Metadata Report for BODC Series Reference Number 2310314
Metadata Summary
Problem Reports
Data Access Policy
Narrative Documents
Project Information
Data Activity or Cruise Information
Fixed Station Information
BODC Quality Flags
SeaDataNet Quality Flags
Metadata Summary
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Problem Reports
No Problem Report Found in the Database
Data Access Policy
Open Data
These data have no specific confidentiality restrictions for users. However, users must acknowledge data sources as it is not ethical to publish data without proper attribution. Any publication or other output resulting from usage of the data should include an acknowledgment.
If the Information Provider does not provide a specific attribution statement, or if you are using Information from several Information Providers and multiple attributions are not practical in your product or application, you may consider using the following:
"Contains public sector information licensed under the Open Government Licence v1.0."
Narrative Documents
BODC processing of Nortek moored current meter data from cruise JC238, UK-OSNAP / Ellett Array moorings EB1, WB1, and WB2, July 2022 to July 2024
The mooring data were supplied to BODC as ASCII files and converted to BODC internal format (QXF). During transfer the originator's variables were mapped to unique BODC parameter codes. The following table shows the parameter mapping:
| Originator's Variable | Originator's Units | BODC Parameter Code | BODC's Units | Comments |
|---|---|---|---|---|
| YY | yyyy | AADYAA01 | Days (UTAA) | |
| MM | mm | AADYAA01 | Days (UTAA) | |
| DD | dd | AADYAA01 | Days (UTAA) | |
| HH | hh | AAFDZZ01 | Days (UTAA) | |
| T | °C | TEMPPR01 | Degrees Celsius (UPAA) | |
| P | dbar | PREXPR01 | Decibars (UPDB) | |
| U | cm s-¹ | LCEWZZ01 | Centimetres per second (UVBB) | |
| V | cm s-¹ | LCNSZZ01 | Centimetres per second (UVBB) | |
| W | cm s-¹ | LRZAZZZZ | Centimetres per second (UVBB) | |
| USS | counts | ISCMBMA1 | Dimensionless (UUUU) | |
| VSS | counts | ISCMBMA2 | Dimensionless (UUUU) | |
| WSS | counts | ISCMBMA3 | Dimensionless (UUUU) | |
| PIT | degrees | PTCHFG01 | Degrees (UAAA) | +/- 180 degrees |
| ROL | degrees | ROLLFG01 | Degrees (UAAA) | +/- 180 degrees |
| IPOW | V | BTVOLTCM | Volts (UVLT) | |
| HDG | degrees | HEADCMMG | Degrees (UAAA) |
Following transfer the data were screened using BODC in-house visualisation software. No data quality flags assigned by BODC automatic systems or manually by data manager inspection.
The following observations should be noted:
- The accuracy and resolution of sensors on legacy Aquadopp models is reported by manufacturer to be reduced when instrument pitch/roll exceeds 20 degrees, whereas model 2 units are rated for tilts up to 30 degrees. Some pitch/roll measurements exceed 20 degrees on some sensors therefore resolution on these data may be reduced.
- Potential sensor drift observed in pressure sensors for moorings EB1 sensor 6242 (5-6 dbar), WB2 sensor 6276 (~12 dbar), 6534 (~5 dbar), and 6723 (~6dbar)
- Unusual progressive 5-6 dbar decrease in pressure for mooring WB1 sensor 11997 over the first month of data collection which takes 3-4 months to potentially stabilise
- Significant spikes in pressure recorded on all moorings across data collection period with amplitudes up to or exceeding 100 dbar over periods of days to weeks. These spikes are fairly consistent across sensors on each mooring and likely represent physical oceanographic phenomena rather than sensor malfunction. Data users advised to rely on pressure measurements rather than indicative or nominal instrument deployment depths.
Originator processing of Nortek moored current meter data from cruise JC238, UK-OSNAP / Ellett Array moorings, July 2022 to July 2024
Sampling Strategy
During the RRS James Cook cruise JC238, Nortek Aquadopps were deployed on the UK-OSNAP Rockall Trough moorings: 6 at the RTEB1 site, 5 at the RTWB1 site, and 3 at the RTWB2 site. Additionally, Nortek Aquadopps were deployed on the UK-OSNAP Iceland Basin moorings: 3 at the IB3 site, 3 at the IB4 site, and 2 at the IB5 site.
