ERDDAP
Ocean Observing System |
Compliance Complete Report
Compliance Dataset Results
CF 1.8 IOOS Compliance Report on ERDDAP datasets
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Dataset Title: | Glider deployment #48 - otn201 2015-07-30 (delayed) |
Institution: | MEOPAR (Dataset ID: otn201_20150730_48_delayed) |
Information: | Summary | License | FGDC | ISO 19115 | Metadata | Background | Files | Make a graph |
Attributes { s { time { String _CoordinateAxisType "Time"; Float64 actual_range 1.43827645236603e+9, 1.44041322181674e+9; String axis "T"; String calendar "gregorian"; String comment "Measured or calculated time at each point in the time-series"; String ioos_category "Time"; String long_name "Time"; String observation_type "measured"; 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"; Float64 _FillValue -9999.9; Float64 actual_range 0.0, 199.783; String axis "Z"; Float64 colorBarMaximum 2000.0; Float64 colorBarMinimum 0.0; String colorBarPalette "OceanDepth"; String comment "depth is generate by both sci_water_pressure or m_water_pressure mixture"; String ioos_category "Location"; String long_name "Depth"; String observation_type "calculated"; String platform "platform"; String positive "down"; String reference_datum "sea-surface"; String standard_name "depth"; String units "m"; Float64 valid_max 2000.0; Float64 valid_min 0.0; } latitude { String _CoordinateAxisType "Lat"; Float64 _FillValue -9999.9; Float64 actual_range 43.0143730482854, 44.566505; String axis "Y"; Float64 colorBarMaximum 90.0; Float64 colorBarMinimum -90.0; String comment "Interpolated latitude at each point in the time-series"; String coordinate_reference_frame "urn:ogc:crs:EPSG::4326"; String ioos_category "Location"; String long_name "Latitude"; String observation_type "measured"; String platform "platform"; String references "WGS84"; String standard_name "latitude"; String units "degrees_north"; Float64 valid_max 90.0; Float64 valid_min -90.0; } longitude { String _CoordinateAxisType "Lon"; Float64 _FillValue -9999.9; Float64 actual_range -63.409518, -62.114295; String axis "X"; Float64 colorBarMaximum 180.0; Float64 colorBarMinimum -180.0; String comment "Values may be interpolated between measured GPS fixes."; String coordinate_reference_frame "urn:ogc:crs:EPSG::4326"; String ioos_category "Location"; String long_name "Longitude"; String observation_type "measured"; String platform "platform"; String references "WGS84"; String standard_name "longitude"; String units "degrees_east"; Float64 valid_max 180.0; Float64 valid_min -180.0; } c_ballast_pumped { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -230.0, 230.0; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Ballast Pump Piston Volume"; String platform "platform"; String precision "None"; String sensor_identifier "c_ballast_pumped"; String standard_name "none"; String units "cc"; } c_battpos { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -1.4, 1.4; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Position Pitch Battery"; String platform "platform"; String precision "None"; String sensor_identifier "c_battpos"; String standard_name "none"; String units "inch"; } c_de_oil_vol { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 260.0, 260.0; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Ballast Pump Oil Volume"; String platform "platform"; String precision "None"; String sensor_identifier "c_de_oil_vol"; String standard_name "none"; String units "cc"; } c_fin { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.45, 0.45; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Fin Position"; String platform "platform"; String precision "None"; String sensor_identifier "c_fin"; String standard_name "none"; String units "rad"; } c_heading { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 6.27227; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Heading"; String platform "platform"; String precision "None"; String sensor_identifier "c_heading"; String standard_name "none"; String units "rad"; } c_pitch { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.4537, 0.4363; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Pitch"; String platform "platform"; String precision "None"; String sensor_identifier "c_pitch"; String standard_name "none"; String units "rad"; } c_thruster_on { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; Float64 colorBarMaximum 100.0; Float64 colorBarMinimum 0.0; String comment "None"; String instrument "instrument_flight_commanded"; String long_name "Commanded Thruster On"; String platform "platform"; String precision "None"; String sensor_identifier "c_thruster_on"; String standard_name "none"; String units "percent"; } m_air_pump { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 1.0; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Air Pump"; String platform "platform"; String precision "None"; String sensor_identifier "m_air_pump"; String standard_name "none"; String units "bool"; } m_ballast_pumped { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -234.307, 234.299; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Ballast Pump Piston Volume"; String platform "platform"; String precision "None"; String sensor_identifier "m_ballast_pumped"; String standard_name "none"; String units "cc"; } m_battery { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 12.0311, 15.2464; Float64 colorBarMaximum 20.0; Float64 colorBarMinimum 0.0; String instrument "instrument_flight_measured"; String long_name "Battery Voltage"; String platform "platform"; String precision "None"; String sensor_identifier "m_battery"; String standard_name "none"; String units "volts"; Float64 valid_max 17.0; Float64 valid_min 0.0; } m_battery_inst { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 10.8866, 15.3086; Float64 colorBarMaximum 20.0; Float64 colorBarMinimum 0.0; String instrument "instrument_flight_measured"; String long_name "Instantaneous Battery Voltage"; String platform "platform"; String precision "None"; String sensor_identifier "m_battery_inst"; String standard_name "none"; String units "volts"; Float64 valid_max 17.0; Float64 valid_min 0.0; } m_battpos { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -1.39919, 1.43627; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Position Pitch Battery"; String platform "platform"; String precision "None"; String sensor_identifier "m_battpos"; String standard_name "none"; String units "inch"; } m_coulomb_amphr_total { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 2.67363, 129.137; Float64 colorBarMaximum 2000.0; Float64 colorBarMinimum 0.0; String comment "Total amp-hrs measured since last coulomb_amphr_total reset."; String instrument "instrument_flight_measured"; String long_name "Coulomb Ampere Hours Total"; String platform "platform"; String precision "None"; String sensor_identifier "m_coulomb_amphr_total"; String standard_name "none"; String units "amp-hrs"; Float64 valid_max 1500.0; Float64 valid_min 0.0; } m_coulomb_current { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0192156, 4.40186; String instrument "instrument_flight_measured"; String long_name "Instantaneous Coulomb Current"; String platform "platform"; String precision "None"; String sensor_identifier "m_coulomb_current"; String standard_name "none"; String units "amps"; } m_depth { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 199.783; Float64 colorBarMaximum 8000.0; Float64 colorBarMinimum -8000.0; String colorBarPalette "TopographyDepth"; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Depth"; String platform "platform"; String precision "None"; String sensor_identifier "m_depth"; String standard_name "depth"; String units "m"; } m_depth_rate_avg_final { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.226972, 0.343113; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Average Vertical Velocity"; String platform "platform"; String precision "None"; String sensor_identifier "m_depth_rate_avg_final"; String standard_name "platform_heave_rate_down"; String units "m s-1"; } m_de_oil_vol { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Ballast Pump Oil Volume"; String platform "platform"; String precision "None"; String sensor_identifier "m_de_oil_vol"; String standard_name "none"; String units "cc"; } m_fin { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.651533, 0.460852; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Fin Position"; String platform "platform"; String precision "None"; String sensor_identifier "m_fin"; String standard_name "none"; String units "rad"; } m_final_water_vx { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.235055, 0.330954; Float64 colorBarMaximum 0.5; Float64 colorBarMinimum -0.5; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Water Velocity X"; String platform "platform"; String precision "None"; String sensor_identifier "m_final_water_vx"; String standard_name "sea_water_x_velocity"; String units "m s-1"; } m_final_water_vy { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.156317, 0.153143; Float64 colorBarMaximum 0.5; Float64 colorBarMinimum -0.5; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Water Velocity Y"; String platform "platform"; String precision "None"; String sensor_identifier "m_final_water_vy"; String standard_name "sea_water_y_velocity"; String units "m s-1"; } m_gps_lat { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 43.017342, 44.566505; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Gps Latitude"; String platform "platform"; String precision "None"; String sensor_identifier "m_gps_lat"; String standard_name "none"; String units "degrees_north"; } m_gps_lon { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -63.409518, -62.114295; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Gps Longitude"; String platform "platform"; String precision "None"; String sensor_identifier "m_gps_lon"; String standard_name "none"; String units "degrees_east"; } m_heading { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 