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Tietojoukon otsikko:  capex690-20260812T1423 Real Time Raw Time Series Subscribe RSS
Instituutio:  Teledyne Webb Research, Rutgers University   (Tietojoukon tunnus: capex690-20260812T1423-trajectory-raw-rt)
Tiedot:  Yhteenveto ? | Lisenssi ? | FGDC | ISO 19115 | Metatiedot | Tausta (Ulkoinen linkki) | Osajoukko | Tiedostot | Tee kaavio
 
Muuttuva ?   Valinnainen
Rajoitus #1 ?
Valinnainen
Rajoitus #2 ?
   Minimi ?
   tai arvoluettelo ?
   Enimmäismäärä ?
 
 time (m_present_time, UTC) ?          2026-08-12T14:23:46Z    2026-08-25T06:05:18Z
  < slider >
 latitude (degrees_north) ?          12.275213333333333    12.775933333333334
  < slider >
 longitude (degrees_east) ?          -55.809934999999996    -55.49728333333334
  < slider >
 depth (CTD Depth, m) ?          0.0    211.6865
  < slider >
 trajectory (Trajectory/Deployment Name) ?          "capex690-20260812T..."    "capex690-20260812T..."
 source_file (Source data file) ?      
   - +  ?
 platform (capex690 Slocum G3S) ?              
 instrument_ctd (Sea-Bird Slocum Glider GPCTD) ?              
 instrument_ek80 (EK80 echo sounder) ?              
 instrument_flbbcdslc ?              
 c_alt_time (sec) ?          -1.0    -1.0
 c_ballast_pumped (cc) ?          -535.0    535.0
 c_battpos (in) ?          -0.7    0.7
 c_climb_bpump (X) ?          365.0    1000.0
 c_de_oil_vol (cc) ?          260.0    260.0
 c_dive_bpump (X) ?          -1000.0    -160.0
 c_fin (rad) ?          -0.45    0.45
 c_flbbcd_on (sec) ?          -1.0    0.0
 c_heading (rad) ?          -3.12211    3.13494
 c_pitch (rad) ?          -0.4538    0.4538
 c_profile_on (sec) ?          -1.0    0.0
 c_thruster_on (%) ?          0.0    0.0
 c_wpt_lat (lat) ?          1140.263    1249.8
 c_wpt_lon (lon) ?          -5537.70450000032    -5424.552
 crs ?              
 m_altitude (m) ?          0.0    0.0
 m_argos_is_xmitting (bool) ?          0    1
 m_argos_on (bool) ?          0    1
 m_avg_climb_rate (m/s) ?          -0.370878    -0.0245689
 m_avg_depth_rate (m/s) ?          -0.321358    0.43929
 m_avg_dive_rate (m/s) ?          0.0    0.522916
 m_avg_thruster_power (watt) ?          0.0    0.0
 m_ballast_pumped (cc) ?          -536.562    539.683
 m_battery (volts) ?          14.2265    15.3414
 m_battpos (in) ?          -0.738241    0.739195
 m_coulomb_amphr_total (amp-hrs) ?          6.64126    126.324
 m_coulomb_current (amp) ?          0.045625    5.9441
 m_de_oil_vol (cc) ?          0.0    0.0
 m_depth (Depth, m) ?          0.0    195.982
 m_depth_rate_avg_final (m/s) ?          -0.34319    0.458956
 m_digifin_leakdetect_reading (nodim) ?          884.0    1023.0
 m_dist_to_wpt (m) ?          1.45569    151709.0
 m_fin (rad) ?          -0.458518    0.458518
 m_gps_lat (degrees_minutes_north) ?          1216.5128    1246.556
 m_gps_lon (degrees_minutes_east) ?          -5548.5961    -5529.837
 m_heading (rad) ?          0.0    6.26748
 m_iridium_connected (bool) ?          0    1
 m_iridium_on (bool) ?          0    1
 m_iridium_status (enum) ?          1    99
 m_lat (degrees_minutes_north) ?          1216.27538144783    1246.62663958566
 m_leakdetect_voltage (volts) ?          2.5    2.5
 m_leakdetect_voltage_forward (volts) ?          2.49997    2.5
 m_lon (degrees_minutes_east) ?          -5548.59454302792    -5529.84590000026
 m_mission_avg_speed_climbing (m/s) ?          0.187221    0.401288
 m_mission_avg_speed_diving (m/s) ?          0.120452    0.411619
 m_pitch (rad) ?          -1.08734    0.727802
 m_present_secs_into_mission (sec) ?          0.855    1008910.0
 m_present_time (UTC) ?          2026-08-12T14:23:46Z    2026-08-25T06:05:18Z
 m_raw_altitude (m) ?          110.0    110.0
 m_roll (rad) ?          -1.09432    0.507891
 m_thruster_current (amp) ?          0.0    0.6783
 m_thruster_power (watt) ?          0.0    4.0698
 m_thruster_voltage (volts) ?          0.0    6.0
 m_vacuum (inHg) ?          4.97202    8.06446
 m_veh_temp (c) ?          23.7019    33.3566
 m_water_depth (m) ?          -1.0    -1.0
 m_water_vx (m s-1) ?          -0.552612    0.0234296
 m_water_vy (m s-1) ?          -0.183342    0.615682
 pressure (CTD Pressure, dbar) ?          0.0    213.02
 sci_flbbcd_bb_units (nodim) ?          0.0    8.86176E-4
 sci_flbbcd_cdom_units (ppb) ?          -9.955    11.1315
 sci_flbbcd_chlor_units (ug/l) ?          0.0    0.7665
 sci_m_present_secs_into_mission (sec) ?          112.736    1008910.0
 sci_m_present_time (UTC) ?          2026-08-12T14:23:46Z    2026-08-25T06:00:56Z
 sci_water_cond (S m-1) ?          0.0    5.78388
 sci_water_pressure (CTD Pressure, bar) ?          0.0    21.302
 sci_water_temp (degrees_C) ?          0.0    29.9302
 x_low_power_status (nodim) ?          1.0    1.0
 x_surface_active (nodim) ?          0.0    7.0
 