Prior to deployment, their clocks were synchronised with GPS time, new batteries fitted, and a functional check was performed. They were set to record temperature, pressure, velocity, heading, pitch, and roll every hour.
These moorings were recovered during the RRS Discovery cruise DY181.
| Mooring site | Mooring location (latitude, longitude) | Water depth (m) | Deployment time (GMT) | Recovery time (GMT) |
|---|---|---|---|---|
| RTEB1 | 57.1001, -9.5642 | 1800 | 16/07/2022 12:00 | 10/07/2024 06:50 |
| RTWB1 | 57.4696, -12.7048 | 1581 | 19/07/2022 10:30 | 12/07/2024 09:10 |
| RTWB2 | 57.4707, -12.3116 | 1789 | 17/07/2022 15:00 | 11/07/2024 11:40 |
| IB3 | 58.0155, -24.4220 | 2822 | 24/07/2022 15:30 | 18/07/2024 08:00 |
| IB4 | 57.9890, -21.1466 | 2898 | 22/07/2022 17:30 | 16/07/2024 07:00 |
| IB5 | 57.8010, -19.1695 | 936 | 21/07/2022 12:00 | 15/07/2024 08:00 |
Data Acquisition and Initial Processing
After recovery the data were downloaded from the instruments and the clock offsets checked with no significant drift found. One instrument (Serial Number 11021 on IB4) was flooded and the data could not be retrieved. For the remaining datasets the following processing steps were followed:
- Removal of launch and recovery periods from dataset.
- Correction for magnetic declination.
- Correction for sound speed.
- Automatic de-spiking using a spike/mean ratio of 10.
After recovery, the compass data for SN 6273 (1770 m) from EB1 appeared suspicious, therefore all data from this sensor were considered bad. Data for this sensor was subsequently omitted, and the remaining 5 sensors' data were retained.
More detailed information regarding the processing can be found in the DY181 cruise report on pp. 67-70.
The processed data were supplied to BODC for banking.
Project Information
UK - Overturning in the Subpolar North Atlantic Programme (UK-OSNAP) Programme
UK-OSNAP is part of an international collaboration to establish a transoceanic observing system in the subpolar North Atlantic. The aim is to quantify and understand the Subpolar Gyre's response to local and remote forcing of mass, heat and freshwater fluxes, within the conceptual framework of the Atlantic Meridional Overturning Circulation (AMOC).
UK-OSNAP is developing a new observing system to provide a continuous record of full-depth, trans-basin mass, heat, and freshwater fluxes. Combining these sustained measurements with innovative modelling techniques will enable the project to characterise the circulation and fluxes of the North Atlantic Subpolar Gyre.
UK-OSNAP is funded by the Natural Environment Research Council (NERC). The project is led by the National Oceanography Centre (NOC) with partners in the University of Liverpool, the University of Oxford and the Scottish Association for Marine Science (SAMS). It is a part of international OSNAP that is led by USA and includes 10 further partner groups in Canada, France, Germany, the Netherlands and China. The project involves fieldwork at sea and model studies.
The OSNAP observing system consists of two legs: one extending from southern Labrador to the southwestern tip of Greenland across the mouth of the Labrador Sea (OSNAP West), and the second from the southeastern tip of Greenland to Scotland (OSNAP East). The observing system also includes subsurface floats (OSNAP Floats) in order to trace the pathways of overflow waters in the basin and to assess the connectivity of currents crossing the OSNAP line.
NERC have added an extension to UK-OSNAP, until October 2024. This will result in the UK-OSNAP-Decade: 10 years of observing and understanding the overturning circulation in the subpolar North Atlantic (2014-2024). UK-OSNAP Decade forms part of the wider UK-OSNAP programme. Although supported through separate funding streams, including the Collective Funds 'Changing North Atlantic' grant, OSNAP decade (NE/T00858X/1), is considered a continuation of the core programme. In line with this, activities and associated data are grouped under UK-OSNAP, with funding details recorded here rather than as a separate project.
