Temperature, salinity and currents data from CTD, ADCP and other instruments on R/V F.G. Walton Smith in the Florida and Loop Currents, 2007-05 to 2008-07 (NCEI Accession 0066847)
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title: Temperature, salinity and currents data from CTD, ADCP and other instruments on R/V F.G. Walton Smith in the Florida and Loop Currents, 2007-05 to 2008-07 (NCEI Accession 0066847)
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abstract: Oceanographic data were collected from a variety of sources during three cruises aboard the R/V Walton Smith (WS0714, cruise 1: May 29-June 14, 2007; WS0720, cruise 2: July 30-August 13,2007; WS0809, cruise 3: June 17-July 2, 2008). During each cruise the team sampled ichthyoplankton at approximately 100 stations throughout and upstream of the Straits of Florida (SOF). Throughout the entirety of the cruises the team collected data using a shipboard RD Instruments Acoustic Doppler Current Profiler (ADCP) with a 75 kHz system that measured deeper currents (16-208 m in 8 m depth bins). At a subset of the sampling stations, the team deployed a SeaBird conductivity-temperature-depth profiler (CTD) system with fluorometer and dissolved oxygen on a 12 bottle rosette. See the included file: about/EDDF_NSFConnectivity_NODC_DataSubmissionForm.pdf for additional details.
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beginPosition: 2007-05-29
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supplementalInformation: Data format information contact person is: Katie Shulzitski kshulzitski@rsmas.miami.edu Rosenstiel School of Marine and Atmospheric Science 4600 Rickenbacker Causeway Miami, FL 33149-1098 NOTE: Ichthyoplankton data described in the abstract were not included in this data submission.
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description: These data are available through the File Transfer Protocol (FTP). FTP is no longer supported by most internet browsers. You may copy and paste the FTP link to the data into an FTP client (e.g., FileZilla or WinSCP).
function: (CI_OnLineFunctionCode) download
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dataQualityInfo: (DQ_DataQuality)
scope: (DQ_Scope)
level: (MD_ScopeCode) dataset
lineage: (LI_Lineage)
processStep: (LE_ProcessStep)
description: NCEI Accession 0066847 v1.1 was published.
dateTime:
DateTime: 2010-08-31T18:44:31Z
output: (LE_Source)
sourceCitation: (CI_Citation)
title: NCEI Accession 0066847 v1.1
date: (CI_Date)
date: (inapplicable)
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
individualName: (inapplicable)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/archive/accession/0066847/1.1
protocol: HTTPS
name: NCEI Accession 0066847 v1.1
description: published 2010-08-31T18:44:31Z
function: (CI_OnLineFunctionCode) download
role: (inapplicable)
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dataQualityInfo: (DQ_DataQuality)
scope: (DQ_Scope)
level: (MD_ScopeCode) repository
levelDescription: (MD_ScopeDescription)
other: NOAA National Centers for Environmental Information
lineage: (LI_Lineage)
processStep: (LE_ProcessStep)
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.
dateTime:
DateTime: 2015-04-22T00:00:00
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metadataMaintenance: (MD_MaintenanceInformation)
maintenanceAndUpdateFrequency: (MD_MaintenanceFrequencyCode) asNeeded
maintenanceNote: Metadata are developed, maintained and distributed by NCEI. Updates are performed as needed to maintain currentness.
contact: (CI_ResponsibleParty)
organisationName: NOAA National Centers for Environmental Information
role: (CI_RoleCode) custodian
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acquisitionInformation: (MI_AcquisitionInformation)
instrument: (MI_Instrument)
identifier: (MD_Identifier)
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)
identifier: (MD_Identifier)
code: bottle
type: bottle
description: any type of water bottle sampling device Generic name for water collection device; usually used to determine temperature, salinity and provide water aliquots for measurement of a wide range of parameters; often referred to by a specific type of water sampling bottle, such as a Nansen or Niskin bottle.
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: CTD
type: CTD
description: Conductivity-Temperature-Depth probe
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: fluorometer
type: fluorometer
description: fluorometer
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: PAR Sensor
type: PAR Sensor
description: Photosynthetically Active Radiation Sensor The PAR sensor measures global solar radiation from 400 to 700 nm, which approximates the spectral band active in photosynthesis. The response of the instrument falls sharply to zero on either side of this band, and between 400 and 670 nm it increases monotonically from about 50% to 100%. There is no protective glass dome over the receiving surface. Irradiance from the sun passes through a small white visible bandpass filter/diffuser in the shape of a horizontal disk at the top of the instrument. Within the instrument radiation is directed through a series of colored glass filters and onto a silicon photodiode detector. The factory-supplied calibration converts the signal from the detector to a flux of photons in micro-mole (of photons) s-1 m-2. (One micro-mole equals 6.022 E17 photons.) For the solar spectrum, these units may be converted to watts per square meter by dividing by 4.6. (http://www.srrb.noaa.gov/instrument/par.htm)
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: transmissometer
type: transmissometer
description: transmissometer Instrument used to measure transmissivity in NODC File Alias F022.
platform: (MI_Platform)
identifier: (MD_Identifier)
code: R/V F.G. Walton Smith
description: R/V; RSMAS Univ. of Miami; built 1999; active as July 2007 University of Miami assigned a new call sign to F.G. WALTON SMITH on January 13, 2021. The previous call sign was WCZ6292.
instrument: (missing)