Palvelinpuolen toiminnot ?
 distinct() ?
? ("Vie hiiri tähän nähdäksesi luettelon vaihtoehdoista. Napsauta vaihtoehtoa valitaksesi sen.Vie hiiri tähän nähdäksesi luettelon vaihtoehdoista. Napsauta vaihtoehtoa valitaksesi sen.Vie hiiri tähän nähdäksesi luettelon vaihtoehdoista. Napsauta vaihtoehtoa valitaksesi sen.Vie hiiri tähän nähdäksesi luettelon vaihtoehdoista. Napsauta vaihtoehtoa valitaksesi sen.Vie hiiri tähän nähdäksesi luettelon vaihtoehdoista. Napsauta vaihtoehtoa valitaksesi sen.")

Tiedostotyyppi: (lisää tietoa)

(Documentation / Bypass this form ? )
 
(Ole kärsivällinen. Tietojen saaminen voi kestää hetken.)


 

Tietojoukon attribuuttirakenne (.das) tälle tietojoukolle

Attributes {
 s {
  time {
    UInt32 _ChunkSizes 490;
    String _CoordinateAxisType "Time";
    Float64 actual_range 1.786544626173e+9, 1.787637918355e+9;
    String axis "T";
    Int32 bytes 8;
    String calendar "gregorian";
    String comment "Alias for m_present_time";
    String ioos_category "Time";
    String long_name "m_present_time";
    String source_sensor "m_present_time";
    String standard_name "time";
    String time_origin "01-JAN-1970 00:00:00";
    String units "seconds since 1970-01-01T00:00:00Z";
    Float64 valid_max 2.147483647e+9;
    Float64 valid_min 0.0;
  }
  latitude {
    UInt32 _ChunkSizes 490;
    String _CoordinateAxisType "Lat";
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range 12.275213333333333, 12.775933333333334;
    String axis "Y";
    Int32 bytes 8;
    String comment "m_gps_lat converted to decimal degrees and interpolated";
    String ioos_category "Location";
    String long_name "Latitude";
    String observation_type "calculated";
    Int32 precision 5;
    String source_sensor "m_gps_lat";
    String standard_name "latitude";
    String units "degrees_north";
    Float64 valid_max 90.0;
    Float64 valid_min -90.0;
  }
  longitude {
    UInt32 _ChunkSizes 490;
    String _CoordinateAxisType "Lon";
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range -55.809934999999996, -55.49728333333334;
    String axis "X";
    Int32 bytes 8;
    String comment "m_gps_lon converted to decimal degrees and interpolated";
    String ioos_category "Location";
    String long_name "Longitude";
    String observation_type "calculated";
    Int32 precision 5;
    String source_sensor "m_gps_lon";
    String standard_name "longitude";
    String units "degrees_east";
    Float64 valid_max 180.0;
    Float64 valid_min -180.0;
  }
  depth {
    UInt32 _ChunkSizes 816;
    String _CoordinateAxisType "Height";
    String _CoordinateZisPositive "down";
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 211.6865;
    String axis "Z";
    String comment "Calculated from llat_pressure and llat_latitude using gsw.z_from_p";
    String ioos_category "Location";
    String long_name "CTD Depth";
    String observation_type "calculated";
    String positive "down";
    String reference_datum "sea-surface";
    String standard_name "depth";
    String units "m";
    Float32 valid_max 2000.0;
    Float32 valid_min 0.0;
  }
  trajectory {
    UInt32 _ChunkSizes 22;
    String cf_role "trajectory_id";
    String comment "A trajectory is a single deployment of a glider and may span multiple data files.";
    String ioos_category "Identifier";
    String long_name "Trajectory/Deployment Name";
  }
  source_file {
    UInt32 _ChunkSizes 37;
    String all_sensors "0";
    String comment "Name of the source data file and associated file metadata";
    String dbd_label "DBD_ASC(dinkum_binary_data_ascii)file";
    String encoding_ver "2";
    Int32 file_size_bytes 773865;
    String filename "capex690-2026-224-1-109";
    String filename_extension "sbd";
    String filename_label "capex690-2026-224-1-109-sbd(01100109)";
    String fileopen_time "Tue_Aug_25_00:32:21_2026";
    String ioos_category "Unknown";
    String long_name "Source data file";
    String mission_name "astock.mi";
    String num_ascii_tags "14";
    String num_label_lines "3";
    String num_segments "1";
    String segment_filename_0 "capex690-2026-224-1-109";
    String sensors_per_cycle "71";
    String source_file "/home/coolgroup/slocum/deployments/2026/capex690-20260812T1423/data/in/ascii/sbd/capex690_2026_224_1_109_sbd.dat";
    String the8x3_filename "01100109";
  }
  platform {
    Int32 _FillValue -2147483647;
    String depth_rating "200m";
    String description "A long-range autonomous underwater vehicle (AUV) based on buoyancy. It is used for remote water column sampling. It uses hydraulic buoyancy change to alter the vehicle density in relation to the surrounding water thereby causing the vehicle to either float or sink. Given an appropriate dive or climb angle, the wings and body lift and convert some of this vertical motion into a forward saw tooth horizontal motion. Periodically, the glider surfaces and calls via Iridium Satellite Phone (anywhere in world) or Free Wave RF Modem (line of sight) in to Dockserver (auto attendant computer) to relay navigational fix, data and receive further instructions for command and control. The glider is capable of storm sampling and can be flown in a coordinated fleet. It is 1.5 m in length, has a hull diameter of 22 cm and mass of 54 kgs. It has an exchangeable payload (capacity up to 6 L) which is capable of housing a variety of environmental sensors such as nitrate and oxygen. It uses lithium or alkaline batteries. It has a deployment range of 600-6000 km, a deployment length of 15 days to 12 months and an operating depth range of 4-1000m. Navigation is via GPS waypoints, a pressure and altimeter sensor. Maximum speed is .35 m/s. It transmits via RF modem, Iridium (RUDICS), ARGOS or acoustic modem.";
    String id "capex690";
    String instruments "instrument_ctd,instrument_flbbcdslc,instrument_ek80";
    String ioos_category "Unknown";
    String long_name "capex690 Slocum G3S";
    String maker "Teledyne Webb Research";
    String maker_vocabulary "https://vocab.nerc.ac.uk/collection/L35/current/MAN0020/,https://vocab.nerc.ac.uk/collection/B75/current/ORG01077/";
    String model "Teledyne Webb Research Slocum G3S glider";
    String model_vocabulary "https://vocab.nerc.ac.uk/collection/B76/current/B7600001/";
    String os_version "11.08";
    String owner "Teledyne Webb Research";
    String serial_number "690";
    String type "sub-surface gliders";
