Physical data collected from Seaglider SG012 during Washington Coast, December 2004 in the North Pacific Ocean, Coastal Waters of Washington/Oregon deployed from 2004-12-23 to 2005-01-25 (NCEI Accession 0156003)


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            title:  Physical data collected from Seaglider SG012 during Washington Coast, December 2004 in the North Pacific Ocean, Coastal Waters of Washington/Oregon deployed from 2004-12-23 to 2005-01-25 (NCEI Accession 0156003)
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                date:  2016-07-25
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        abstract:  Seaglider is a buoyancy driven autonomous underwater vehicle (AUV) developed by scientists and engineers at the University of Washington's School of Oceanography and Applied Physics Laboratory. Seagliders are designed to glide from the ocean surface to a programmed depth and back while measuring temperature, salinity, depth-averaged current, and other quantities along a sawtooth trajectory through the water. Seaglider has entered wide use in scientific deployments. They are designed for missions in range of several thousand kilometers and durations of many months. Seagliders are commanded remotely and report their measurements in near real time via wireless telemetry.
        purpose:  This dataset is available to the public for a wide variety of uses including scientific research and analysis.
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            keyword:  EARTH SCIENCE > OCEANS > OCEAN ACOUSTICS > ACOUSTIC VELOCITY
            keyword:  EARTH SCIENCE > OCEANS > OCEAN CIRCULATION > OCEAN CURRENTS
            keyword:  EARTH SCIENCE > OCEANS > OCEAN PRESSURE > WATER PRESSURE
            keyword:  EARTH SCIENCE > OCEANS > OCEAN TEMPERATURE > POTENTIAL TEMPERATURE
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            keyword:  EARTH SCIENCE > OCEANS > SALINITY/DENSITY > CONDUCTIVITY
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            keyword:  northward_sea_water_velocity
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            keyword:  sea_water_potential_temperature
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            keyword:  sea_water_sigma_t
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            keyword:  sea_water_temperature
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            keyword:  Density
            keyword:  Fluorescence
            keyword:  Potential Density
            keyword:  Potential Temperature
            keyword:  Salinity
            keyword:  Water Temperature
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                            protocol:  HTTPS
                            name:  Global Change Master Directory (GCMD) Keywords
                            description:  The information provided on this page seeks to define how the GCMD Keywords are structured, used and accessed. It also provides information on how users can participate in the further development of the keywords.
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            otherConstraints:  Cite as: Eriksen, Charles; University of Washington (2016). Physical data collected from Seaglider SG012 during Washington Coast, December 2004 in the North Pacific Ocean, Coastal Waters of Washington/Oregon deployed from 2004-12-23 to 2005-01-25 (NCEI Accession 0156003). [indicate subset used]. NOAA National Centers for Environmental Information. Dataset. https://accession.nodc.noaa.gov/0156003. Accessed [date].
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            useLimitation:  Distribution liability: NOAA and NCEI make no warranty, expressed or implied, regarding these data, nor does the fact of distribution constitute such a warranty. NOAA and NCEI cannot assume liability for any damages caused by any errors or omissions in these data. If appropriate, NCEI can only certify that the data it distributes are an authentic copy of the records that were accepted for inclusion in the NCEI archives.
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                title:  Seaglider: a long-range autonomous underwater vehicle for oceanographic research
                date:  (CI_Date)
                    date:  2001-10-20
                    dateType:  (CI_DateTypeCode) publication
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                    code: https://doi.org/10.1109/48.972073
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                    individualName:  C. C. Eriksen
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                    individualName:  R. D. Light
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                    name:  IEEE Journal of Oceanic Engineering
                    issueIdentification:  26:26:4
                otherCitationDetails:  pp. 424-436
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                    beginPosition:  2004-12-23
                    endPosition:  2005-01-25
        supplementalInformation: (missing)
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                  Anchor:  https://www.nodc.noaa.gov/cgi-bin/OAS/prd/institution/details/1730 DOC/NOAA/NESDIS/NCEI > National Centers for Environmental Information, NESDIS, NOAA, U.S. Department of Commerce
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                        voice:  301-713-3277
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                        deliveryPoint:  Federal Building 151 Patton Avenue
                        city:  Asheville
                        administrativeArea:  NC
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                        country:  USA
                        electronicMailAddress:  NCEI.Info@noaa.gov
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                fees:  In most cases, electronic downloads of the data are free. However, fees may apply for custom orders, data certifications, copies of analog materials, and data distribution on physical media.
                orderingInstructions:  Contact NCEI for other distribution options and instructions.