6.28144; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Heading"; String platform "platform"; String precision "None"; String sensor_identifier "m_heading"; String standard_name "platform_orientation"; String units "rad"; } m_pitch { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.938987, 0.893609; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Pitch"; String platform "platform"; String precision "None"; String sensor_identifier "m_pitch"; String standard_name "platform_pitch_angle"; String units "rad"; } m_roll { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.3735, 0.18326; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Roll"; String platform "platform"; String precision "None"; String sensor_identifier "m_roll"; String standard_name "platform_roll_angle"; String units "rad"; } m_thruster_power { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Measured Thruster Power Consumption"; String platform "platform"; String precision "None"; String sensor_identifier "m_thruster_power"; String standard_name "none"; String units "watt"; } m_veh_temp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -67.84, 332.16; Float64 colorBarMaximum 40.0; Float64 colorBarMinimum -10.0; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Temperature Inside Glider"; String platform "platform"; String precision "None"; String sensor_identifier "m_veh_temp"; String standard_name "none"; String units "degC"; } m_water_depth { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -1.0, 272.727; Float64 colorBarMaximum 8000.0; Float64 colorBarMinimum -8000.0; String colorBarPalette "TopographyDepth"; String comment "None"; String instrument "instrument_flight_measured"; String long_name "Water Depth"; String platform "platform"; String precision "None"; String sensor_identifier "m_water_depth"; String standard_name "sea_floor_depth_below_sea_surface"; String units "m"; } sci_bb2flsV2_b470_ref { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_b470_ref"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_b470_ref-nodim"; String standard_name "none"; } sci_bb2flsV2_b470_scaled { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_b470_scaled"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_b470_scaled-nodim"; String standard_name "none"; } sci_bb2flsV2_b470_sig { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_b470_sig"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_b470_sig-nodim"; String standard_name "none"; } sci_bb2flsV2_b532_ref { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_b532_ref"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_b532_ref-nodim"; String standard_name "none"; } sci_bb2flsV2_b532_scaled { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_b532_scaled"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_b532_scaled-nodim"; String standard_name "none"; } sci_bb2flsV2_b532_sig { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_b532_sig"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_b532_sig-nodim"; String standard_name "none"; } sci_bb2flsV2_chl_ref { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_chl_ref"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_chl_ref-nodim"; String standard_name "none"; } sci_bb2flsV2_chl_scaled { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_chl_scaled"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_chl_scaled-ug/l"; String standard_name "none"; } sci_bb2flsV2_chl_sig { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_chl_sig"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_chl_sig-nodim"; String standard_name "none"; } sci_bb2flsV2_is_installed { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 1.0, 1.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_is_installed"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_is_installed-bool"; String standard_name "none"; } sci_bb2flsV2_therm { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_therm"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_therm-nodim"; String standard_name "none"; } sci_bb2flsV2_timestamp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "sci_bb2flsV2_timestamp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2flsV2_timestamp-timestamp"; String standard_name "none"; } sci_oxy3835_is_installed { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_oxygen_optode"; String long_name "Sci Oxy3835 Is Installed"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_is_installed-bool"; String standard_name "none"; } sci_oxy3835_oxygen { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; Float64 colorBarMaximum 500.0; Float64 colorBarMinimum 0.0; String comment "This sensor is unable to retain updated calibration coefficients, so the user will have to apply calibration coefficients obtained in the lab. Also, there were no salinity or pressure corrections. These data are straight out of the optode."; String instrument "instrument_oxygen_optode"; String long_name "Dissolved Oxygen Concentration"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_oxygen-nodim"; String