    String type_vocabulary "https://vocab.nerc.ac.uk/collection/L06/current/27/";
    String wmo_id "8901230";
    String wmo_platform_code "8901230";
  }
  instrument_ctd {
    Int32 _FillValue -2147483647;
    String calibration_date "2026-03-11";
    String comment "Pumped";
    String description "A profiling CTD instrument designed specifically for installation on Slocum autonomous gliders. It measures conductivity, temperature and pressure for use in oceanic research, updating ocean models, assessing sensor stability on moored observatories, and leveraging data collection opportunities from operational vehicle missions. It outputs real-time data in decimal S/m, degC and decibars, or raw decimal counts. It is externally powered and continuously pumped, and can operate in both continuous sampling or polled sampling modes. It features an expendable anti-foulant device offering bio-fouling protection, and is supplied with Seasoft V2 Windows software for setup and data processing. The pressure sensor with temperature compensation is available in 4 strain-gauge ranges; 0-100; 100-350; 350-1000; 1000-2000 metres. It measures conductivity from 0-9 S/m at a resolution of 0.00001 S/m, temperature from -5 to +42 degC at a resolution of 0.001 degC, and pressure up to 2000 m (dependant on the range chosen), at a resolution of 0.002 percent of full scale range.";
    String factory_calibrated "2026-03-11";
    String ioos_category "Identifier";
    String long_name "Sea-Bird Slocum Glider GPCTD";
    String maker "Sea-Bird Scientific";
    String maker_vocabulary "https://vocab.nerc.ac.uk/collection/B75/current/ORG00226/,https://vocab.nerc.ac.uk/collection/L35/current/MAN0013/";
    String model "Sea-Bird Slocum Glider Payload {GPCTD} CTD";
    String model_vocabulary "https://vocab.nerc.ac.uk/collection/L22/current/TOOL1492/";
    String owner "Teledyne Webb Research";
    String serial_number "9065";
    String type "CTD,salinity sensor,sensor model,water temperature sensor,water pressure sensor";
    String type_vocabulary "https://vocab.nerc.ac.uk/collection/L05/current/130/,https://vocab.nerc.ac.uk/collection/L05/current/350/,https://vocab.nerc.ac.uk/collection/L19/current/SDNKG17/,https://vocab.nerc.ac.uk/collection/L05/current/134/,https://vocab.nerc.ac.uk/collection/L05/current/WPS/";
  }
  instrument_ek80 {
    Int32 _FillValue -2147483647;
    String calibration_date "1970-01-01";
    String comment "This sensor is the Wideband Transceiver (WBT) Mini, configured to collect measurements at 200 and 333 kHz. Calibration is scheduled for post-deployment on 2026-09-03";
    String description "A high precision scientific echo sounder, designed to simultaneously operate frequencies ranging from 10 to 500 kHz. EK80 is a modular echo sounder system, and can operate with a combination of split and single beam transducers facilitated by a built-in calibration application. This system was built in succession to the EK60 echo sounder.";
    String factory_calibrated "1970-01-01";
    String ioos_category "Unknown";
    String long_name "EK80 echo sounder";
    String maker "Kongsberg Maritime AS";
    String maker_vocabulary "https://vocab.nerc.ac.uk/collection/B75/current/ORG00360/";
    String model "EK80";
    String model_vocabulary "https://vocab.nerc.ac.uk/collection/L22/current/TOOL1205/";
    String owner "Teledyne Webb Research";
    String serial_number "284345";
    String type "sensor_model, Fish-finder echosounders";
    String type_vocabulary "https://vocab.nerc.ac.uk/collection/L19/current/SDNKG17/, https://vocab.nerc.ac.uk/collection/L05/current/FFES/";
  }
  instrument_flbbcdslc {
    Int32 _FillValue -2147483647;
    String calibration_date "2026-04-30";
    String comment "Chlorophyll a,beta700nm,CDOM";
    String description "A variant of the ECO Puck Triplet (https://vocab.nerc.ac.uk/collection/L22/current/TOOL0673/). It is a three-optical-sensor, user-defined instrument that carries a chlorophyll-a fluorometer, FDOM fluorometer and scattering meter. ECO Pucks are real-time only sensors as they are integrated onto the OEM platform that provides power and data handling. The SLC designation signifies this is a third generation model that is specific for integration into Slocum gliders with a dry science bay. The fluorometers and scattering meter are single wavelength sensors. The model is fitted with an added copper faceplate for bio-fouling mitigation and is depth-rated to 1000 m.";
    String factory_calibrated "2026-04-30";
    String ioos_category "Identifier";
    String long_name "ECO Puck Triplet FLBBCD-SLC";
    String maker "WET Labs,Sea-Bird Scientific";
    String maker_vocabulary "https://vocab.nerc.ac.uk/collection/L35/current/MAN0026/,https://vocab.nerc.ac.uk/collection/B75/current/ORG00226/";
    String model "WETLabs ECO Puck Triplet FLBBCD-SLC scattering fluorescence sensor";
    String model_vocabulary "https://vocab.nerc.ac.uk/collection/L22/current/TOOL1312/";
    String owner "Teledyne Webb Research";
    String serial_number "4199";
    String type "sensor_model,optical backscatter sensor,fluorometer";
    String type_vocabulary "https://vocab.nerc.ac.uk/collection/L19/current/SDNKG17/,https://vocab.nerc.ac.uk/collection/L05/current/123/,https://vocab.nerc.ac.uk/collection/L05/current/113/";
  }
  c_alt_time {
    UInt32 _ChunkSizes 1024;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1.0, -1.0;
    Int32 bytes 4;
    String ioos_category "Time";
    String long_name "c_alt_time";
    String sensor "c_alt_time";
    String source_sensor "c_alt_time";
    String type "f4";
    String units "sec";
  }
  c_ballast_pumped {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -535.0, 535.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_ballast_pumped";
    String sensor "c_ballast_pumped";
    String source_sensor "c_ballast_pumped";
    String type "f4";
    String units "cc";
  }
  c_battpos {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.7, 0.7;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_battpos";
    String sensor "c_battpos";
    String source_sensor "c_battpos";
    String type "f4";
    String units "in";
  }
  c_climb_bpump {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 365.0, 1000.0;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "c_climb_bpump";
    String sensor "c_climb_bpump";
    String source_sensor "c_climb_bpump";
    String type "f4";
