |
Marine electrical resistivity profile 1, Bykovsky Peninsula, Siberia ... |
title_sort |
marine electrical resistivity profile 1, bykovsky peninsula, siberia ... |
publisher |
PANGAEA |
publishDate |
2021 |
url |
https://dx.doi.org/10.1594/pangaea.934159 https://doi.pangaea.de/10.1594/PANGAEA.934159 |
genre |
lena delta permafrost Thermokarst Siberia |
genre_facet |
lena delta permafrost Thermokarst Siberia |
op_relation |
https://dx.doi.org/10.1594/pangaea.934169 |
op_rights |
Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 |
op_doi |
https://doi.org/10.1594/pangaea.93415910.1594/pangaea.934169 |
_version_ |
1810455767603478528 |