OC340L01: WHOI cruise 340 leg 01 aboard R/V Oceanus from 1999-03-25 to 1999-04-12 (NCEI Accession 0077446)
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title: OC340L01: WHOI cruise 340 leg 01 aboard R/V Oceanus from 1999-03-25 to 1999-04-12 (NCEI Accession 0077446)
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date: 2011-09-16
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abstract: Post-cruise download of raw data from shipboard computer(s) as furnished by the Woods Hole Oceanographic Institution Shipboard Scientific Support Group and archived by the Marine Biological Laboratory Woods Hole Oceanographic Institution Library for R/V Oceanus - Cruise 340 Leg 01. This dataset is part of a collection of ocean observation data from Woods Hole Oceanographic Institution ships OCEANUS (call sign WXAQ; built 1975.00; IMO 7603617), KNORR (call sign KCEJ; built 1970.00; IMO 7738618), and the ATLANTIS (call sign KAQP; built 1997.03; IMO 9105798). The datasets are the downloads of the shipboard computers after an individual cruise. As such, they contain basic raw and processed physical and meteorological data from the cruise. A dataset may include XBT, CTD, and XCTD profiles, underway thermosalinograph and atmospheric measurements, gravity and magnetic field measurements, current measurements from ADCP, and still photographs from the Alvin submersible (Atlantis cruises only). Other data types (ROV, nutrients measured from bottle samples, etc.) and photographs documenting the cruise may be included.
purpose: This dataset is available to the public for a wide variety of uses including scientific research and analysis.
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description: Global Change Master Directory (GCMD). 2023. GCMD Keywords, Version 17. Greenbelt, MD: Earth Science Data and Information System, Earth Science Projects Division, Goddard Space Flight Center (GSFC), National Aeronautics and Space Administration (NASA). URL (GCMD Keyword Forum Page): https://forum.earthdata.nasa.gov/app.php/tag/GCMD+Keywords
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otherConstraints: Cite as: Dorsk, Alexander; Woods Hole Oceanographic Institution (2011). OC340L01: WHOI cruise 340 leg 01 aboard R/V Oceanus from 1999-03-25 to 1999-04-12 (NCEI Accession 0077446). [indicate subset used]. NOAA National Centers for Environmental Information. Dataset. https://www.ncei.noaa.gov/archive/accession/0077446. 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: Ocean observation data from Woods Hole Oceanographic Institution ships Oceanus, Knorr, and Atlantis, in seas world-wide from 1993-06-26 to 2011-08-05
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date: 2008-03-19
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title: NOAA National Centers for Environmental Information
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code: gov.noaa.nodc:WHOI-MBL-DLA-Cruise
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topicCategory: (MD_TopicCategoryCode) environment
topicCategory: (MD_TopicCategoryCode) oceans
topicCategory: (MD_TopicCategoryCode) climatologyMeteorologyAtmosphere
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beginPosition: 1999-03-25
endPosition: 1999-04-12
supplementalInformation: From Woods Hole Oceanographic Institution Research Cruise Database: Departed: Woods Hole on 1999-03-28 Arrived: Woods Hole on 1999-04-13 Chief Scientist(s): Dave Hebert, Univ. of Rhode Island Operations Area: Georges Bank Science Activities: Deployment of acoustically-track subsurface floats and/or ARGOS/GPS surface drifters. ADCP/Sea Soar suveys around the floats/drifters
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Anchor: https://www.ncei.noaa.gov/archive/archive-management-system/OAS/bin/prd/jquery/institution/details/1730 NOAA National Centers for Environmental Information
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electronicMailAddress: NCEI.Info@noaa.gov
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orderingInstructions: Contact NCEI for other distribution options and instructions.
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linkage: https://www.ncei.noaa.gov/archive/accession/oas/77446
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linkage: https://www.ncei.noaa.gov/archive/accession/download/77446
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linkage: ftp://ftp-oceans.ncei.noaa.gov/nodc/archive/arc0037/0077446/
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description: NCEI Accession 0077446 v1.1 was published.