    String units "X";
  }
  c_de_oil_vol {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 260.0, 260.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_de_oil_vol";
    String sensor "c_de_oil_vol";
    String source_sensor "c_de_oil_vol";
    String type "f4";
    String units "cc";
  }
  c_dive_bpump {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1000.0, -160.0;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "c_dive_bpump";
    String sensor "c_dive_bpump";
    String source_sensor "c_dive_bpump";
    String type "f4";
    String units "X";
  }
  c_fin {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.45, 0.45;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_fin";
    String sensor "c_fin";
    String source_sensor "c_fin";
    String type "f4";
    String units "rad";
  }
  c_flbbcd_on {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1.0, 0.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_flbbcd_on";
    String sensor "c_flbbcd_on";
    String source_sensor "c_flbbcd_on";
    String type "f4";
    String units "sec";
  }
  c_heading {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -3.12211, 3.13494;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_heading";
    String sensor "c_heading";
    String source_sensor "c_heading";
    String type "f4";
    String units "rad";
  }
  c_pitch {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.4538, 0.4538;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_pitch";
    String sensor "c_pitch";
    String source_sensor "c_pitch";
    String type "f4";
    String units "rad";
  }
  c_profile_on {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1.0, 0.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_profile_on";
    String sensor "c_profile_on";
    String source_sensor "c_profile_on";
    String type "f4";
    String units "sec";
  }
  c_thruster_on {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "c_thruster_on";
    String sensor "c_thruster_on";
    String source_sensor "c_thruster_on";
    String type "f4";
    String units "%";
  }
  c_wpt_lat {
    UInt32 _ChunkSizes 490;
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range 1140.263, 1249.8;
    Int32 bytes 8;
    String ioos_category "Location";
    String long_name "c_wpt_lat";
    String sensor "c_wpt_lat";
    String source_sensor "c_wpt_lat";
    String type "f8";
    String units "lat";
  }
  c_wpt_lon {
    UInt32 _ChunkSizes 490;
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range -5537.70450000032, -5424.552;
    Int32 bytes 8;
    String ioos_category "Location";
    String long_name "c_wpt_lon";
    String sensor "c_wpt_lon";
    String source_sensor "c_wpt_lon";
    String type "f8";
    String units "lon";
  }
  crs {
    Int32 _FillValue -2147483647;
    String epsg_code "EPSG:4326";
    String grid_mapping_name "latitude_longitude";
    Float64 inverse_flattening 298.257223563;
    String ioos_category "Unknown";
    String long_name "http://www.opengis.net/def/crs/EPSG/0/4326";
    Float64 semi_major_axis 6378137.0;
  }
  m_altitude {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.0;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "m_altitude";
    String sensor "m_altitude";
    String source_sensor "m_altitude";
    String type "f4";
    String units "m";
  }
  m_argos_is_xmitting {
    UInt32 _ChunkSizes 2447;
    Byte _FillValue 127;
    String _Unsigned "false";
    Byte actual_range 0, 1;
    Int32 bytes 1;
    String ioos_category "Unknown";
    String long_name "m_argos_is_xmitting";
    String sensor "m_argos_is_xmitting";
    String source_sensor "m_argos_is_xmitting";
    String type "i1";
    String units "bool";
  }
  m_argos_on {
    UInt32 _ChunkSizes 2447;
    Byte _FillValue 127;
    String _Unsigned "false";
    Byte actual_range 0, 1;
    Int32 bytes 1;
    String ioos_category "Unknown";
    String long_name "m_argos_on";
    String sensor "m_argos_on";
    String source_sensor "m_argos_on";
    String type "i1";
    String units "bool";
  }
  m_avg_climb_rate {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.370878, -0.0245689;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_avg_climb_rate";
    String sensor "m_avg_climb_rate";
    String source_sensor "m_avg_climb_rate";
    String type "f4";
    String units "m/s";
  }
  m_avg_depth_rate {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.321358, 0.43929;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "m_avg_depth_rate";
    String sensor "m_avg_depth_rate";
    String source_sensor "m_avg_depth_rate";
    String type "f4";
    String units "m/s";
  }
  m_avg_dive_rate {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.522916;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_avg_dive_rate";
    String sensor "m_avg_dive_rate";
    String source_sensor "m_avg_dive_rate";
    String type "f4";
    String units "m/s";
  }
  m_avg_thruster_power {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_avg_thruster_power";
    String sensor "m_avg_thruster_power";
    String source_sensor "m_avg_thruster_power";
    String type "f4";
    String units "watt";
  }
  m_ballast_pumped {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -536.562, 539.683;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_ballast_pumped";
    String sensor "m_ballast_pumped";
    String source_sensor "m_ballast_pumped";
    String type "f4";
    String units "cc";
  }
  m_battery {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 14.2265, 15.3414;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_battery";
    String sensor "m_battery";
    String source_sensor "m_battery";
    String type "f4";
    String units "volts";
  }
  m_battpos {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.738241, 0.739195;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_battpos";
    String sensor "m_battpos";
    String source_sensor "m_battpos";
    String type "f4";
    String units "in";
  }
  m_coulomb_amphr_total {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 6.64126, 126.324;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_coulomb_amphr_total";
    String sensor "m_coulomb_amphr_total";
    String source_sensor "m_coulomb_amphr_total";
    String type "f4";
    String units "amp-hrs";
  }
  m_coulomb_current {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.045625, 5.9441;
    Int32 bytes 4;
    String ioos_category "Currents";
