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Dataset Title:  CTD casts from R/V Seward Johnson cruises SJ9506 and SJ9508 in the Gulf of
Maine and Georges Bank in 1995 as part of the U.S. GLOBEC program (GB project)
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Institution:  BCO-DMO   (Dataset ID: bcodmo_dataset_2418)
Range: longitude = -67.78 to -67.13°E, latitude = 40.52 to 41.52°N
Information:  Summary ? | License ? | ISO 19115 | Metadata | Background (external link) | Subset | Data Access Form | Files
 
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Things You Can Do With Your Graphs

Well, you can do anything you want with your graphs, of course. But some things you might not have considered are:

The Dataset Attribute Structure (.das) for this Dataset

Attributes {
 s {
  cruiseid {
    String bcodmo_name "unknown";
    String description "cruise identification";
    String long_name "Cruiseid";
  }
  year {
    Int16 _FillValue 32767;
    Int16 actual_range 1995, 1995;
    String bcodmo_name "year";
    String description "year";
    String long_name "Year";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P01/current/YEARXXXX/";
  }
  brief_desc {
    String bcodmo_name "brief_desc";
    String description "brief cruise description, i.e.: broad-scale, process, mooring";
    String long_name "Brief Desc";
  }
  station {
    Int16 _FillValue 32767;
    Int16 actual_range 1, 185;
    String bcodmo_name "station";
    String description "station number";
    String long_name "Station";
  }
  latitude {
    String _CoordinateAxisType "Lat";
    Float64 _FillValue NaN;
    Float64 actual_range 40.52, 41.52;
    String axis "Y";
    String bcodmo_name "latitude";
    Float64 colorBarMaximum 90.0;
    Float64 colorBarMinimum -90.0;
    String description "latitude, negative = South";
    String ioos_category "Location";
    String long_name "Latitude";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P09/current/LATX/";
    String standard_name "latitude";
    String units "degrees_north";
  }
  longitude {
    String _CoordinateAxisType "Lon";
    Float64 _FillValue NaN;
    Float64 actual_range -67.78, -67.13;
    String axis "X";
    String bcodmo_name "longitude";
    Float64 colorBarMaximum 180.0;
    Float64 colorBarMinimum -180.0;
    String description "longitude, negative = West";
    String ioos_category "Location";
    String long_name "Longitude";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P09/current/LONX/";
    String standard_name "longitude";
    String units "degrees_east";
  }
  yrday_gmt {
    Float64 _FillValue NaN;
    Float64 actual_range 116.12985, 166.9208;
    String bcodmo_name "yrday_gmt";
    String description "day of year based on Julian calender, GMT";
    String long_name "Yrday Gmt";
    String units "decimal day";
  }
  press {
    Float64 _FillValue NaN;
    Float64 actual_range 1.0, 162.0;
    String bcodmo_name "pressure";
    String description "depth of sample reported as pressure";
    String long_name "Press";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P01/current/PRESPR01/";
    String units "decibars";
  }
  temp {
    Float32 _FillValue NaN;
    Float32 actual_range 4.678, 14.713;
    String bcodmo_name "temperature";
    String description "temperature";
    String long_name "Temperature";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P01/current/TEMPP901/";
    String units "degrees C.";
  }
  sal {
    Float32 _FillValue NaN;
    Float32 actual_range 30.873, 35.699;
    String bcodmo_name "sal";
    String description "salinity, psu";
    String long_name "Sal";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P01/current/PSALST01/";
  }
  sigma_t {
    Float32 _FillValue NaN;
    Float32 actual_range 23.615, 27.159;
    String bcodmo_name "sigma-t";
    String description "sigma_t";
    String long_name "Sigma T";
    String nerc_identifier "https://vocab.nerc.ac.uk/collection/P01/current/SIGTEQST/";
    String units "kg/m3";
  }
  flvolt {
    Float32 _FillValue NaN;
    Float32 actual_range 0.0, 4.5;
    String bcodmo_name "fluor voltage";
    String description "fluorescence";
    String long_name "Flvolt";
    String units "volts";
  }
 }
  NC_GLOBAL {
    String access_formats ".htmlTable,.csv,.json,.mat,.nc,.tsv,.esriCsv,.geoJson";
    String acquisition_description "SJ9508 Seabird CTD Stations. Using the (Seabird SBE-25) CTD system.";