Marine LTSS: CLASS (Climate Linked Atlantic Sector Science)
Introduction
CLASS is a five year (2018 to 2023) programme, funded by the Natural Environment Research Council (NERC) and extended until March 2024.
Scientific Rationale
The ocean plays a vital role in sustaining life on planet Earth, providing us with both living resources and climate regulation. The trajectory of anthropogenically driven climate change will be substantially controlled by the ocean due to its absorption of excess heat and carbon from the atmosphere, with consequent impacts on ocean resources that remain poorly understood. In an era of rapid planetary change, expanding global population and intense resource exploitation, it is vital that there are internationally coordinated ocean observing and prediction systems so policy makers can make sound evidence-based decisions about how to manage our interaction with the ocean. CLASS will underpin the UK contribution to these systems, documenting and understanding change in the marine environment, evaluating the impact of climate change and effectiveness of conservation measures and predicting the future evolution of marine environments. Over the five-year period CLASS will enhance the cost-effectiveness of observing systems by migrating them towards cutting edge autonomous technologies and developing new sensors. Finally, CLASS will create effective engagement activities ensuring academic partners have transparent access to NERC marine science capability through graduate training partnerships and access to shipborne, lab based and autonomous facilities, and modelling capabilities.
Marine LTSS: AtlantiS (Atlantic Climate and Environment Strategic Science)
Introduction
AtlantiS is a five year (2024 to 2029) programme, funded by the Natural Environment Research Council (NERC).
Scientific Rationale
The global ocean is the largest part of the Earth's climate system and acts as a major buffer to climate changes resulting from human activities. By absorbing 90% of excess heat and nearly a quarter of carbon resulting from anthropogenic greenhouse gas emissions, the ocean has already substantially mitigated climate change in the atmosphere and on land. However, this service has come at a cost to the health and resilience of the ocean and by extension the people who depend on it. Significant damage has been caused to biodiversity and productivity of marine ecosystems, to shelf seas and coastal environments, and to inland areas through extremes of weather. The futures of regional climate and ecological systems depend on the response of the ocean to multiple anthropogenic stressors. Understanding and predicting the response is fundamental for sustainable development and to guide adaptation and mitigation.
The challenge is that the ocean is so large and variable that it cannot be completely and fully observed. Achieving adequate knowledge on all scales requires international coordination of observing and modelling over decades. It requires advancement in technology to expand our ability to observe beyond individual ships. It requires expanding the range of variables measured to include biogeochemistry and ecology. The opportunity now is to lead new capability to combine observations from a widening range of platforms and sensors, next-generation ocean and coupled models, and innovation in digital tools to meet the goal above. A range of national and international reviews have identified priority knowledge gaps related to natural and anthropogenically driven changes in the global ocean and the Atlantic and its shelf seas, and their impacts on marine ecosystems and human society:
- how natural and anthropogenic drivers of basin and decadal changes alter the Atlantic ecosystem, and the consequences for ecosystem functioning and services;
- the importance of ocean-shelf-coast connectivity in shaping ecosystems, biodiversity, natural hazards and impacts on society;
- the implications and feedbacks associated with climate mitigation strategies, and the need for improved assessments and advice to policy makers;
- the sensitivity and timescales of feedbacks that determine the ability of the ocean to continue to mitigate climate change by absorbing excess heat and carbon.
The aim of the AtlantiS programme is to provide evidence, tools and knowledge to support the ambition for healthy, biologically diverse and resilient marine environments, a sustainable blue economy and communities safe from natural hazards. The objectives are to strengthen the capacity of UK marine science to observe, model and predict the ocean through a step change in capability to maximise the value inherent in marine data; to transform the ocean from being data poor to data rich; to provide global syntheses of iconic climate change indicators; to lead an increase in public and government understanding of the role of the ocean in climate; and to communicate actionable knowledge effectively. AtlantiS is the continuation and development of the CLASS programme, enhancing the long-term, large-scale ocean observation systems and the ocean value-chain that contributes to key national and international programmes and priorities.