    String long_name "m_coulomb_current";
    String sensor "m_coulomb_current";
    String source_sensor "m_coulomb_current";
    String type "f4";
    String units "amp";
  }
  m_de_oil_vol {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_de_oil_vol";
    String sensor "m_de_oil_vol";
    String source_sensor "m_de_oil_vol";
    String type "f4";
    String units "cc";
  }
  m_depth {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 195.982;
    String axis "Z";
    Int32 bytes 4;
    String comment "Glider pressure transducer measured pressure";
    String ioos_category "Location";
    String long_name "Depth";
    String observation_type "calculated";
    String positive "down";
    String reference_datum "sea-surface";
    String source_sensor "m_depth";
    String standard_name "depth";
    String units "m";
    Float32 valid_max 2000.0;
    Float32 valid_min 0.0;
  }
  m_depth_rate_avg_final {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.34319, 0.458956;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "m_depth_rate_avg_final";
    String sensor "m_depth_rate_avg_final";
    String source_sensor "m_depth_rate_avg_final";
    String type "f4";
    String units "m/s";
  }
  m_digifin_leakdetect_reading {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 884.0, 1023.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_digifin_leakdetect_reading";
    String sensor "m_digifin_leakdetect_reading";
    String source_sensor "m_digifin_leakdetect_reading";
    String type "f4";
    String units "nodim";
  }
  m_dist_to_wpt {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 1.45569, 151709.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_dist_to_wpt";
    String sensor "m_dist_to_wpt";
    String source_sensor "m_dist_to_wpt";
    String type "f4";
    String units "m";
  }
  m_fin {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.458518, 0.458518;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_fin";
    String sensor "m_fin";
    String source_sensor "m_fin";
    String type "f4";
    String units "rad";
  }
  m_gps_lat {
    UInt32 _ChunkSizes 490;
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range 1216.5128, 1246.556;
    String axis "Y";
    Int32 bytes 8;
    String comment "Latitude measured using on-board GPS.  NMEA coordinates.";
    String ioos_category "Location";
    String long_name "GPS Measured Latitude";
    String observation_type "measured";
    Int32 precision 5;
    String source_sensor "m_gps_lat";
    String units "degrees_minutes_north";
    Float64 valid_max 9000.0;
    Float64 valid_min -9000.0;
  }
  m_gps_lon {
    UInt32 _ChunkSizes 490;
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range -5548.5961, -5529.837;
    String axis "X";
    Int32 bytes 8;
    String comment "Longitude measured using on-board GPS. NMEA coordinates.";
    String ioos_category "Location";
    String long_name "GPS Measured Longitude";
    String observation_type "measured";
    Int32 precision 5;
    String source_sensor "m_gps_lon";
    String units "degrees_minutes_east";
    Float64 valid_max 18000.0;
    Float64 valid_min -18000.0;
  }
  m_heading {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 6.26748;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_heading";
    String sensor "m_heading";
    String source_sensor "m_heading";
    String type "f4";
    String units "rad";
  }
  m_iridium_connected {
    UInt32 _ChunkSizes 2447;
    Byte _FillValue 127;
    String _Unsigned "false";
    Byte actual_range 0, 1;
    Int32 bytes 1;
    String ioos_category "Unknown";
    String long_name "m_iridium_connected";
    String sensor "m_iridium_connected";
    String source_sensor "m_iridium_connected";
    String type "i1";
    String units "bool";
  }
  m_iridium_on {
    UInt32 _ChunkSizes 2447;
    Byte _FillValue 127;
    String _Unsigned "false";
    Byte actual_range 0, 1;
    Int32 bytes 1;
    String ioos_category "Unknown";
    String long_name "m_iridium_on";
    String sensor "m_iridium_on";
    String source_sensor "m_iridium_on";
    String type "i1";
    String units "bool";
  }
  m_iridium_status {
    UInt32 _ChunkSizes 2447;
    Byte _FillValue 127;
    String _Unsigned "false";
    Byte actual_range 1, 99;
    Int32 bytes 1;
    String ioos_category "Unknown";
    String long_name "m_iridium_status";
    String sensor "m_iridium_status";
    String source_sensor "m_iridium_status";
    String type "i1";
    String units "enum";
  }
  m_lat {
    UInt32 _ChunkSizes 490;
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range 1216.27538144783, 1246.62663958566;
    String axis "Y";
    Int32 bytes 8;
    String comment "Dead-reckoned latitude calculated by the glider while underwater. NMEA coordinates";
    String ioos_category "Time";
    String long_name "Dead-Reckoned Latitude";
    String observation_type "calculated";
    Int32 precision 5;
    String source_sensor "m_lat";
    String standard_name "latitude";
    String units "degrees_minutes_north";
    Float64 valid_max 9000.0;
    Float64 valid_min -9000.0;
  }
  m_leakdetect_voltage {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 2.5, 2.5;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_leakdetect_voltage";
    String sensor "m_leakdetect_voltage";
    String source_sensor "m_leakdetect_voltage";
    String type "f4";
    String units "volts";
  }
  m_leakdetect_voltage_forward {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 2.49997, 2.5;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_leakdetect_voltage_forward";
    String sensor "m_leakdetect_voltage_forward";
    String source_sensor "m_leakdetect_voltage_forward";
    String type "f4";
    String units "volts";
  }
  m_lon {
    UInt32 _ChunkSizes 490;
    Float64 _FillValue 9.96920996838687e+36;
    Float64 actual_range -5548.59454302792, -5529.84590000026;
    String axis "X";
    Int32 bytes 8;
    String comment "Dead-reckoned longitude calculoned by the glider while underwater. NMEA coordinates";
    String ioos_category "Time";
    String long_name "Dead-Reckoned Longitude";
    String observation_type "calculated";
    Int32 precision 5;
    String source_sensor "m_lon";
    String standard_name "longitude";
    String units "degrees_minutes_east";
    Float64 valid_max 18000.0;
    Float64 valid_min -18000.0;
  }
