Long-term observations on the Bering Sea shelf: Sediment mooring data from mooring site 5

This project is a continuation of a long-term partnership between National Oceanic and Atmospheric Administration (NOAA) and North Pacific Research Board (NPRB). Moorings have been maintained on the southeastern Bering Sea shelf at four sites: M2 (56.9 N, 164.1 W) since 1995, M4 (57.9 N, 168.9 W) since 1996, M5 (59.9 N, 171.7 W) and M8 (62.2 N 174.7 W) since 2004. This project together with research by the NOAA program North Pacific Climate Research and Ecosystem Productivity (NPCREP) continued these measurements for the next three years (2008-2010). These moorings, together with observations along the 70 m isobath, are core to the long-term observations on the Bering Sea shelf. All four moorings are deployed on the 70m isobath. Key findings including the Oscillating Control Hypothesis (OCH), timing of spring bloom, the magnitude of increased temperature (>2 deg. C) and stability in the nutrient supply have all been a result of the data collected on these moorings. Data from M2 has quantified the warming that occurred over the southern shelf during 2001-2005. This project (O1.1) will continue the time series of temperature, salinity, fluorescence, currents, zooplankton abundance (Tracor Acoustic Profiling System (TAPS-8) at M2 and possibly M4), nitrate, and oxygen (at M2 and possibly M5) at four mooring sites on the Bering Sea shelf. In addition during the late spring and summer a surface mooring (two if ice permits) will be deployed that will measure meteorological variables (air temperature, humidity, barometric pressure, wind velocity and solar photosynthetically active radiation (PAR)). The surface moorings permit real time reporting of selected data. Data from these moorings are also critical to model verification. Products include mixed layer depth, heat content, temperature, position of the transition between southern pelagic-dominated shelf and northern benthic-dominated shelf, advection, nutrient supply and timing of the spring phytoplankton bloom.

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Temporal Range

  • Begin:  2008-07-24T00:00:00Z
    End:  2009-09-25T23:59:59Z

Keywords

Resource Type dataset
Temporal Range Begin 2008-07-24T00:00:00Z
Temporal Range End 2009-09-25T23:59:59Z
Temporal Resolution N/A
Bounding Box North Lat 61.00000
Bounding Box South Lat 58.00000
Bounding Box West Long -175.00000
Bounding Box East Long -173.00000
Spatial Representation grid
Spatial Resolution N/A
Related Links

Documentation #1 : B52_EcoFOCI_m5_08BSV5A.html

Documentation #2 : moorings_locations.html

245.B52-006 : is a companion to dataset 245.B52-008

245.B52-007 : is a companion to dataset 245.B52-008

245.B52-007 : is a companion to dataset 245.B52-008

245.B52-006 : is a companion to dataset 245.B52-008

Additional Information N/A
Resource Format TAR/GNU Zip (.tar.gz/.tgz) (application/x-gzip)
XML: Extensible Markup Language (application/xml)
Standardized Resource Format XML
Archive
Asset Size 1 MB
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Software Implementation Language N/A

Resource Support Name EOL Data Support
Resource Support Email datahelp@eol.ucar.edu
Resource Support Organization UCAR/NCAR - Earth Observing Laboratory
Distributor UCAR/NCAR - Earth Observing Laboratory
Metadata Contact Name EOL Data Support
Metadata Contact Email datahelp@eol.ucar.edu
Metadata Contact Organization UCAR/NCAR - Earth Observing Laboratory

Author Phyllis J. Stabeno
Jeffrey M. Napp
Terry E. Whitledge
Publisher UCAR/NCAR - Earth Observing Laboratory
Publication Date 2011-09-13T15:35:00
Digital Object Identifier (DOI) https://doi.org/10.5065/D61Z42C5
Alternate Identifier 245.B52-008
Resource Version 1.0
Topic Category oceans
Progress completed
Metadata Date 2024-02-07T22:51:21Z
Metadata Record Identifier edu.ucar.eol::245.B52-008
Metadata Language eng; USA
Suggested Citation Phyllis J. Stabeno, Jeffrey M. Napp, Terry E. Whitledge. (2011). Long-term observations on the Bering Sea shelf: Sediment mooring data from mooring site 5. 1.0. UCAR/NCAR - Earth Observing Laboratory. https://doi.org/10.5065/D61Z42C5. Accessed 23 November 2024.

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