standard_name "mole_concentration_of_dissolved_molecular_oxygen_in_sea_water"; String units "umoles L-1"; } sci_oxy3835_saturation { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; Float64 colorBarMaximum 100.0; Float64 colorBarMinimum 0.0; String comment "This sensor is unable to retain updated calibration coefficients, so the user will have to apply calibration coefficients obtained in the lab. Also, there were no salinity or pressure corrections. These data are straight out of the optode."; String instrument "instrument_oxygen_optode"; String long_name "Oxygen Saturation"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_saturation-nodim"; String standard_name "fractional_saturation_of_oxygen_in_sea_water"; String units "percent"; } sci_oxy3835_temp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; Float64 colorBarMaximum 40.0; Float64 colorBarMinimum -10.0; String comment "This measure of water temperature is from the Aanderaa optode. The water temperature from the CTD is more accurate and precise. The aft cowling of the glider covers the thermistor so this is not the same water that the optode foil is measuring."; String instrument "instrument_oxygen_optode"; String long_name "Optode Water Temperature"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_temp-nodim"; String standard_name "none"; String units "degree_Celsius"; } sci_oxy3835_timestamp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_oxygen_optode"; String long_name "Sci Oxy3835 Timestamp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_timestamp-timestamp"; String standard_name "none"; } sci_bb2fls_b660_ref { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 650.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls B660 Ref"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_b660_ref-nodim"; String standard_name "none"; } sci_bb2fls_b660_scaled { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0147845; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls B660 Scaled"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_b660_scaled-nodim"; String standard_name "none"; } sci_bb2fls_b660_sig { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 4130.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls B660 Sig"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_b660_sig-nodim"; String standard_name "none"; } sci_bb2fls_b880_ref { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 880.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls B880 Ref"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_b880_ref-nodim"; String standard_name "none"; } sci_bb2fls_b880_scaled { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -1.1671e-5, 0.00431721; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls B880 Scaled"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_b880_scaled-nodim"; String standard_name "none"; } sci_bb2fls_b880_sig { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 4130.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls B880 Sig"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_b880_sig-nodim"; String standard_name "none"; } sci_bb2fls_cdom_ref { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 460.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls Cdom Ref"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_cdom_ref-nodim"; String standard_name "none"; } sci_bb2fls_cdom_scaled { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -1.086, 310.777; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls Cdom Scaled"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_cdom_scaled-ppb"; String standard_name "none"; } sci_bb2fls_cdom_sig { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 3482.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls Cdom Sig"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_cdom_sig-nodim"; String standard_name "none"; } sci_bb2fls_is_installed { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 1.0, 1.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls Is Installed"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_is_installed-bool"; String standard_name "none"; } sci_bb2fls_therm { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 566.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls Therm"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_therm-nodim"; String standard_name "none"; } sci_bb2fls_timestamp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_fluorometer"; String long_name "Sci Bb2Fls Timestamp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_bb2fls_timestamp-timestamp"; String standard_name "none"; } sci_oxy3835_wphase_bamp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 389.1; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Bamp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_bamp-nodim"; String standard_name "none"; } sci_oxy3835_wphase_bphase { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 