  m_mission_avg_speed_climbing {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.187221, 0.401288;
    Int32 bytes 4;
    String ioos_category "Currents";
    String long_name "m_mission_avg_speed_climbing";
    String sensor "m_mission_avg_speed_climbing";
    String source_sensor "m_mission_avg_speed_climbing";
    String type "f4";
    String units "m/s";
  }
  m_mission_avg_speed_diving {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.120452, 0.411619;
    Int32 bytes 4;
    String ioos_category "Currents";
    String long_name "m_mission_avg_speed_diving";
    String sensor "m_mission_avg_speed_diving";
    String source_sensor "m_mission_avg_speed_diving";
    String type "f4";
    String units "m/s";
  }
  m_pitch {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1.08734, 0.727802;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_pitch";
    String sensor "m_pitch";
    String source_sensor "m_pitch";
    String type "f4";
    String units "rad";
  }
  m_present_secs_into_mission {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.855, 1008910.0;
    Int32 bytes 4;
    String ioos_category "Time";
    String long_name "m_present_secs_into_mission";
    String sensor "m_present_secs_into_mission";
    String source_sensor "m_present_secs_into_mission";
    String type "f4";
    String units "sec";
  }
  m_present_time {
    UInt32 _ChunkSizes 490;
    Float64 actual_range 1.786544626173e+9, 1.787637918355e+9;
    String axis "T";
    Int32 bytes 8;
    String calendar "gregorian";
    String ioos_category "Time";
    String long_name "m_present_time";
    String source_sensor "m_present_time";
    String standard_name "time";
    String time_origin "01-JAN-1970 00:00:00";
    String units "seconds since 1970-01-01T00:00:00Z";
    Float64 valid_max 2.147483647e+9;
    Float64 valid_min 0.0;
  }
  m_raw_altitude {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 110.0, 110.0;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "m_raw_altitude";
    String sensor "m_raw_altitude";
    String source_sensor "m_raw_altitude";
    String type "f4";
    String units "m";
  }
  m_roll {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1.09432, 0.507891;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_roll";
    String sensor "m_roll";
    String source_sensor "m_roll";
    String type "f4";
    String units "rad";
  }
  m_thruster_current {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.6783;
    Int32 bytes 4;
    String ioos_category "Currents";
    String long_name "m_thruster_current";
    String sensor "m_thruster_current";
    String source_sensor "m_thruster_current";
    String type "f4";
    String units "amp";
  }
  m_thruster_power {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 4.0698;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_thruster_power";
    String sensor "m_thruster_power";
    String source_sensor "m_thruster_power";
    String type "f4";
    String units "watt";
  }
  m_thruster_voltage {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 6.0;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_thruster_voltage";
    String sensor "m_thruster_voltage";
    String source_sensor "m_thruster_voltage";
    String type "f4";
    String units "volts";
  }
  m_vacuum {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 4.97202, 8.06446;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_vacuum";
    String sensor "m_vacuum";
    String source_sensor "m_vacuum";
    String type "f4";
    String units "inHg";
  }
  m_veh_temp {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 23.7019, 33.3566;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "m_veh_temp";
    String sensor "m_veh_temp";
    String source_sensor "m_veh_temp";
    String type "f4";
    String units "c";
  }
  m_water_depth {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -1.0, -1.0;
    Int32 bytes 4;
    String ioos_category "Bathymetry";
    String long_name "m_water_depth";
    String sensor "m_water_depth";
    String source_sensor "m_water_depth";
    String standard_name "sea_floor_depth_below_sea_surface";
    String type "f4";
    String units "m";
  }
  m_water_vx {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.552612, 0.0234296;
    Int32 bytes 4;
    String comment "The depth-averaged current is an estimate of the net current measured while the glider is underwater.  The value is calculated over the entire underwater segment, which may consist of 1 or more dives.";
    String ioos_category "Currents";
    String long_name "Depth-averaged Eastward Sea Water Velocity";
    String observation_type "calculated";
    String source_sensor "m_water_vx";
    String standard_name "eastward_sea_water_velocity";
    String units "m s-1";
    Float32 valid_max 10.0;
    Float32 valid_min -10.0;
  }
  m_water_vy {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -0.183342, 0.615682;
    Int32 bytes 4;
    String comment "The depth-averaged current is an estimate of the net current measured while the glider is underwater.  The value is calculated over the entire underwater segment, which may consist of 1 or more dives.";
    String ioos_category "Currents";
    String long_name "Depth-averaged Northward Sea Water Velocity";
    String observation_type "calculated";
    String source_sensor "m_water_vy";
    String standard_name "northward_sea_water_velocity";
    String units "m s-1";
    Float32 valid_max 10.0;
    Float32 valid_min -10.0;
  }
  pressure {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 213.02;
    String axis "Z";
    Int32 bytes 4;
    String comment "Alias for sci_water_pressure, multiplied by 10 to convert from bar to dbar";
    String ioos_category "Pressure";
    String long_name "CTD Pressure";
    String observation_type "measured";
    String positive "down";
    String reference_datum "sea-surface";
    String source_sensor "sci_water_pressure";
    String standard_name "sea_water_pressure";
    String units "dbar";
    Float32 valid_max 2000.0;
    Float32 valid_min 0.0;
  }
  sci_flbbcd_bb_units {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 8.86176e-4;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "sci_flbbcd_bb_units";
    String sensor "sci_flbbcd_bb_units";
    String source_sensor "sci_flbbcd_bb_units";
    String type "f4";
    String units "nodim";
  }
  sci_flbbcd_cdom_units {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range -9.955, 11.1315;
