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  • PANGAEA  (13)
  • Copernicus Publications (EGU)  (1)
  • 2020-2024  (14)
  • 2020  (14)
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  • 2020-2024  (14)
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  • 1
    Publication Date: 2023-02-08
    Description: There has been a steady increase in interest in mining of deep-sea minerals in the Clarion–Clipperton Zone (CCZ) in the eastern Pacific Ocean during the last decade. This region is known to be one of the most eddy-rich regions in the world ocean. Typically, mesoscale eddies are generated by intense wind bursts channeled through gaps in the Sierra Madre mountains in Central America. Here, we use a combination of satellite and in situ observations to evaluate the relationship between deep-sea current variability in the region of potential future mining and eddy kinetic energy (EKE) in the vicinity of gap winds. A geometry-based eddy detection algorithm has been applied to altimetry sea surface height data for a period of 24 years, from 1993 to 2016, in order to analyze the main characteristic parameters and the spatiotemporal variability of mesoscale eddies in the northeast tropical Pacific Ocean (NETP). Significant differences between the characteristics of eddies with different polarity (cyclonic vs. anticyclonic) were found. For eddies with lifetimes longer than 1 d, cyclonic polarity is more common than anticyclonic rotation. However, anticyclonic eddies are larger in size, show stronger vorticity, and survive longer in the ocean than cyclonic eddies (often 90 d or more). Besides the polarity of eddies, the location of eddy formation should be taken into consideration when investigating the impacted deep-ocean region as we found eddies originating from the Tehuantepec (TT) gap winds lasting longer in the ocean and traveling farther distances in a different direction compared to eddies produced by the Papagayo (PP) gap winds. Long-lived anticyclonic eddies generated by the TT gap winds are observed to travel distances up to 4500 km offshore, i.e., as far as west of 110∘ W. EKE anomalies observed in the surface of the central ocean at distances of ca. 2500 km from the coast correlate with the seasonal variability of EKE in the region of the TT gap winds with a time lag of 5–6 months. A significant seasonal variability of deep-ocean current velocities at water depths of 4100 m was observed in multiple-year time series data, likely reflecting the energy transfer of the surface EKE generated by the gap winds to the deep ocean. Furthermore, the influence of mesoscale eddies on deep-ocean currents is examined by analyzing the deep-ocean current measurements when an anticyclonic eddy crosses the study region. Our findings suggest that despite the significant modulation of dominant current directions driven by the bottom-reaching eddy, the current magnitude intensification was not strong enough to trigger local sediment resuspension in this region. A better insight into the annual variability of ocean surface mesoscale activity in the CCZ and its effects on deep-ocean current variability can be of great help to mitigate the impact of future potential deep-sea mining activities on the benthic ecosystem. On an interannual scale, a significant relationship between cyclonic eddy characteristics and El Niño–Southern Oscillation (ENSO) was found, whereas a weaker correlation was detected for anticyclonic eddies.
    Type: Article , PeerReviewed
    Format: text
    Location Call Number Limitation Availability
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  • 2
    Publication Date: 2023-04-27
    Keywords: Black Sea; Center for Marine Environmental Sciences; Danube deep sea fan; DEPTH, sediment/rock; Device type; gas hydrate; GeoB22603-1; light hydrocarbons; M142; M142_03-1; MARUM; MeBo200; Meteor (1986); Methane; Method/Device of event; Optional event label; pore water; RV Meteor; Sample type; Submarine Gas Hydrate Resources; SUGAR; SUGAR project; δ18O, water; δ Deuterium, water
    Type: Dataset
    Format: text/tab-separated-values, 68 data points
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2023-04-27
    Keywords: Black Sea; Center for Marine Environmental Sciences; Danube deep sea fan; DEPTH, sediment/rock; Device type; gas hydrate; GeoB22620-1; light hydrocarbons; M142; M142_21-1; MARUM; MeBo200; Meteor (1986); Methane; Method/Device of event; Optional event label; pore water; RV Meteor; Sample type; Submarine Gas Hydrate Resources; SUGAR; SUGAR project; δ18O, water; δ Deuterium, water
    Type: Dataset
    Format: text/tab-separated-values, 12 data points
    Location Call Number Limitation Availability
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  • 4
    Publication Date: 2023-04-27
    Keywords: Black Sea; Center for Marine Environmental Sciences; Danube deep sea fan; DEPTH, sediment/rock; Device type; gas hydrate; GeoB22605-1; light hydrocarbons; M142; M142_06-1; MARUM; MeBo200; Meteor (1986); Methane; Method/Device of event; Optional event label; pore water; RV Meteor; Sample type; Submarine Gas Hydrate Resources; SUGAR; SUGAR project; δ18O, water; δ Deuterium, water
    Type: Dataset
    Format: text/tab-separated-values, 52 data points
    Location Call Number Limitation Availability
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  • 5
    Publication Date: 2023-04-27
    Description: Data for estimating heat flow in the western Black Sea are provided, based on measurements made during Expedition MSM34 (R/V Maria S. Merian). Data are located in the Bulgarian and Romanian Sector of the Black Sea in water depths ranging from 420 to 1500 m. Data were always collected with the GEOMAR-owned 6 m long heat-probe tool, consisting of 22 Thermistors (at 26 cm spacing) along a sensor-string, a reference pressure gauge and calibration thermometer (T100 sensor). Raw data are required to be calibrated relative to the T100 sensor. Calibration data for both expeditions are provided in form of temperature offsets for each thermistor. Data provided include per station all original (raw) data for each deployment (temperature as function of time, pressure/Depth) for each thermistor, as well as initial results after separating each individual measurement sequence into penetration files (pen-files) where the temperature calibration has been applied. Results report an average thermal Gradient, heat-flux and thermal conductivity over the total penetraiton Depth of 6m. Detailed information (temperature and thermal conductivity as function of depth at each location) is given in graphical form as well as ascii data per individual penetration.
