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  • Data  (5)
  • ADCP data; Autonomous underwater vehicle; AUV; AUV underway data; BlueMining; Breakthrough Solutions for Mineral Extraction and Processing in Extreme Environment – Blue Mining; CTD data; DEPTH, water; Heading; LATITUDE; LONGITUDE; M127; M127_696-1; Meteor (1986); Pitch angle; Redox potential; Roll angle; Signal; TAG_field; Time in seconds; turbidity  (3)
  • 1; 11; 12; 13; 14; 15; 16; 17; 18; 19; 20; 21; 22; 23; 24; 25; 26; 27; 28; 29; 30; 31; 32; 32A; 32B; 32C; 35; 37; 39; 4; 41; 5; 7; 9; AL1977-78; AL1977-78_1; AL1977-78_11; AL1977-78_12; AL1977-78_13; AL1977-78_14; AL1977-78_15; AL1977-78_16; AL1977-78_17; AL1977-78_18; AL1977-78_19; AL1977-78_20; AL1977-78_21; AL1977-78_22; AL1977-78_23; AL1977-78_24; AL1977-78_25; AL1977-78_26; AL1977-78_27; AL1977-78_28; AL1977-78_29; AL1977-78_30; AL1977-78_31; AL1977-78_32; AL1977-78_32A; AL1977-78_32B; AL1977-78_32C; AL1977-78_35; AL1977-78_37; AL1977-78_39; AL1977-78_4; AL1977-78_41; AL1977-78_5; AL1977-78_7; AL1977-78_9; Alkor (1965); Area/locality; Arnis, Baltic Sea; Baltic Sea; Bienebek, Baltic Sea; Cadmium; Cadmium, particulate; Copper; Copper, particulate; DATE/TIME; DEPTH, water; Event label; Falshöft, Baltic Sea; Friedrichsort, Baltic Sea; Geltinger Bay, Western Baltic Sea, Germany; Große Breite, Baltic Sea; Gunnebyer Noor, Baltic Sea; Hafen Eckernförde, Baltic Sea; Hafen Flensburg, Baltic Sea; Hafen Schleswig, Baltic Sea; Holnis Nord, Baltic Sea; Iron; Iron, particulate; Kappeln, Baltic Sea; Karlsminde, Baltic Sea; Kleine Breite, Baltic Sea; Königsburg, Baltic Sea; Latitude of event; Lindauer Noor, Baltic Sea; Longitude of event; Maasholm, Baltic Sea; Manganese, particulate; Manganese 2+; Missunde, Baltic Sea; Mittelgrund, Baltic Sea; Mittelgrund West, Baltic Sea; Nickel; nördlich Bülk, Baltic Sea; Ochseninsel, Baltic Sea; Querab Geltinger Bucht, Baltic Sea; Rabelsund, Baltic Sea; Schlei - Tonne, Baltic Sea; Schwentinemündung, Baltic Sea; Technische Versuchsanstalt Nord, Baltic Sea; Tirpitzhafen/Mönkeberg, Baltic Sea; Tonne 2, Baltic Sea; Tonne 6, Baltic Sea; TPN; Transparent Plastic Nansen water sampler; vor Howaldt (Gaarden), Baltic Sea; Zinc; Zinc, particulate  (1)
  • 2014 Iquique earthquake; Binary Object; Binary Object (File Size); File content; Geodetic Earthquake Observatory on the SEAfloor; GeoSEA; GEOSEA; JPIO; local earthquakes; Marcus G. Langseth; MGL1610; MGL1610_OBA3; MGL1610_OBC6; MGL1610_OBC7; MGL1610_OBC8; MGL1610_OBN1; MGL1610_OBN2; MGL1610_OBN3; MGL1610_OBN6; MGL1610_OBN7; MGL1610_OBS1; North Chile; OB01; OB010; OB012; OB013; OB014; OB015; OB02; OB03; OB05; OB06; OB07; OB09; OB10; OB12; OB13; OB14; OB15; OBA3; OBC6; OBC7; OBC8; OBN1; OBN2; OBN3; OBN6; OBN7; OBS; OBS1; Ocean bottom seismometer; OVP TORO; OVP-TORO; OVP-TORO_01; OVP-TORO_02; OVP-TORO_03; OVP-TORO_05; OVP-TORO_06; OVP-TORO_07; OVP-TORO_09; OVP-TORO_10; OVP-TORO_12; OVP-TORO_13; OVP-TORO_14; OVP-TORO_15; Pacific; SECO; SEISAN seismology