Data Activity or Cruise Information
Data Activity
| Start Date (yyyy-mm-dd) | 2022-07-16 |
| End Date (yyyy-mm-dd) | 2024-07-10 |
| Organization Undertaking Activity | National Oceanography Centre, Southampton |
| Country of Organization | United Kingdom |
| Originator's Data Activity Identifier | RTEB1_07_2022 |
| Platform Category | subsurface mooring |
OSNAP Moored Instruments EB1 2022-2024
This rig was deployed as part of the Rockall Trough array of the "Overturning in the Subpolar North Atlantic Programme" (UK-OSNAP).
| Deployment Cruise | RRS James Cook cruise JC238 |
|---|---|
| Recovery Cruise | RRS Discovery cruise DY181 |
The rig was held down by an 2100 kilogram anchor on the seabed at 1800 metres depth. It was kept erect by 40" syntactic float at 488 metres depth and a 31" syntactic float at 41 metres depth.
The instruments deployed on the rig were as follows:
| Approximate Depth (m) | Instrument | Serial Number |
|---|---|---|
| 51 | SBE37 SMP Microcat | 4608 |
| 52 | DeepSeapHOx, SBE37 SMP-ODO Microcat | 2002, 14149 |
| 102 | Nortek Aquadopp | 11034 |
| 103 | SBE37 SMP Microcat | 4609 |
| 244 | Nortek Aquadopp | 8364 |
| 250 | SBE37 SMP Microcat | 4610 |
| 494 | Nortek Aquadopp | 6242 |
| 500 | SBE37 SMP-ODO Microcat, SBE37 SMP Microcat | 21317, 9140 |
| 749 | SBE37 SMP Microcat | 13049 |
| 750 | SBE37 SMP-ODO Microcat | 15254 |
| 950 | SBE37 SMP-ODO Microcat | 24104 |
| 997 | Nortek Aquadopp | 9822 |
| 1003 | SBE37 SMP Microcat | 10578 |
| 1248 | SBE37 SMP Microcat | 10579 |
| 1350 | Nortek Aquadopp | 9853 |
| 1498 | SBE37 SMP Microcat | 13021 |
| 1648 | SBE37 SMP Microcat | 14368 |
| 1763 | SBE37 SMP Microcat | 13022 |
| 1768 | Nortek Aquadopp | 6273 |
Related Data Activity activities are detailed in Appendix 1
Cruise
| Cruise Name | JC238 |
| Departure Date | 2022-07-12 |
| Arrival Date | 2022-07-31 |
| Principal Scientist(s) | Ben I Moat (National Oceanography Centre, Southampton), Kristin Burmeister (Scottish Association for Marine Science) |
| Ship | RRS James Cook |
Complete Cruise Metadata Report is available here
Fixed Station Information
Fixed Station Information
| Station Name | UK-OSNAP/Ellett Array Mooring RTEB1 (OM57) |
| Category | Offshore location |
| Latitude | 57° 5.96' N |
| Longitude | 9° 32.88' W |
| Water depth below MSL | 1975.0 m |
UK-OSNAP/Ellett Array Mooring RTEB1 (OM57)
Mooring RTEB1 (called OM57 by the International OSNAP Community) forms part of the OSNAP-East Transect and, from 2018, the Ellett Array. It was first deployed on 18th July 2014 by the UK-OSNAP Community.
It is located at 57.0993°N, 9.5480°W where there is a water depth of 1975m
Between 2014 and 2018 this mooring was funded by UK-OSNAP, from 2018 it was funded as part of the Ellett Array by CLASS (Climate Linked Atlantic Sector Science).
Related Fixed Station activities are detailed in Appendix 2
BODC Quality Control Flags
The following single character qualifying flags may be associated with one or more individual parameters with a data cycle:
| Flag | Description |
|---|---|
| Blank | Unqualified |
| < | Below detection limit |
| > | In excess of quoted value |
| A | Taxonomic flag for affinis (aff.) |
| B | Beginning of CTD Down/Up Cast |
| C | Taxonomic flag for confer (cf.) |
| D | Thermometric depth |
| E | End of CTD Down/Up Cast |
| G | Non-taxonomic biological characteristic uncertainty |
| H | Extrapolated value |
| I | Taxonomic flag for single species (sp.) |
| K | Improbable value - unknown quality control source |
| L | Improbable value - originator's quality control |
| M | Improbable value - BODC quality control |
| N | Null value |
| O | Improbable value - user quality control |
| P | Trace/calm |
| Q | Indeterminate |
| R | Replacement value |
| S | Estimated value |
| T | Interpolated value |
| U | Uncalibrated |
| W | Control value |
| X | Excessive difference |
SeaDataNet Quality Control Flags
The following single character qualifying flags may be associated with one or more individual parameters with a data cycle:
| Flag | Description |
|---|---|
| 0 | no quality control |
| 1 | good value |
| 2 | probably good value |
| 3 | probably bad value |
| 4 | bad value |
| 5 | changed value |
| 6 | value below detection |
| 7 | value in excess |
| 8 | interpolated value |
| 9 | missing value |
| A | value phenomenon uncertain |
| B | nominal value |
| Q | value below limit of quantification |
Appendix 1: RTEB1_07_2022
Related series for this Data Activity are presented in the table below. Further information can be found by following the appropriate links.