    Int32 bytes 4;
    String ioos_category "Unknown";
    String long_name "sci_flbbcd_cdom_units";
    String sensor "sci_flbbcd_cdom_units";
    String source_sensor "sci_flbbcd_cdom_units";
    String type "f4";
    String units "ppb";
  }
  sci_flbbcd_chlor_units {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 0.7665;
    Int32 bytes 4;
    String ioos_category "Ocean Color";
    String long_name "sci_flbbcd_chlor_units";
    String sensor "sci_flbbcd_chlor_units";
    String source_sensor "sci_flbbcd_chlor_units";
    String type "f4";
    String units "ug/l";
  }
  sci_m_present_secs_into_mission {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 112.736, 1008910.0;
    Int32 bytes 4;
    String ioos_category "Time";
    String long_name "sci_m_present_secs_into_mission";
    String sensor "sci_m_present_secs_into_mission";
    String source_sensor "sci_m_present_secs_into_mission";
    String type "f4";
    String units "sec";
  }
  sci_m_present_time {
    UInt32 _ChunkSizes 490;
    Float64 actual_range 1.786544626173e+9, 1.787637656339e+9;
    String axis "T";
    Int32 bytes 8;
    String calendar "gregorian";
    String ioos_category "Time";
    String long_name "sci_m_present_time";
    String source_sensor "sci_m_present_time";
    String standard_name "time";
    String time_origin "01-JAN-1970 00:00:00";
    String units "seconds since 1970-01-01T00:00:00Z";
    Float64 valid_max 2.147483647e+9;
    Float64 valid_min 0.0;
  }
  sci_water_cond {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 5.78388;
    Int32 bytes 4;
    String ioos_category "Salinity";
    String long_name "sci_water_cond";
    String observation_type "measured";
    String source_sensor "sci_water_cond";
    String standard_name "sea_water_electrical_conductivity";
    String units "S m-1";
    Float32 valid_max 10.0;
    Float32 valid_min 0.0;
  }
  sci_water_pressure {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 21.302;
    String axis "Z";
    Int32 bytes 4;
    String ioos_category "Pressure";
    String long_name "CTD Pressure";
    String observation_type "measured";
    String positive "down";
    String reference_datum "sea-surface";
    String sensor "sci_water_pressure";
    String source_sensor "sci_water_pressure";
    String standard_name "sea_water_pressure";
    String type "f4";
    String units "bar";
    Float32 valid_max 200.0;
    Float32 valid_min 0.0;
  }
  sci_water_temp {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 29.9302;
    Int32 bytes 4;
    String ioos_category "Temperature";
    String long_name "sci_water_temp";
    String observation_type "measured";
    String source_sensor "sci_water_temp";
    String standard_name "sea_water_temperature";
    String units "degrees_C";
    Float32 valid_max 40.0;
    Float32 valid_min -5.0;
  }
  x_low_power_status {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 1.0, 1.0;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "x_low_power_status";
    String sensor "x_low_power_status";
    String source_sensor "x_low_power_status";
    String type "f4";
    String units "nodim";
  }
  x_surface_active {
    UInt32 _ChunkSizes 816;
    Float32 _FillValue 9.96921e+36;
    Float32 actual_range 0.0, 7.0;
    Int32 bytes 4;
    String ioos_category "Location";
    String long_name "x_surface_active";
    String sensor "x_surface_active";
    String source_sensor "x_surface_active";
    String type "f4";
    String units "nodim";
  }
 }
  NC_GLOBAL {
    String _NCProperties "version=1|netcdflibversion=4.6.1|hdf5libversion=1.10.3";
    String acknowledgment "This deployment is supported by Teledyne Webb Research and the Schmidt Ocean Institute.";
    String cdm_data_type "Trajectory";
    String cdm_trajectory_variables "trajectory";
    String comment "Deployed by SPICE team aboard R/V Falkor (too) with shoreside support from Salvatore Fricano.";
    String contributor_name "Joe Gradone,Travis Miles,Scott Glenn,Oscar Schofield,Corday Selden,Grace Saba,David Farrell,Doug Wilson,Salvatore Fricano,Laura Nazzaro,Lori Garzio";
    String contributor_role "Principal Investigator,Principal Investigator,Principal Investigator,Principal Investigator,Principal Investigator,Principal Investigator,Principal Investigator,Principal Investigator,Glider Pilot,Data Management,Data Management";
    String Conventions "CF-1.6, COARDS, ACDD-1.3";
    String creator_email "gliderdata@marine.rutgers.edu";
    String creator_institution "Rutgers University";
    String creator_name "Rutgers Center for Ocean Observing Leadership Glider Data Team";
    String creator_type "group";
    String creator_url "https://rucool.marine.rutgers.edu";
    String date_created "2026-08-25T07:40:06Z";
    String date_issued "2026-08-25T07:40:06Z";
    String date_modified "2026-08-25T07:40:06Z";
    String defaultGraphQuery "longitude,latitude,time&.draw=markers&.marker=6%7C3&.color=0xFFFFFF&.colorBar=Rainbow2%7C%7C%7C%7C%7C&.bgColor=0xffccccff";
    String deployment "capex690-20260812T1423";
    Float64 Easternmost_Easting -55.49728333333334;
    String featureType "Trajectory";
    String geospatial_bounds "POLYGON ((12.59618333333333 -55.52396666666667, 12.59618333333333 -55.50557333333333, 12.56143 -55.50557333333333, 12.56143 -55.52396666666667, 12.59618333333333 -55.52396666666667))";
    String geospatial_bounds_crs "EPSG:4326";
    String geospatial_bounds_vertical_crs "EPSG:5831";
    Float64 geospatial_lat_max 12.775933333333334;
    Float64 geospatial_lat_min 12.275213333333333;
    String geospatial_lat_resolution "0.00001 degree";
    String geospatial_lat_units "degrees_north";
    Float64 geospatial_lon_max -55.49728333333334;
    Float64 geospatial_lon_min -55.809934999999996;
    String geospatial_lon_resolution "0.00001 degree";
    String geospatial_lon_units "degrees_east";
    Float64 geospatial_vertical_max 211.6865;
    Float64 geospatial_vertical_min 0.0;
    String geospatial_vertical_positive "down";
    Int32 geospatial_vertical_resolution 0;
    String geospatial_vertical_units "m";
    String gts_ingest "True";
    String history 
"2026-08-25T07:40:06Z: /tmp/tmph6q8w5va/TrajectoryNetCDFWriter.pyr5uwj7x3.nc created
2026-08-25T07:40:06Z: /home/glideradm/code/proc/nc/bin/proc_deployment_trajectories_to_nc.py /home/coolgroup/slocum/deployments/2026/capex690-20260812T1423/data/in/ascii/sbd/capex690_2026_224_1_109_sbd.dat