software; seismicity; SO244/1; SO244/1_10-1; SO244/1_1-1; SO244/1_14-1; SO244/1_23-1; SO244/1_28-1; SO244/1_4-1; SO244/1_43-1; SO244/1_45-1; SO244/1_47-1; SO244/1_49-1; SO244/1_6-1; SO244/1_8-1; SO244/2; SO244/2_9-1_OBA3; SO244/2_9-1_OBC6; SO244/2_9-1_OBC7; SO244/2_9-1_OBC8; SO244/2_9-1_OBN1; SO244/2_9-1_OBN2; SO244/2_9-1_OBN3; SO244/2_9-1_OBN6; SO244/2_9-1_OBN7; SO244/2_9-1_OBS1; Sonne_2; South Pacific Ocean; subduction zone; The Fine Structure of a Seismogenic Zone Revealed by Aftershocks of the 2014 Iquique Mw 8.1 Earthquake  (1)
Collection
  • Data  (5)
Keywords
Publisher
Years
  • 1
    Publication Date: 2023-05-12
    Keywords: 1; 11; 12; 13; 14; 15; 16; 17; 18; 19; 20; 21; 22; 23; 24; 25; 26; 27; 28; 29; 30; 31; 32; 32A; 32B; 32C; 35; 37; 39; 4; 41; 5; 7; 9; AL1977-78; AL1977-78_1; AL1977-78_11; AL1977-78_12; AL1977-78_13; AL1977-78_14; AL1977-78_15; AL1977-78_16; AL1977-78_17; AL1977-78_18; AL1977-78_19; AL1977-78_20; AL1977-78_21; AL1977-78_22; AL1977-78_23; AL1977-78_24; AL1977-78_25; AL1977-78_26; AL1977-78_27; AL1977-78_28; AL1977-78_29; AL1977-78_30; AL1977-78_31; AL1977-78_32; AL1977-78_32A; AL1977-78_32B; AL1977-78_32C; AL1977-78_35; AL1977-78_37; AL1977-78_39; AL1977-78_4; AL1977-78_41; AL1977-78_5; AL1977-78_7; AL1977-78_9; Alkor (1965); Area/locality; Arnis, Baltic Sea; Baltic Sea; Bienebek, Baltic Sea; Cadmium; Cadmium, particulate; Copper; Copper, particulate; DATE/TIME; DEPTH, water; Event label; Falshöft, Baltic Sea; Friedrichsort, Baltic Sea; Geltinger Bay, Western Baltic Sea, Germany; Große Breite, Baltic Sea; Gunnebyer Noor, Baltic Sea; Hafen Eckernförde, Baltic Sea; Hafen Flensburg, Baltic Sea; Hafen Schleswig, Baltic Sea; Holnis Nord, Baltic Sea; Iron; Iron, particulate; Kappeln, Baltic Sea; Karlsminde, Baltic Sea; Kleine Breite, Baltic Sea; Königsburg, Baltic Sea; Latitude of event; Lindauer Noor, Baltic Sea; Longitude of event; Maasholm, Baltic Sea; Manganese, particulate; Manganese 2+; Missunde, Baltic Sea; Mittelgrund, Baltic Sea; Mittelgrund West, Baltic Sea; Nickel; nördlich Bülk, Baltic Sea; Ochseninsel, Baltic Sea; Querab Geltinger Bucht, Baltic Sea; Rabelsund, Baltic Sea; Schlei - Tonne, Baltic Sea; Schwentinemündung, Baltic Sea; Technische Versuchsanstalt Nord, Baltic Sea; Tirpitzhafen/Mönkeberg, Baltic Sea; Tonne 2, Baltic Sea; Tonne 6, Baltic Sea; TPN; Transparent Plastic Nansen water sampler; vor Howaldt (Gaarden), Baltic Sea; Zinc; Zinc, particulate
    Type: Dataset
    Format: text/tab-separated-values, 2055 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-04-20
    Description: This dataset includes earthquake locations from a 23 months long Ocean Bottom Seismometer (OBS) experiment conducted in response to the 2014 Mw 8.1 Iquique earthquake at the northern Chilean subduction zone. The experiment is separated into two subsequent OBS networks from December 2014 until October 2016. The accompanying zip-file SEISAN_WAV.zip includes raw waveform data for all earthquakes, the file Nordic.nor (ASCII Table) that includes all phase onset picks of all earthquakes. All data in the zipped archives can be used with the SEISAN seismology software.