    Keywords: Black Sea; Comment; Conductivity, thermal; Depth, bathymetric; Event label; File content; File format; File name; File size; heat flow; Heat flow; Heat-Flow probe; HF; LATITUDE; LONGITUDE; Maria S. Merian; MSM34/2; MSM34/2_003-1; MSM34/2_028-1; MSM34/2_029-1; MSM34/2_030-1; MSM34/2_031-1; MSM34/2_032-1; MSM34/2_033-1; MSM34/2_034-1; MSM34/2_035-1; MSM34/2_036-1; MSM34/2_037-1; MSM34/2_038-1; MSM34/2_044-1; MSM34/2_045-1; MSM34/2_046-1; MSM34/2_047-1; MSM34/2_048-1; MSM34/2_049-1; MSM34/2_050-1; MSM34/2_067-1; MSM34/2_068-1; MSM34/2_069-1; MSM34/2_070-1; MSM34/2_071-1; MSM34/2_072-1; MSM34/2_072-2; MSM34/2_073-1; MSM34/2_076-1; MSM34/2_077-1; MSM34/2_078-1; MSM34/2_079-1; MSM34/2_080-1; MSM34/2_081-1; MSM34/2_082-1; MSM34/2_083-1; MSM34/2_084-1; MSM34/2_085-1; MSM34/2_086-1; MSM34/2_087-1; MSM34/2_088-1; Sample code/label; Station label; Temperature gradient; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 442 data points
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  • 6
    Publication Date: 2023-08-03
    Description: Concentrations of methane (headspace gas) in gravity cores and mini cores from the Kerch Seep area, Black Sea.
    Keywords: Black Sea; Center for Marine Environmental Sciences; ex situ; Gravity core; Kerch seep area; M84/2; MARUM; methane concentrations; mini core
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 7
    Publication Date: 2024-02-02
    Keywords: 251; Black Sea; Center for Marine Environmental Sciences; Comment; DEPTH, sediment/rock; ex situ; GeoB15513-3; Gravity core; Headspace gas chromatography; Kerch Flare; Kerch seep area; M84/2; MARUM; Meteor (1986); Methane, porewater; methane concentrations; MIC; mini core; MiniCorer
    Type: Dataset
    Format: text/tab-separated-values, 60 data points
    Location Call Number Limitation Availability
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  • 8
    Publication Date: 2024-02-02
    Keywords: 260; Black Sea; Center for Marine Environmental Sciences; Comment; DEPTH, sediment/rock; ex situ; GC; GeoB15518-1; Gravity core; Gravity corer; Headspace gas chromatography; Kerch Flare; Kerch seep area; M84/2; MARUM; Meteor (1986); Methane, porewater; methane concentrations; mini core
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 9
    Publication Date: 2024-02-02
    Keywords: 258; Black Sea; Center for Marine Environmental Sciences; Comment; DEPTH, sediment/rock; ex situ; GeoB15516-3; Gravity core; Headspace gas chromatography; Kerch Flare; Kerch seep area; M84/2; MARUM; Meteor (1986); Methane, porewater; methane concentrations; MIC; mini core; MiniCorer
    Type: Dataset
    Format: text/tab-separated-values, 56 data points
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  • 10
    Publication Date: 2024-02-02
    Keywords: 264; Black Sea; Center for Marine Environmental Sciences; Comment; DEPTH, sediment/rock; ex situ; GeoB15519-2; Gravity core; Headspace gas chromatography; Kerch Flare; Kerch seep area; M84/2; MARUM; Meteor (1986); Methane, porewater; methane concentrations; MIC; mini core; MiniCorer
    Type: Dataset
    Format: text/tab-separated-values, 60 data points
    Location Call Number Limitation Availability
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