If you are interested in these series, please be aware we offer a multiple file download service. Should your credentials be insufficient for automatic download, the service also offers a referral to our Enquiries Officer who may be able to negotiate access.
| Series Identifier | Data Category | Start date/time | Start position | Cruise |
|---|---|---|---|---|
| 2310311 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310312 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310313 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310315 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230343 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230355 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230367 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230379 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230411 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230423 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230380 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230392 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230435 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230447 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230459 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230460 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230472 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
Appendix 2: UK-OSNAP/Ellett Array Mooring RTEB1 (OM57)
Related series for this Fixed Station are presented in the table below. Further information can be found by following the appropriate links.
If you are interested in these series, please be aware we offer a multiple file download service. Should your credentials be insufficient for automatic download, the service also offers a referral to our Enquiries Officer who may be able to negotiate access.
| Series Identifier | Data Category | Start date/time | Start position | Cruise |
|---|---|---|---|---|
| 1786275 | Currents -subsurface Eulerian | 2014-07-18 11:40:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1786287 | Currents -subsurface Eulerian | 2014-07-18 11:40:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1786299 | Currents -subsurface Eulerian | 2014-07-18 11:40:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1786306 | Currents -subsurface Eulerian | 2014-07-18 11:40:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1786318 | Currents -subsurface Eulerian | 2014-07-18 11:40:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1786331 | Currents -subsurface Eulerian | 2014-07-18 11:40:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778588 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778607 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778619 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778620 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778632 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778644 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1778656 | Hydrography time series at depth | 2014-07-18 12:30:01 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1789132 | Hydrography time series at depth | 2014-07-18 14:46:00 | 57.09933 N, 9.548 W | RV Knorr KN221-2 |
| 1786921 | Currents -subsurface Eulerian | 2015-06-21 09:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1786933 | Currents -subsurface Eulerian | 2015-06-21 09:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1786945 | Currents -subsurface Eulerian | 2015-06-21 09:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1786957 | Currents -subsurface Eulerian | 2015-06-21 09:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1786969 | Currents -subsurface Eulerian | 2015-06-21 09:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1786970 | Currents -subsurface Eulerian | 2015-06-21 09:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789144 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789156 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789168 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789181 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789193 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789200 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789212 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1789224 | Hydrography time series at depth | 2015-06-21 09:30:01 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1793419 | Hydrography time series at depth | 2015-06-27 05:00:00 | 57.10133 N, 9.56267 W | RV Pelagia PE399 (OSNAP East Leg1) |
| 1795451 | Hydrography time series at depth | 2016-07-03 15:30:01 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795463 | Hydrography time series at depth | 2016-07-03 15:30:01 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795475 | Hydrography time series at depth | 2016-07-03 15:30:01 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795487 | Hydrography time series at depth | 2016-07-03 15:30:01 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795499 | Hydrography time series at depth | 2016-07-03 15:30:01 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795506 | Hydrography time series at depth | 2016-07-03 15:30:01 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795518 | Currents -subsurface Eulerian | 2016-07-03 15:40:00 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795531 | Currents -subsurface Eulerian | 2016-07-03 15:40:00 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795543 | Currents -subsurface Eulerian | 2016-07-03 15:40:00 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 1795555 | Currents -subsurface Eulerian | 2016-07-03 15:40:00 | 57.1014 N, 9.5623 W | RRS Discovery DY053 |