    Keywords: 2014 Iquique earthquake; Binary Object; Binary Object (File Size); File content; Geodetic Earthquake Observatory on the SEAfloor; GeoSEA; GEOSEA; JPIO; local earthquakes; Marcus G. Langseth; MGL1610; MGL1610_OBA3; MGL1610_OBC6; MGL1610_OBC7; MGL1610_OBC8; MGL1610_OBN1; MGL1610_OBN2; MGL1610_OBN3; MGL1610_OBN6; MGL1610_OBN7; MGL1610_OBS1; North Chile; OB01; OB010; OB012; OB013; OB014; OB015; OB02; OB03; OB05; OB06; OB07; OB09; OB10; OB12; OB13; OB14; OB15; OBA3; OBC6; OBC7; OBC8; OBN1; OBN2; OBN3; OBN6; OBN7; OBS; OBS1; Ocean bottom seismometer; OVP TORO; OVP-TORO; OVP-TORO_01; OVP-TORO_02; OVP-TORO_03; OVP-TORO_05; OVP-TORO_06; OVP-TORO_07; OVP-TORO_09; OVP-TORO_10; OVP-TORO_12; OVP-TORO_13; OVP-TORO_14; OVP-TORO_15; Pacific; SECO; SEISAN seismology software; seismicity; SO244/1; SO244/1_10-1; SO244/1_1-1; SO244/1_14-1; SO244/1_23-1; SO244/1_28-1; SO244/1_4-1; SO244/1_43-1; SO244/1_45-1; SO244/1_47-1; SO244/1_49-1; SO244/1_6-1; SO244/1_8-1; SO244/2; SO244/2_9-1_OBA3; SO244/2_9-1_OBC6; SO244/2_9-1_OBC7; SO244/2_9-1_OBC8; SO244/2_9-1_OBN1; SO244/2_9-1_OBN2; SO244/2_9-1_OBN3; SO244/2_9-1_OBN6; SO244/2_9-1_OBN7; SO244/2_9-1_OBS1; Sonne_2; South Pacific Ocean; subduction zone; The Fine Structure of a Seismogenic Zone Revealed by Aftershocks of the 2014 Iquique Mw 8.1 Earthquake
    Type: Dataset
    Format: text/tab-separated-values, 4 data points
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2024-04-20
    Description: A total of fifteen missions of the autonomous underwater vehicle (AUV) Abyss was performed in June 2016 over the TAG hydrothermal field as part of the EU-funded project Blue Mining. Each dive lasted a few hours and recorded information for a number of sensors including ADCP (RDI Teledyne Model WHN300 S/N), CTD (Seabird SBE49FastCAT), ECO (=combined fluorometer and turbidity senso; Wetlabs FLNTU/0712017), REDOX-sensor (Eh-sensor by Ko-Ichi Nakamura from AIST, South Korea) . The sensor data is recorded in separate files for each dive. The vehicles performance under water and core functions (roll, pitch, heading, power use, and many others) are recorded in the STATE file of each dive.
    Keywords: ADCP data; Autonomous underwater vehicle; AUV; AUV underway data; BlueMining; Breakthrough Solutions for Mineral Extraction and Processing in Extreme Environment – Blue Mining; CTD data; DEPTH, water; Heading; LATITUDE; LONGITUDE; M127; M127_696-1; Meteor (1986); Pitch angle; Redox potential; Roll angle; Signal; TAG_field; Time in seconds; turbidity
    Type: Dataset
    Format: text/tab-separated-values, 56826 data points
    Location Call Number Expected Availability
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  • 4
    Publication Date: 2024-04-20
    Description: A total of fifteen missions of the autonomous underwater vehicle (AUV) Abyss was performed in June 2016 over the TAG hydrothermal field as part of the EU-funded project Blue Mining. Each dive lasted a few hours and recorded information for a number of sensors including ADCP (RDI Teledyne Model WHN300 S/N), CTD (Seabird SBE49FastCAT), ECO (=combined fluorometer and turbidity senso; Wetlabs FLNTU/0712017), REDOX-sensor (Eh-sensor by Ko-Ichi Nakamura from AIST, South Korea) . The sensor data is recorded in separate files for each dive. The vehicles performance under water and core functions (roll, pitch, heading, power use, and many others) are recorded in the STATE file of each dive.
    Keywords: ADCP data; Autonomous underwater vehicle; AUV; AUV underway data; BlueMining; Breakthrough Solutions for Mineral Extraction and Processing in Extreme Environment – Blue Mining; CTD data; DEPTH, water; Heading; LATITUDE; LONGITUDE; M127; M127_696-1; Meteor (1986); Pitch angle; Redox potential; Roll angle; Signal; TAG_field; Time in seconds; turbidity
    Type: Dataset
    Format: text/tab-separated-values, 54995 data points
    Location Call Number Expected Availability
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  • 5
    Publication Date: 2024-04-20
    Description: A total of fifteen missions of the autonomous underwater vehicle (AUV) Abyss was performed in June 2016 over the TAG hydrothermal field as part of the EU-funded project Blue Mining. Each dive lasted a few hours and recorded information for a number of sensors including ADCP (RDI Teledyne Model WHN300 S/N), CTD (Seabird SBE49FastCAT), ECO (=combined fluorometer and turbidity senso; Wetlabs FLNTU/0712017), REDOX-sensor (Eh-sensor by Ko-Ichi Nakamura from AIST, South Korea) . The sensor data is recorded in separate files for each dive. The vehicles performance under water and core functions (roll, pitch, heading, power use, and many others) are recorded in the STATE file of each dive.
    Keywords: ADCP data; Autonomous underwater vehicle; AUV; AUV underway data; BlueMining; Breakthrough Solutions for Mineral Extraction and Processing in Extreme Environment – Blue Mining; CTD data; DEPTH, water; Heading; LATITUDE; LONGITUDE; M127; M127_696-1; Meteor (1986); Pitch angle; Redox potential; Roll angle; Signal; TAG_field; Time in seconds; turbidity
    Type: Dataset
    Format: text/tab-separated-values, 57078 data points
    Location Call Number Expected Availability
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