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                description:  NCEI Accession 0156003 v1.1 was published.
                dateTime:
                  DateTime:  2016-07-25T20:17:17Z
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                        title:  NCEI Accession 0156003 v1.1
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                                    description:  published 2016-07-25T20:17:17Z
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            organisationName:  DOC/NOAA/NESDIS/NCEI > National Centers for Environmental Information, NESDIS, NOAA, U.S. Department of Commerce
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    acquisitionInformation:  (MI_AcquisitionInformation)
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            identifier:  (MD_Identifier)
                code:  CTD
            type:  CTD
            description:  Conductivity-Temperature-Depth probe
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            identifier:  (MD_Identifier)
                code:  Glider
            type:  Glider
            description:  It's a type of autonomous underwater vehicle (AUV), making high spatial resolution sections repeatedly, and autonomously. An underwater glider is a type of autonomous underwater vehicle (AUV) that uses small changes in its buoyancy in conjunction with wings to convert vertical motion to horizontal, and thereby propel itself forward with very low power consumption. Gliders typically take measurements such as temperature, conductivity (to calculate salinity), currents, chlorophyll fluorescence, optical backscatter, bottom depth, and (occasionally) acoustic backscatter. They navigate with the help of periodic surface GPS fixes, pressure sensors, tilt sensors, and magnetic compasses. Gliders can be built to withstand various depths and pressures. Long range underwater gliders have recently become operational technology for oceanography. Their most promising role for ocean climate observations is to make high spatial resolution sections repeatedly, autonomously, and at very low cost compared to conventional methods involving ships or moorings. While they provide profiles, as ARGO floats do, the time and location of glider observations is remotely controllable. Gliders can collect repeat observations on a prescribed spatial grid tailored provide a description of how the ocean evolves in space and time on relevant scales. They provide a means for monitoring boundary currents, of particular importance to ocean climate.
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            identifier:  (MD_Identifier)
                code:  GPS
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            identifier:  (MD_Identifier)
                code:  SG012
            description:  Updated information from ICES for thevessel SG012 from UNITED STATES. Name : SG012 Flag : UNITED STATES - US (ISO Country Code) Platform Class : 27 sub-surface gliders (buoyancy-based propulsion capable at variable depths not constrained to be near sea surface) Current Length : 1.8 Notes : Underwater Seaglider glider (number 008) owned by the Applied Physics Lab, University of Washington Additional Information Sources: - http://www.apl.washington.edu/projects/seaglider/specifications.html General Comments: Size: Body 1.8 m, 30 cm diameter Wing span 1m Antenna mast length 1 m Weight: 52 kg (dry) Maximum Depth: 1000 m Maximum Range/Duration: 4600 km (650 dives to 1km depth) Batteries: Lithium primaries, 24V and 10 V packs, 10 MJ Typical Speed: 25 cm/s Glide Angle: 16-45 degrees Mechanical Features: Isopyonal hull No external moving parts Low drag, flooded fiberglass fairing RF Data Telemetry: Iridium satellite data telemetry Guidance and Control: Control and system commands transmitted on any dive. Dead reckoning between GPS fixes using pitch, roll, heading. Kalaman filter prediction for mean and oscillatory currents. Bathymetry map for surface to near-bottom dives. Owned and operated: Applied Physics Laboratory University of Washington 1013 NE 40th Street Box 355640 Seattle, WA 98105-6698 http://www.apl.washington.edu/projects/seaglider/specifications.html Request submitted to ICES on 2014-04-22. Confirmed by NOAA on 2014-06-02.
            instrument: (missing)