    String awards_0_award_nid "54610";
    String awards_0_award_number "unknown GB NSF";
    String awards_0_funder_name "National Science Foundation";
    String awards_0_funding_acronym "NSF";
    String awards_0_funding_source_nid "350";
    String awards_0_program_manager "David L. Garrison";
    String awards_0_program_manager_nid "50534";
    String awards_1_award_nid "54626";
    String awards_1_award_number "unknown GB NOAA";
    String awards_1_funder_name "National Oceanic and Atmospheric Administration";
    String awards_1_funding_acronym "NOAA";
    String awards_1_funding_source_nid "352";
    String cdm_data_type "Other";
    String comment "SJ9506 CTD Stations 1- 108";
    String Conventions "COARDS, CF-1.6, ACDD-1.3";
    String creator_email "info@bco-dmo.org";
    String creator_name "BCO-DMO";
    String creator_type "institution";
    String creator_url "https://www.bco-dmo.org/";
    String data_source "extract_data_as_tsv version 2.3  19 Dec 2019";
    String date_created "2009-11-25T12:58:21Z";
    String date_modified "2019-10-28T17:10:29Z";
    String defaultDataQuery "&time<now";
    String doi "10.1575/1912/bco-dmo.2418.1";
    Float64 Easternmost_Easting -67.13;
    Float64 geospatial_lat_max 41.52;
    Float64 geospatial_lat_min 40.52;
    String geospatial_lat_units "degrees_north";
    Float64 geospatial_lon_max -67.13;
    Float64 geospatial_lon_min -67.78;
    String geospatial_lon_units "degrees_east";
    String history 
"2024-03-28T21:21:23Z (local files)
2024-03-28T21:21:23Z https://erddap.bco-dmo.org/tabledap/bcodmo_dataset_2418.das";
    String infoUrl "https://www.bco-dmo.org/dataset/2418";
    String institution "BCO-DMO";
    String instruments_0_acronym "CTD NBIS MK3";
    String instruments_0_dataset_instrument_description "NBIS Mark III CTD system.";
    String instruments_0_dataset_instrument_nid "4122";
    String instruments_0_description "The Neil Brown Instrument Systems Mark III Conductivity, Temperature, Depth (CTD) instrument is an integral unit containing pressure, temperature and conductivity sensors with an optional dissolved oxygen sensor in a pressure-hardened casing.  Developed in the 1970s, the Neil Brown CTD unit was able to digitize conductivity, temperature and pressure measurements at sufficient speeds to permit oceanographers to study 10 cm features at winch lowering speeds of 30 meters per minute. The most widely used variant in the 1980s and 1990s was the MK3B.  The MK3C fitted with an improved pressure sensor  to reduce hysteresis was developed to meet the requirements of the WOCE project.  The instrument is no longer in production, but is supported (repair and calibration) by General Oceanics.";
    String instruments_0_instrument_external_identifier "https://vocab.nerc.ac.uk/collection/L22/current/TOOL0002/";
    String instruments_0_instrument_name "CTD Neil Brown Mark III";
    String instruments_0_instrument_nid "434";
    String instruments_0_supplied_name "MkIIICTD";
    String instruments_1_acronym "CTD Sea-Bird";
    String instruments_1_dataset_instrument_description "Seabird SBE-25 CTD system. Pressure, temperature, salinity and sigma_t from a SeaBird CTD added to the Seward Johnson MkIIICTD package.";
    String instruments_1_dataset_instrument_nid "4123";
    String instruments_1_description "Conductivity, Temperature, Depth (CTD) sensor package from SeaBird Electronics, no specific unit identified. This instrument designation is used when specific make and model are not known. See also other SeaBird instruments listed under CTD. More information from Sea-Bird Electronics.";
    String instruments_1_instrument_external_identifier "https://vocab.nerc.ac.uk/collection/L05/current/130/";
    String instruments_1_instrument_name "CTD Sea-Bird";
    String instruments_1_instrument_nid "447";
    String instruments_1_supplied_name "SeabirdCTD";
    String keywords "altimetry, bco, bco-dmo, biological, brief, brief_desc, chemical, cruiseid, data, dataset, desc, dmo, erddap, flvolt, laboratory, latitude, longitude, management, oceanography, office, preliminary, press, sal, satellite, sigma, sigma_t, station, temperature, year, yrday, yrday_gmt";
    String license "https://www.bco-dmo.org/dataset/2418/license";
    String metadata_source "https://www.bco-dmo.org/api/dataset/2418";
    Float64 Northernmost_Northing 41.52;