44.93; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Bphase"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_bphase-nodim"; String standard_name "none"; } sci_oxy3835_wphase_bpot { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 12.0; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Bpot"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_bpot-nodim"; String standard_name "none"; } sci_oxy3835_wphase_dphase { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 47.3; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Dphase"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_dphase-nodim"; String standard_name "none"; } sci_oxy3835_wphase_is_installed { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 1.0, 1.0; String instrument "instrument_oxygen_optode"; String long_name "Sci Oxy3835 Wphase Is Installed"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_is_installed-bool"; String standard_name "none"; } sci_oxy3835_wphase_oxygen { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 431.13; Float64 colorBarMaximum 500.0; Float64 colorBarMinimum 0.0; String comment "Not salinity or pressure corrected, straight out of the optode."; String instrument "instrument_oxygen_optode"; String long_name "Dissolved Oxygen Concentration"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_oxygen-nodim"; String standard_name "mole_concentration_of_dissolved_molecular_oxygen_in_sea_water"; String units "umoles L-1"; } sci_oxy3835_wphase_ramp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Ramp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_ramp-nodim"; String standard_name "none"; } sci_oxy3835_wphase_rawtemp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 846.13; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Raw Temp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_rawtemp-nodim"; String standard_name "none"; } sci_oxy3835_wphase_rphase { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String comment "Raw optode data"; String instrument "instrument_oxygen_optode"; String long_name "Optode Rphase"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_rphase-nodim"; String standard_name "none"; } sci_oxy3835_wphase_saturation { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 141.8; Float64 colorBarMaximum 1.0; Float64 colorBarMinimum 0.0; String comment "Not salinity or pressure corrected, straight out of the optode."; String instrument "instrument_oxygen_optode"; String long_name "Oxygen Saturation"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_saturation-nodim"; String standard_name "fractional_saturation_of_oxygen_in_sea_water"; } sci_oxy3835_wphase_temp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 20.72; Float64 colorBarMaximum 40.0; Float64 colorBarMinimum -10.0; String comment "This measure of water temperature is from the Aanderaa optode. The water temperature from the CTD is more accurate and precise. The aft cowling of the glider covers the thermistor so this is not the same water that the optode foil is measuring."; String instrument "instrument_oxygen_optode"; String long_name "Optode Water Temperature"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_temp-nodim"; String standard_name "none"; String units "degree_Celsius"; } sci_oxy3835_wphase_timestamp { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range 0.0, 0.0; String instrument "instrument_oxygen_optode"; String long_name "Sci Oxy3835 Wphase Timestamp"; String platform "platform"; String precision "None"; String sensor_identifier "sci_oxy3835_wphase_timestamp-timestamp"; String standard_name "none"; } conductivity { Float64 _FillValue -9999.9; Float64 actual_range 0.0, 4.30684; Float64 colorBarMaximum 9.0; Float64 colorBarMinimum 0.0; String instrument "instrument_ctd"; String ioos_category "Salinity"; String long_name "Sea Water Electrical Conductivity"; String observation_type "measured"; String platform "platform"; String standard_name "sea_water_electrical_conductivity"; String units "S.m-1"; Float64 valid_max 10.0; Float64 valid_min 0.0; } sci_water_pressure { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.027, 19.775; Float64 colorBarMaximum 5000.0; Float64 colorBarMinimum 0.0; String instrument "instrument_ctd"; String long_name "Pressure"; String platform "platform"; String precision "None"; String sensor_identifier "sci_water_pressure-bar"; String standard_name "sea_water_pressure"; String units "bar"; } temperature { Float64 _FillValue -9999.9; Float64 actual_range 0.0, 21.6046; Float64 colorBarMaximum 32.0; Float64 colorBarMinimum 0.0; String instrument "instrument_ctd"; String ioos_category "Temperature"; String long_name "Sea Water Temperature"; String observation_type "measured"; String platform "platform"; String standard_name "sea_water_temperature"; String units "Celsius"; Float64 valid_max 40.0; Float64 valid_min -5.0; } pressure { Float64 _FillValue -9999.9; Float64 actual_range -0.27, 197.75; Float64 colorBarMaximum 2000.0; Float64 colorBarMinimum 0.0; String instrument "instrument_ctd"; String ioos_category "Pressure"; String