| 2025719 | Currents -subsurface Eulerian | 2017-05-13 12:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025720 | Currents -subsurface Eulerian | 2017-05-13 12:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025732 | Currents -subsurface Eulerian | 2017-05-13 12:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025744 | Currents -subsurface Eulerian | 2017-05-13 12:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025756 | Currents -subsurface Eulerian | 2017-05-13 12:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025768 | Currents -subsurface Eulerian | 2017-05-13 12:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025640 | Hydrography time series at depth | 2017-05-13 12:21:20 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2213794 | Hydrography time series at depth | 2017-05-13 12:21:20 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025688 | Hydrography time series at depth | 2017-05-13 12:21:43 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2213801 | Hydrography time series at depth | 2017-05-13 12:21:43 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025584 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025596 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025603 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025615 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025627 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025652 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025664 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025676 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025707 | Hydrography time series at depth | 2017-05-13 12:30:01 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2025639 | Hydrography time series at depth | 2017-05-13 12:31:13 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2213782 | Hydrography time series at depth | 2017-05-13 12:31:13 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2213849 | Hydrography time series at depth | 2017-05-14 02:00:00 | 57.1005 N, 9.56383 W | RRS Discovery DY078 (DY079) |
| 2027867 | Currents -subsurface Eulerian | 2018-07-08 15:00:00 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2027879 | Currents -subsurface Eulerian | 2018-07-08 15:00:00 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2027880 | Currents -subsurface Eulerian | 2018-07-08 15:00:00 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2027892 | Currents -subsurface Eulerian | 2018-07-08 15:00:00 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2027911 | Currents -subsurface Eulerian | 2018-07-08 15:00:00 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2205420 | CTD or STD cast | 2018-07-08 17:00:00 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2041953 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2041965 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2041977 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2041989 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2041990 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2042016 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2042028 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2042041 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2042053 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2042065 | Hydrography time series at depth | 2018-07-08 17:00:01 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2202169 | CTD or STD cast | 2018-07-08 17:01:12 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2042004 | Hydrography time series at depth | 2018-07-08 17:01:12 | 57.09967 N, 9.56317 W | RV Neil Armstrong AR30-04 (F2018-007, OSNAP East 2018) |
| 2247951 | Water sample data | 2020-10-12 06:59:00 | 57.0875 N, 9.54264 W | RRS Discovery DY120 |
| 2207309 | Currents -subsurface Eulerian | 2020-10-12 20:00:00 | 57.09867 N, 9.5595 W | RRS Discovery DY120 |
| 2207310 | Currents -subsurface Eulerian | 2020-10-12 20:00:00 | 57.09867 N, 9.5595 W | RRS Discovery DY120 |
| 2207322 | Currents -subsurface Eulerian | 2020-10-12 20:00:00 | 57.09867 N, 9.5595 W | RRS Discovery DY120 |
| 2207334 | Currents -subsurface Eulerian | 2020-10-12 20:00:00 | 57.09867 N, 9.5595 W | RRS Discovery DY120 |
| 2207346 | Currents -subsurface Eulerian | 2020-10-12 20:00:00 | 57.09867 N, 9.5595 W | RRS Discovery DY120 |
| 2211308 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211321 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211333 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211357 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211382 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211394 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211401 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211413 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211425 | Water column chemistry | 2020-10-12 20:00:01 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211345 | Water column chemistry | 2020-10-12 20:01:05 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211369 | Water column chemistry | 2020-10-12 20:01:10 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2211370 | Water column chemistry | 2020-10-12 20:01:17 | 57.09866 N, 9.55953 W | RRS Discovery DY120 |
| 2310311 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310312 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310313 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310315 | Currents -subsurface Eulerian | 2022-07-16 12:00:00 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230343 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230355 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230367 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230379 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230411 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230423 | Hydrography time series at depth | 2022-07-16 12:00:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230380 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230392 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230435 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230447 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230459 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230460 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2230472 | Hydrography time series at depth | 2022-07-16 12:30:01 | 57.10013 N, 9.56415 W | RRS James Cook JC238 |
| 2310322 | Currents -subsurface Eulerian | 2022-07-17 15:00:00 | 57.47073 N, 12.31158 W | RRS James Cook JC238 |