2026-08-25T11:38:35Z (local files)
2026-08-25T11:38:35Z http://slocum-data.marine.rutgers.edu/erddap/fi/tabledap/capex690-20260812T1423-trajectory-raw-rt.html";
    String id "capex690-20260812T1423";
    String infoUrl "https://rucool.marine.rutgers.edu";
    String institution "Teledyne Webb Research, Rutgers University";
    String instrument "In Situ/Laboratory Instruments > Profilers/Sounders > CTD";
    String instrument_vocabulary "NASA/GCMD Instrument Keywords Version 8.5";
    String keywords_vocabulary "NASA/GCMD Earth Sciences Keywords Version 8.5";
    String license "This data may be redistributed and used without restriction.  Data provided as is with no expressed or implied assurance of quality assurance or quality control";
    String naming_authority "edu.rutgers.marine.rucool";
    String ncei_template_version "NCEI_NetCDF_Trajectory_Template_v2.0";
    Float64 Northernmost_Northing 12.775933333333334;
    String platform "In Situ Ocean-based Platforms > AUVS > Autonomous Underwater Vehicles";
    String platform_type "Slocum Glider";
    String platform_vocabulary "NASA/GCMD Platforms Keywords Version 8.5";
    String processing_level "Raw Slocum glider time-series dataset from the native data file format. No quality control provided.";
    String product_version "1.0";
    String program "Challenger";
    String project "SPICE Salt-finger Processes Influence on Carbon and Ecosystem dynamics";
    String publisher_email "gliderdata@marine.rutgers.edu";
    String publisher_institution "Rutgers University";
    String references "https://rucool.marine.rutgers.edu";
    String sea_name "Tropical Western Atlantic";
    String source "Observational Slocum glider data from source dba file capex690-2026-224-1-109-sbd(01100109)";
    String sourceUrl "(local files)";
    Float64 Southernmost_Northing 12.275213333333333;
    String standard_name_vocabulary "CF Standard Name Table v27";
    String subsetVariables "source_file";
    String summary "The capex690 planned mission serves as a biological complement to the thermohaline staircase survey for the FKt260806/SPICE cruise aboard the Schmidt Ocean Institute's R/V Falkor (too). This glider will provide active acoustic backscatter observations to characterize zooplankton biomass and vertical distribution, deployed in tandem with SEA044 - Martorn from the Voice of the Ocean Foundation. Real-time datasets will include CTD data provided to the IOOS Glider DAC and GTS to support ocean and atmospheric weather forecasting.";
    String time_coverage_duration "PT05H33M03.313S";
    String time_coverage_end "2026-08-25T06:05:18Z";
    String time_coverage_resolution "PT08S";
    String time_coverage_start "2026-08-12T14:23:46Z";
    String title "capex690-20260812T1423 Real Time Raw Time Series";
    String uuid "554aaae0-3272-488e-9889-a770afbaf1d4";
    Float64 Westernmost_Easting -55.809934999999996;
    String wmo_id "8901230";
    String wmo_platform_code "8901230";
  }
}

 

Tabledapin käyttäminen tietojen ja kaavioiden pyytämiseen taulukkotietojoukoista

tabledap avulla voit pyytää data-osajoukkoa, kaaviota tai karttaa taulukkotietojoukosta (esimerkiksi poijutietoja) erityisesti muodostetun URL-osoitteen kautta. tabledap käyttää OPeNDAP  (external link) Data Access Protocol (DAP )  (external link) ja sen valintarajoitukset  (external link) .

URL-osoite määrittää, mitä haluat: tietojoukon, kuvauksen kuvauksesta tai tietojen osajoukosta ja vastauksen tiedostotyypin.

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.


 
Translated by Google ?
ERDDAP, versio 2.30.0
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