long_name "Sea Water Pressure"; String observation_type "measured"; String platform "platform"; String positive "down"; String reference_datum "sea-surface"; String standard_name "sea_water_pressure"; String units "dbar"; Float64 valid_max 2000.0; Float64 valid_min 0.0; } salinity { Float64 actual_range 0.0, 35.4562043503821; } density { Float64 actual_range 999.843072950254, 1027.96081868428; } sci_water_depth { Float64 _FillValue -9999.9; String accuracy "None"; Float64 actual_range -0.267853103061764, 196.071871181008; String instrument "instrument_ctd"; String ioos_category "Other"; String long_name "Sci Water Depth"; String platform "platform"; String standard_name "sea_water_depth"; String units "m"; } trajectory { 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"; } crs { Int32 actual_range -2147483647, -2147483647; String epsg_code "EPSG:4326"; String grid_mapping_name "latitude_longitude"; Float64 inverse_flattening 298.257223563; String ioos_category "Other"; String long_name "http://www.opengis.net/def/crs/EPSG/0/4326"; Float64 semi_major_axis 6378137.0; } u { Float64 _FillValue 25.0; Float64 actual_range -0.235055, 0.330954; Float64 colorBarMaximum 0.5; Float64 colorBarMinimum -0.5; 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 platform "platform"; String standard_name "eastward_sea_water_velocity"; String units "m s-1"; Float64 valid_max 10.0; Float64 valid_min -10.0; } lat_uv { Float64 _FillValue -999.0; Float64 actual_range 43.017342, 44.565528; Float64 colorBarMaximum 90.0; Float64 colorBarMinimum -90.0; 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 "Location"; String long_name "Depth Averaged Latitude"; String observation_type "calculated"; String platform "platform"; String standard_name "latitude"; String units "degrees_north"; Float64 valid_max 90.0; Float64 valid_min -90.0; } profile_time { Float64 actual_range 1.438276492054333e+9, 1.4404131389255e+9; String calendar "gregorian"; String comment "Timestamp corresponding to the mid-point of the profile"; String ioos_category "Time"; String long_name "Profile Time"; String observation_type "calculated"; String platform "platform"; String standard_name "time"; String time_origin "01-JAN-1970 00:00:00"; String units "seconds since 1970-01-01T00:00:00Z"; } profile_id { Int32 _FillValue -999; Int32 actual_range 1438276452, 1440413056; String cf_role "profile_id"; Float64 colorBarMaximum 2.5e+9; Float64 colorBarMinimum 0.0; String comment "Sequential profile number within the trajectory. This value is unique in each file that is part of a single trajectory/deployment."; String ioos_category "Identifier"; String long_name "Profile ID"; Int32 valid_max 2147483647; Int32 valid_min 1; } v { Float64 _FillValue 25.0; Float64 actual_range -0.156317, 0.153572; Float64 colorBarMaximum 0.5; Float64 colorBarMinimum -0.5; 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 platform "platform"; String standard_name "northward_sea_water_velocity"; String units "m.s-1"; Float64 valid_max 10.0; Float64 valid_min -10.0; } platform { Int32 _FillValue -999; String instrument "instrument_ctd"; String ioos_category "Identifier"; String long_name "otn201"; String type "platform"; } time_uv { Float64 actual_range 1.438276463514219e+9, 1.4403847739040499e+9; String calendar "gregorian"; 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 "Time"; String long_name "Depth-Averaged Time"; String observation_type "calculated"; String standard_name "time"; String time_origin "01-JAN-1970 00:00:00"; String units "seconds since 1970-01-01T00:00:00Z"; } profile_lon { Float64 _FillValue -9999.9; Float64 actual_range -63.4094755918184, -62.1150909413441; Float64 colorBarMaximum 180.0; Float64 colorBarMinimum -180.0; String comment "Value is interpolated to provide an estimate of the longitude at the mid-point of the profile"; String ioos_category "Location"; String long_name "Profile Longitude"; String observation_type "calculated"; String platform "platform"; String standard_name "longitude"; String units "degrees_east"; Float64 valid_max 180.0; Float64 valid_min -180.0; } lon_uv { Float64 _FillValue -999.0; Float64 actual_range -63.409513, -62.114497; Float64 colorBarMaximum 180.0; Float64 colorBarMinimum -180.0; 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 "Location"; String long_name "Depth Averaged Longitude"; String observation_type "calculated"; String platform "platform"; String standard_name "longitude"; String units "degrees_east"; Float64 valid_max 180.0; Float64 valid_min -180.0; } profile_lat { Float64 _FillValue -9999.9; Float64 actual_range 43.0153774555127, 44.5663938609646; Float64 colorBarMaximum 90.0; Float64 colorBarMinimum -90.0; String comment "Value is interpolated to provide an estimate of the latitude at the mid-point of the profile"; String ioos_category "Location"; String long_name "Profile Latitude"; String observation_type "calculated"; String platform "platform"; String standard_name "latitude"; String units "degrees_north"; Float64 valid_max 