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DateTime: 2011-09-16T05:40:15Z
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name: NCEI Accession 0077446 v1.1
description: published 2011-09-16T05:40:15Z
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description: NOAA created the National Centers for Environmental Information (NCEI) by merging NOAA's National Climatic Data Center (NCDC), National Geophysical Data Center (NGDC), and National Oceanographic Data Center (NODC), including the National Coastal Data Development Center (NCDDC), per the Consolidated and Further Continuing Appropriations Act, 2015, Public Law 113-235. NCEI launched publicly on April 22, 2015.
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DateTime: 2015-04-22T00:00:00
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acquisitionInformation: (MI_AcquisitionInformation)
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code: ADCP
type: ADCP
description: Acoustic Doppler Current Profiler The Acoustic Doppler Current Profiler (ADCP) measures currents beneath a ship while underway. Sound signals sent from the moving ship bounce back to receivers aboard the ship. This provides a profile of water movement relative to the ship-precise modern navigation, allowing the ship's motion to be subtracted from the data. These devices are also used on moorings and profilers and, along with acoustic backscattering, measure animal biomass. Particles in the path of the sound waves, mostly plankton, reflect a small part of the sound energy back toward receivers, allowing researchers to make remote estimates of the sizes and numbers of animals present in the water column. Before the 1970's, the most technologically advanced instrument used to measure water velocity was known as a Doppler speed log. This evolved into the first commercial ADCP, produced in the mid-1970's, which used averaging. Later in the 1970's, the first vessel-mounted ADCP was developed to measure water velocity more accurately and to allow measurement in range cells over a depth profile. As instruments evolved, so did new techniques in Doppler signal processing. Initially, Doppler speed logs used simple analog signal processing methods, which are still used in some commercial speed logs today. However, the first ADCPs incorporated analog-to-digital signal conversion over a narrow communication bandwidth. Around 1990, this technique was developed into broadband signal processing. Since then, broadband ADCPs have been able to generate very accurate, real-time velocity measurements.
instrument: (MI_Instrument)
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code: COOL Float
type: COOL Float
description: Coastal Ocean Lagrangian Float Measures compass angle, pressure, and temperature. The COOL float is constructed from a glass pipe 2.2 m long and with an outer diameter of 9.5 cm. The float consists of the glass pipe, electronics, a volume changer (VOCHA) located within the float, vanes and a compass, a pinger and either a compressee or drop weight. The COOL float is based on the previously designed isopycnal f/h float (Rossby et al., 1994). Glass was used since it has a very small thermal expansion coefficient. Thus, the float will remain on the same density surface even if the temperature and salinity of the water changes but its density doesn't. If a water parcel is displaced vertically, it will either expand or compress due to the change in pressure and not change its potential density. Since the glass float is less compressible than seawater, it will not follow this water parcel. Therefore, a compressee is added to the float to match the float's compressibility to that of seawater. The COOL float has a volume changer (VOCHA) in it to allow the float to follow a water parcel whose density is changing. However, in our short test deployments, we only used the VOCHA for calibration purposes (described later). Eight vanes at a angle to the horizontal and a compass were added to the isopycnal f/h to make the COOL float. As water flows vertically past the float, the vanes will make the float rotate. Measuring the rotation rate with a compass inside the float will provide a measure of the vertical velocity past the float. If the float is isobaric (that is, the float will remain at a constant pressure; it does not have a compressee), the vertical velocity past the float will be mainly due to the vertical velocity of internal waves. However, vanes on the isopycnal COOL float will make it respond to diapycnal velocities instead of vertical velocities. That is, the float will measure only the amount of water flowing past the float whose density is changing. (http://cis.whoi.edu/science/bcodmo/instrument.cfm?flag=view&id=17&sortby=name)
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: CTD
type: CTD
description: Conductivity-Temperature-Depth probe
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: meteorological sensor
type: meteorological sensor
description: Any meteorological sensor, but also see specific instruments such as aerovane, anemometer, etc.
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: thermosalinograph
type: thermosalinograph
description: automated sea surface temperature and salinity instrument, usually attached to the hull of a ship Thermosalinograph is an automated Sea Surface Temperature and Salinity measurement system making measurement on board a ship using a water intake. [https://www.aoml.noaa.gov/phod/tsg/about.php 2021-01-29]
platform: (MI_Platform)
identifier: (MD_Identifier)
code: OCEANUS
description: Flag: United States of America Vessel Type: Research Vessel DOB: 1975 IMO: 7603617 MMSI: 367977000
instrument: (missing)