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ERDDAP > griddap > Make A Graph ?

Dataset Title:  CARICOOS FVCOM-3D Structured Grid, Best Aggregated Subscribe RSS
Institution:  CARICOOS   (Dataset ID: Historical_3D_StructuredGrid_7b83_6c2a_7b7c)
Information:  Summary ? | License ? | FGDC | ISO 19115 | Metadata | Background (external link) | Data Access Form
 
Graph Type:  ?
X Axis:  ?
Y Axis:  ?
Color:  ?
 
Dimensions ?    Start ?    Stop ?
time (UTC) ?     specify just 1 value →
    |< -
< <
depth (m) ?     specify just 1 value →
    |< -
< <
latitude (degrees_north) ?
    +
    -
< slider >
longitude (degrees_east) ?
    +
    -
< slider >
 
Graph Settings
Color Bar:   Continuity:   Scale: 
   Minimum:   Maximum:   N Sections: 
Draw land mask: 
Y Axis Minimum:   Maximum:   
 
(Please be patient. It may take a while to get the data.)
 
Optional:
Then set the File Type: (File Type information)
and
or view the URL:
(Documentation / Bypass this form ? )
    Click on the map to specify a new center point. ?
Zoom:
[The graph you specified. Please be patient.]

 

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 {
  time {
    String _CoordinateAxisType "Time";
    Float64 actual_range 1.7070048e+9, 1.732402944e+9;
    String axis "T";
    String format "modified julian day (MJD)";
    String ioos_category "Time";
    String long_name "Time";
    String standard_name "time";
    String time_origin "01-JAN-1970 00:00:00";
    String units "seconds since 1970-01-01T00:00:00Z";
  }
  depth {
    String _CoordinateAxisType "Height";
    String _CoordinateZisPositive "down";
    Float32 actual_range -400.0, 0.0;
    String axis "Z";
    String ioos_category "Location";
    String long_name "Depth";
    String positive "down";
    String standard_name "depth";
    String units "m";
  }
  latitude {
    String _CoordinateAxisType "Lat";
    Float32 actual_range 17.00002, 19.49537;
    String axis "Y";
    String ioos_category "Location";
    String long_name "Latitude";
    String standard_name "latitude";
    String units "degrees_north";
  }
  longitude {
    String _CoordinateAxisType "Lon";
    Float32 actual_range -67.9995, -64.0005;
    String axis "X";
    String ioos_category "Location";
    String long_name "Longitude";
    String standard_name "longitude";
    String units "degrees_east";
  }
  temp {
    Float64 colorBarMaximum 32.0;
    Float64 colorBarMinimum 15.0;
    String description "Interpolated values of temp from FVCOM unstructured mesh to a structured mesh";
    String grid "fvcom_grid";
    String ioos_category "Temperature";
    String long_name "temperature";
    String standard_name "sea_water_temperature";
    String units "degree_C";
  }
  salinity {
    Float64 colorBarMaximum 37.0;
    Float64 colorBarMinimum 32.0;
    String description "Interpolated values of salinity from FVCOM unstructured mesh to a structured mesh";
    String grid "fvcom_grid";
    String ioos_category "Salinity";
    String long_name "salinity";
    String standard_name "sea_water_practical_salinity";
    String units "PSU";
  }
  u {
    Float64 colorBarMaximum 0.5;
    Float64 colorBarMinimum -0.5;
    String description "Interpolated values of u from FVCOM unstructured mesh to a structured mesh";
    String grid "fvcom_grid";
    String ioos_category "Currents";
    String location "face";
    String long_name "Eastward Water Velocity";
    String mesh "fvcom_mesh";
    String standard_name "eastward_sea_water_velocity";
    String type "data";
    String units "meters s-1";
  }
  v {
    Float64 colorBarMaximum 0.5;
    Float64 colorBarMinimum -0.5;
    String description "Interpolated values of v from FVCOM unstructured mesh to a structured mesh";
    String grid "fvcom_grid";
    String ioos_category "Currents";
    String location "face";
    String long_name "Northward Water Velocity";
    String mesh "fvcom_mesh";
    String standard_name "northward_sea_water_velocity";
    String type "data";