    String param_mapping "{'2418': {'lat': 'master - latitude', 'press': 'flag - depth', 'lon': 'master - longitude'}}";
    String parameter_source "https://www.bco-dmo.org/mapserver/dataset/2418/parameters";
    String people_0_affiliation "University of Rhode Island";
    String people_0_affiliation_acronym "URI-GSO";
    String people_0_person_name "Dave Hebert";
    String people_0_person_nid "50409";
    String people_0_role "Principal Investigator";
    String people_0_role_type "originator";
    String people_1_affiliation "Woods Hole Oceanographic Institution";
    String people_1_affiliation_acronym "WHOI BCO-DMO";
    String people_1_person_name "Ms Dicky Allison";
    String people_1_person_nid "50382";
    String people_1_role "BCO-DMO Data Manager";
    String people_1_role_type "related";
    String project "GB";
    String projects_0_acronym "GB";
    String projects_0_description 
"The U.S. GLOBEC Georges Bank Program is a large multi- disciplinary multi-year oceanographic effort. The proximate goal is to understand the population dynamics of key species on the Bank - Cod, Haddock, and two species of zooplankton (Calanus finmarchicus and Pseudocalanus) - in terms of their coupling to the physical environment and in terms of their predators and prey. The ultimate goal is to be able to predict changes in the distribution and abundance of these species as a result of changes in their physical and biotic environment as well as to anticipate how their populations might respond to climate change.
The effort is substantial, requiring broad-scale surveys of the entire Bank, and process studies which focus both on the links between the target species and their physical environment, and the determination of fundamental aspects of these species' life history (birth rates, growth rates, death rates, etc).
Equally important are the modelling efforts that are ongoing which seek to provide realistic predictions of the flow field and which utilize the life history information to produce an integrated view of the dynamics of the populations.
The U.S. GLOBEC Georges Bank Executive Committee (EXCO) provides program leadership and effective communication with the funding agencies.";
    String projects_0_geolocation "Georges Bank, Gulf of Maine, Northwest Atlantic Ocean";
    String projects_0_name "U.S. GLOBEC Georges Bank";
    String projects_0_project_nid "2037";
    String projects_0_project_website "http://globec.whoi.edu/globec_program.html";
    String projects_0_start_date "1991-01";
    String publisher_name "Biological and Chemical Oceanographic Data Management Office (BCO-DMO)";
    String publisher_type "institution";
    String sourceUrl "(local files)";
    Float64 Southernmost_Northing 40.52;
    String standard_name_vocabulary "CF Standard Name Table v55";
    String subsetVariables "year,brief_desc";
    String summary "CTD casts from R/V Seward Johnson cruises SJ9506 and SJ9508 in the Gulf of Maine and Georges Bank in 1995 as part of the U.S. GLOBEC program.";
    String title "CTD casts from R/V Seward Johnson cruises SJ9506 and SJ9508 in the Gulf of Maine and Georges Bank in 1995 as part of the U.S. GLOBEC program (GB project)";
    String version "1";
    Float64 Westernmost_Easting -67.78;
    String xml_source "osprey2erddap.update_xml() v1.3";
  }
}

 

Using tabledap to Request Data and Graphs from Tabular Datasets

tabledap lets you request a data subset, a graph, or a map from a tabular dataset (for example, buoy data), via a specially formed URL. tabledap uses the OPeNDAP (external link) Data Access Protocol (DAP) (external link) and its selection constraints (external link).

The URL specifies what you want: the dataset, a description of the graph or the subset of the data, and the file type for the response.

Tabledap request URLs must be in the form
https://coastwatch.pfeg.noaa.gov/erddap/tabledap/datasetID.fileType{?query}
For example,
https://coastwatch.pfeg.noaa.gov/erddap/tabledap/pmelTaoDySst.htmlTable?longitude,latitude,time,station,wmo_platform_code,T_25&time>=2015-05-23T12:00:00Z&time<=2015-05-31T12:00:00Z
Thus, the query is often a comma-separated list of desired variable names, followed by a collection of constraints (e.g., variable<value), each preceded by '&' (which is interpreted as "AND").

For details, see the tabledap Documentation.


 
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