90.0; Float64 valid_min -90.0; } instrument_flight_measured { Int32 _FillValue -999; String identifier "m"; String long_name "flight computer measured"; String platform "otn201"; String serial_number "201"; String short_name "flight measured"; String type "instrument"; } instrument_flight_commanded { Int32 _FillValue -999; String identifier "c"; String long_name "flight computer commanded"; String platform "otn201"; String serial_number "201"; String short_name "flight commanded"; String type "instrument"; } instrument_fluorometer { Int32 _FillValue -999; String identifier "sci_bb2flsV2"; String long_name "ECO Triplet"; String platform "otn201"; String serial_number "1058"; String short_name "fluorometer"; String type "instrument"; } instrument_echosounder { Int32 _FillValue -999; String identifier "sci_echosounder"; String long_name "853es"; String platform "otn201"; String serial_number "6439"; String short_name "echosounder"; String type "instrument"; } instrument_oxygen_optode { Int32 _FillValue -999; String identifier "sci_oxy3835"; String long_name "Optode 5013w"; String platform "otn201"; String serial_number "1300"; String short_name "oxygen optode"; String type "instrument"; } instrument_ctd { Int32 _FillValue -999; String comment "pumped CTD"; String identifier "sci_water"; String long_name "Glider Payload CTD"; String platform "otn201"; String serial_number "0024"; String short_name "ctd"; String type "instrument"; } instrument_radiometer { Int32 _FillValue -999; String comment "Most Recent Calibration as of 2019 - 11 - 15 (c): 2016 - 03 - 30 ED 412.4 'uW/cm^2/nm' 4 BU 1 OPTIC2 2148447816.2 2.01541692225e-007 1.368 ED 442.5 'uW/cm^2/nm' 4 BU 1 OPTIC2 2147207743.5 1.97812135523e-007 1.410 ED 489.7 'uW/cm^2/nm' 4 BU 1 OPTIC2 2147554148.9 2.02766362279e-007 1.365 ED 555.5 'uW/cm^2/nm' 4 BU 1 OPTIC2 2147241098.9 2.3514305164e-007 1.372"; String identifier "sci_ocr504i"; String long_name "OCR 504 Multispectral Radiometer"; String platform "otn201"; String serial_number "0168"; String short_name "radiometer"; String type "instrument"; } instrument_vmt { Int32 _FillValue -999; String identifier "sci_vmt"; String long_name "VEMCO mobile transceiver"; String platform "otn201"; String serial_number "1168371"; String short_name "vmt"; String type "instrument"; } } NC_GLOBAL { String cdm_data_type "TrajectoryProfile"; String cdm_profile_variables "profile_id, depth"; String cdm_trajectory_variables "trajectory"; String comment "Fly glider equipped with echosounder beside otn200 (equipped with DMON) along Halifax Line and parts of Emerald Basin. Not deployed at same time as 200 due to echosounder power issue. Was deployed a couple days later. Recovered at same time as otn200 on Eastcom."; String contributor_name "Adam Comeau, Richard Davis, Hansen Johnson, Kate Patterson, Xiang Ling"; String Conventions "CF-1.6, COARDS, ACDD-1.3"; String creator_email "ceotr@dal.ca"; String creator_name "Coastal Environmental Observation Technology and Research (CEOTR)"; String creator_type "institution"; String creator_url "http://ceotr.ocean.dal.ca/gliders/"; String date_created "2021-02-10T16:28:59Z"; String date_issued "2021-02-10T16:28:59Z"; String date_modified "2021-02-10T16:28:59Z"; String deployment_number "48"; String deployment_title "DMON deployment for Offshore Halifax Testing"; Float64 Easternmost_Easting -62.114295; String featureType "TrajectoryProfile"; String format_version "IOOS_Glider_NetCDF_v3.0-noqartod.nc"; String geospatial_bounds "POLYGON ((44.540360 -63.367240, 44.540360 -63.367240, 44.540360 -63.367240, 44.540360 -63.367240, 44.540360 -63.367240))"; Float64 geospatial_lat_max 44.566505; Float64 geospatial_lat_min 43.0143730482854; String geospatial_lat_units "degrees_north"; Float64 geospatial_lon_max -62.114295; Float64 geospatial_lon_min -63.409518; String geospatial_lon_units "degrees_east"; Float64 geospatial_vertical_max 199.783; Float64 geospatial_vertical_min 0.0; String geospatial_vertical_positive "down"; String geospatial_vertical_units "m"; String history "2021-02-10T16:28:59Z - Created with the GUTILS package: \"gdp\" 2024-11-21T08:56:37Z (local files) 2024-11-21T08:56:37Z https://data.ceotr.ca/erddap/tabledap/otn201_20150730_48_delayed.html"; String id "otn201-2015-07-30 18:00:00"; String infoUrl "http://ceotr.ocean.dal.ca/gliders/"; String institution "MEOPAR"; String keywords "//www.opengis.net/def/crs/epsg/0/4326, 2015-07-30, 5013w, 853es, air, ampere, angle, average, averaged, b470, b532, b660, b880, ballast, bamp, bathymetry, battery, bb2fls, bb2flsv2, below, bphase, bpot, c_ballast_pumped, c_battpos, c_de_oil_vol, c_fin, c_heading, c_pitch, c_thruster_on, cdom, chemistry, chl, chlorophyll, circulation, colored, commanded, computer, concentration, conductivity, consumption, coulomb, crs, ctd, current, currents, data, delayed, density, deployment, depth, depth-averaged, dissolved, down, dphase, Earth Science > Oceans > Bathymetry/Seafloor Topography > Bathymetry, Earth Science > Oceans > Ocean Chemistry > Oxygen, Earth Science > Oceans > Ocean Circulation > Ocean Currents, Earth Science > Oceans > Ocean Pressure > Water Pressure, Earth Science > Oceans > Ocean Temperature > Water Temperature, Earth Science > Oceans > Salinity/Density > Conductivity, Earth Science > Oceans > Salinity/Density > Density, Earth Science > Oceans > Salinity/Density > Salinity, eastward, eastward_sea_water_velocity, eco, electrical, fin, flight, floor, fractional, fractional_saturation_of_oxygen_in_sea_water, glider, global, gps, heading, heave, hours, identifier, inside, installed, instantaneous, instrument_ctd, instrument_echosounder, instrument_flight_commanded, instrument_flight_measured, instrument_fluorometer, instrument_oxygen_optode, instrument_radiometer, instrument_vmt, lat_uv, latitude, lon_uv, longitude, m_air_pump, m_ballast_pumped, m_battery, m_battery_inst, m_battpos, m_coulomb_amphr_total, m_coulomb_current, m_de_oil_vol, m_depth, m_depth_rate_avg_final, m_fin, m_final_water_vx, m_final_water_vy, m_gps_lat, m_gps_lon, m_heading, m_pitch, m_roll, m_thruster_power, m_veh_temp, m_water_depth, matter, measured, meopar, mobile, mole, mole_concentration_of_dissolved_molecular_oxygen_in_sea_water, molecular, multispectral, name, none, northward, northward_sea_water_velocity, O2, ocean, oceans, ocr, oil, optode, organic, orientation, otn201, oxy3835, oxygen, payload, piston, pitch, platform, platform_heave_rate_down, platform_orientation, platform_pitch_angle, platform_roll_angle, position, positioning, power, practical, pressure, profile, profile_id, profile_lat, profile_lon, profile_time, pump, radiometer, ramp, rate, raw, ref, roll, rphase, salinity, saturation, scaled, sci, sci_bb2fls_b660_ref, sci_bb2fls_b660_scaled, sci_bb2fls_b660_sig, sci_bb2fls_b880_ref, sci_bb2fls_b880_scaled, sci_bb2fls_b880_sig, sci_bb2fls_cdom_ref, sci_bb2fls_cdom_scaled, sci_bb2fls_cdom_sig, sci_bb2fls_is_installed, sci_bb2fls_therm, sci_bb2fls_timestamp, sci_bb2flsV2_b470_ref, sci_bb2flsV2_b470_scaled, sci_bb2flsV2_b470_sig, sci_bb2flsV2_b532_ref, sci_bb2flsV2_b532_scaled, sci_bb2flsV2_b532_sig, sci_bb2flsV2_chl_ref, sci_bb2flsV2_chl_scaled, sci_bb2flsV2_chl_sig, sci_bb2flsV2_is_installed, sci_bb2flsV2_therm, sci_bb2flsV2_timestamp, sci_oxy3835_is_installed, sci_oxy3835_oxygen, sci_oxy3835_saturation, sci_oxy3835_temp, sci_oxy3835_timestamp, sci_oxy3835_wphase_bamp, sci_oxy3835_wphase_bphase, sci_oxy3835_wphase_bpot, sci_oxy3835_wphase_dphase, sci_oxy3835_wphase_is_installed, sci_oxy3835_wphase_oxygen, sci_oxy3835_wphase_ramp, sci_oxy3835_wphase_rawtemp, sci_oxy3835_wphase_rphase, sci_oxy3835_wphase_saturation, sci_oxy3835_wphase_temp, sci_oxy3835_wphase_timestamp, sci_water_depth, sci_water_pressure, sea, sea_floor_depth_below_sea_surface, sea_water_density, sea_water_depth, sea_water_electrical_conductivity, sea_water_practical_salinity, sea_water_pressure, sea_water_temperature, sea_water_x_velocity, sea_water_y_velocity, seafloor, seawater, sig, sonde, surface, system, temperature, therm, thruster, time, time_uv, timestamp, topography, total, trajectory, trajectory/deployment, transceiver, triplet, u, v, velocity, vemco, vertical, voltage, volume, water, wphase"; String keywords_vocabulary "GCMD Science Keywords"; String license "This data may be redistributed and used without restriction."; String Metadata_Conventions "CF-1.6, COARDS, ACDD-1."; String naming_authority "org.oceantrackingnetwork"; Float64 Northernmost_Northing 44.566505; String platform_type "Slocum Glider"; String processing_level "Dataset taken from glider native file format and is provided as is with no expressed or implied assurance of quality assurance or quality control."; String project "WHaLE"; String publisher_email "ceotr@dal.ca"; String publisher_name "Coastal Environmental Observation Technology and Research (CEOTR)"; String publisher_type "institution"; String publisher_url "http://ceotr.ocean.dal.ca/gliders/"; String sea_name "Northwest Atlantic Ocean"; String source "Observational data from a profiling glider"; String sourceUrl "(local files)"; Float64 Southernmost_Northing 43.0143730482854; String standard_name_vocabulary "CF Standard Name Table v60"; String summary "Glider deployment #48 - otn201 2015-07-30 (delayed). Slocum gliders are small, free-swimming, unmanned vehicles that use changes in buoyancy to move vertically and horizontally through the water column in a saw-tooth pattern. They are deployed for days to several months and gather detailed information about the physical, chemical and biological processes of the world's oceans. The Slocum glider was designed and built by Teledyne Webb Research Corporation, Falmouth, MA, USA."; String testing_mission "False"; String time_coverage_duration "P0DT0H2M45.796959877S"; String time_coverage_end "2015-08-24T10:47:01Z"; String time_coverage_start "2015-07-30T17:14:12Z"; String title "Glider deployment #48 - otn201 2015-07-30 (delayed)"; Float64 Westernmost_Easting -63.409518; } }
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.