    String units "meters s-1";
  }
  NC_GLOBAL {
    String cdm_data_type "Grid";
    String Conventions "COARDS, CF-1.6, ACDD-1.3";
    String creator_email "edward.cruz1@upr.edu";
    String creator_name "CARICOOS";
    String creator_type "institution";
    String creator_url "https://www.caricoos.org/";
    Float64 Easternmost_Easting -64.0005;
    Float64 geospatial_lat_max 19.49537;
    Float64 geospatial_lat_min 17.00002;
    Float64 geospatial_lat_resolution 0.004672940074906371;
    String geospatial_lat_units "degrees_north";
    Float64 geospatial_lon_max -64.0005;
    Float64 geospatial_lon_min -67.9995;
    Float64 geospatial_lon_resolution 0.0050050062578222716;
    String geospatial_lon_units "degrees_east";
    String history 
"Data interpolated from unstructured FVCOM Historical Data. This model is run once a day, has a spatial resolution of 800 meters, and provides 3 days of forecast. This is a 3D model with 11 vertical layer (0, 5, 10, 25, 50, 75, 100, 125, 150, 200, 400). Starting with FVCOM version 3 on 2019, and actually on FVCOM version 4.
2024-11-22T01:27:18Z (local files)
2024-11-22T01:27:18Z http://dm3.caricoos.org:8003/griddap/Historical_3D_StructuredGrid_7b83_6c2a_7b7c.das";
    String infoUrl "https://www.caricoos.org/";
    String institution "CARICOOS";
    String keywords "caricoos, circulation, currents, data, density, depth, earth, Earth Science > Oceans > Ocean Circulation > Ocean Currents, Earth Science > Oceans > Ocean Temperature > Water Temperature, Earth Science > Oceans > Salinity/Density > Salinity, eastward, eastward_sea_water_velocity, fvcom, grid, inc, northward, northward_sea_water_velocity, ocean, oceans, practical, salinity, science, sea, sea_water_practical_salinity, sea_water_temperature, seawater, structured, temperature, time, u, v, velocity, water";
    String keywords_vocabulary "GCMD Science Keywords";
    String license 
"The data may be used and redistributed for free but is not intended
for legal use, since it may contain inaccuracies. Neither the data
Contributor, ERD, NOAA, nor the United States Government, nor any
of their employees or contractors, makes any warranty, express or
implied, including warranties of merchantability and fitness for a
particular purpose, or assumes any legal liability for the accuracy,
completeness, or usefulness, of this information.";
    Float64 Northernmost_Northing 19.49537;
    String source "Data interpolated from FVCOM Historical Data";
    String sourceUrl "(local files)";
    Float64 Southernmost_Northing 17.00002;
    String standard_name_vocabulary "CF Standard Name Table v70";
    String summary "Interpolated data from FVCOM unstructured grid to structured grid.";
    String testOutOfDate "now-116days";
    String time_coverage_end "2024-11-23T23:02:24Z";
    String time_coverage_start "2024-02-04T00:00:00Z";
    String title "CARICOOS FVCOM-3D Structured Grid, Best Aggregated";
    Float64 Westernmost_Easting -67.9995;
  }
}

 

Using griddap to Request Data and Graphs from Gridded Datasets

griddap lets you request a data subset, graph, or map from a gridded dataset (for example, sea surface temperature data from a satellite), via a specially formed URL. griddap uses the OPeNDAP (external link) Data Access Protocol (DAP) (external link) and its projection 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.

griddap request URLs must be in the form
https://coastwatch.pfeg.noaa.gov/erddap/griddap/datasetID.fileType{?query}
For example,
https://coastwatch.pfeg.noaa.gov/erddap/griddap/jplMURSST41.htmlTable?analysed_sst[(2002-06-01T09:00:00Z)][(-89.99):1000:(89.99)][(-179.99):1000:(180.0)]
Thus, the query is often a data variable name (e.g., analysed_sst), followed by [(start):stride:(stop)] (or a shorter variation of that) for each of the variable's dimensions (for example, [time][latitude][longitude]).

For details, see the griddap Documentation.


 
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