netcdf IMOS/Argo/dac/csio/2902884/profiles/BR2902884_032.nc { dimensions: DATE_TIME = 14; STRING2 = 2; STRING4 = 4; STRING8 = 8; STRING16 = 16; STRING32 = 32; STRING64 = 64; STRING256 = 256; N_VALUES41 = 41; N_PROF = 2; N_PARAM = 21; N_LEVELS = 140; N_CALIB = 1; N_HISTORY = UNLIMITED; // (4 currently) variables: char DATA_TYPE(STRING32=32); :long_name = "Data type"; :conventions = "Argo reference table 1"; :_FillValue = " "; char FORMAT_VERSION(STRING4=4); :long_name = "File format version"; :_FillValue = " "; char HANDBOOK_VERSION(STRING4=4); :long_name = "Data handbook version"; :_FillValue = " "; char REFERENCE_DATE_TIME(DATE_TIME=14); :long_name = "Date of reference for Julian days"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char DATE_CREATION(DATE_TIME=14); :long_name = "Date of file creation"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char DATE_UPDATE(DATE_TIME=14); :long_name = "Date of update of this file"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char PLATFORM_NUMBER(N_PROF=2, STRING8=8); :long_name = "Float unique identifier"; :conventions = "WMO float identifier : A9IIIII"; :_FillValue = " "; char PLATFORM_TYPE(N_PROF=2, STRING32=32); :long_name = "Type of float"; :conventions = "Argo reference table 23"; :_FillValue = " "; char PROJECT_NAME(N_PROF=2, STRING64=64); :long_name = "Name of the project"; :_FillValue = " "; char PI_NAME(N_PROF=2, STRING64=64); :long_name = "Name of the principal investigator"; :_FillValue = " "; char STATION_PARAMETERS(N_PROF=2, N_PARAM=21, STRING64=64); :long_name = "List of available parameters for the station"; :conventions = "Argo reference table 3"; :_FillValue = " "; int CYCLE_NUMBER(N_PROF=2); :long_name = "Float cycle number"; :conventions = "0...N, 0 : launch cycle (if exists), 1 : first complete cycle"; :_FillValue = 99999; // int char DIRECTION(N_PROF=2); :long_name = "Direction of the station profiles"; :conventions = "A: ascending profiles, D: descending profiles"; :_FillValue = " "; char DATA_CENTRE(N_PROF=2, STRING2=2); :long_name = "Data centre in charge of float data processing"; :conventions = "Argo reference table 4"; :_FillValue = " "; char DC_REFERENCE(N_PROF=2, STRING32=32); :long_name = "Station unique identifier in data centre"; :conventions = "Data centre convention"; :_FillValue = " "; char DATA_STATE_INDICATOR(N_PROF=2, STRING4=4); :long_name = "Degree of processing the data have passed through"; :conventions = "Argo reference table 6"; :_FillValue = " "; char PARAMETER_DATA_MODE(N_PROF=2, N_PARAM=21); :long_name = "Delayed mode or real time data"; :conventions = "R : real time; D : delayed mode; A : real time with adjustment"; :_FillValue = " "; char DATA_MODE(N_PROF=2); :long_name = "Delayed mode or real time data"; :conventions = "R : real time; D : delayed mode; A : real time with adjustment"; :_FillValue = " "; char FLOAT_SERIAL_NO(N_PROF=2, STRING32=32); :long_name = "Serial number of the float"; :_FillValue = " "; char FIRMWARE_VERSION(N_PROF=2, STRING32=32); :long_name = "Instrument firmware version"; :_FillValue = " "; char WMO_INST_TYPE(N_PROF=2, STRING4=4); :long_name = "Coded instrument type"; :conventions = "Argo reference table 8"; :_FillValue = " "; double JULD(N_PROF=2); :long_name = "Julian day (UTC) of the station relative to REFERENCE_DATE_TIME"; :standard_name = "time"; :units = "days since 1950-01-01 00:00:00 UTC"; :conventions = "Relative julian days with decimal part (as parts of day)"; :resolution = 1.1574E-5; // double :_FillValue = 999999.0; // double :axis = "T"; char JULD_QC(N_PROF=2); :long_name = "Quality on date and time"; :conventions = "Argo reference table 2"; :_FillValue = " "; double JULD_LOCATION(N_PROF=2); :long_name = "Julian day (UTC) of the location relative to REFERENCE_DATE_TIME"; :units = "days since 1950-01-01 00:00:00 UTC"; :conventions = "Relative julian days with decimal part (as parts of day)"; :resolution = 1.1574E-5; // double :_FillValue = 999999.0; // double double LATITUDE(N_PROF=2); :long_name = "Latitude of the station, best estimate"; :standard_name = "latitude"; :units = "degree_north"; :_FillValue = 99999.0; // double :valid_min = -90.0; // double :valid_max = 90.0; // double :axis = "Y"; double LONGITUDE(N_PROF=2); :long_name = "Longitude of the station, best estimate"; :standard_name = "longitude"; :units = "degree_east"; :_FillValue = 99999.0; // double :valid_min = -180.0; // double :valid_max = 180.0; // double :axis = "X"; char POSITION_QC(N_PROF=2); :long_name = "Quality on position (latitude and longitude)"; :conventions = "Argo reference table 2"; :_FillValue = " "; char POSITIONING_SYSTEM(N_PROF=2, STRING8=8); :long_name = "Positioning system"; :_FillValue = " "; char PROFILE_PHASE_DELAY_DOXY_QC(N_PROF=2); :long_name = "Global quality flag of PHASE_DELAY_DOXY profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_TEMP_VOLTAGE_DOXY_QC(N_PROF=2); :long_name = "Global quality flag of TEMP_VOLTAGE_DOXY profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_TEMP_DOXY_QC(N_PROF=2); :long_name = "Global quality flag of TEMP_DOXY profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_DOXY_QC(N_PROF=2); :long_name = "Global quality flag of DOXY profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_FLUORESCENCE_CHLA_QC(N_PROF=2); :long_name = "Global quality flag of FLUORESCENCE_CHLA profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_BETA_BACKSCATTERING532_QC(N_PROF=2); :long_name = "Global quality flag of BETA_BACKSCATTERING532 profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_BETA_BACKSCATTERING700_QC(N_PROF=2); :long_name = "Global quality flag of BETA_BACKSCATTERING700 profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_CHLA_QC(N_PROF=2); :long_name = "Global quality flag of CHLA profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_BBP532_QC(N_PROF=2); :long_name = "Global quality flag of BBP532 profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_BBP700_QC(N_PROF=2); :long_name = "Global quality flag of BBP700 profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_TEMP_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of TEMP_NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_TEMP_SPECTROPHOTOMETER_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of TEMP_SPECTROPHOTOMETER_NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_HUMIDITY_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of HUMIDITY_NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_UV_INTENSITY_DARK_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of UV_INTENSITY_DARK_NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_FIT_ERROR_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of FIT_ERROR_NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_UV_INTENSITY_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of UV_INTENSITY_NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_NITRATE_QC(N_PROF=2); :long_name = "Global quality flag of NITRATE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_VRS_PH_QC(N_PROF=2); :long_name = "Global quality flag of VRS_PH profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_PH_IN_SITU_FREE_QC(N_PROF=2); :long_name = "Global quality flag of PH_IN_SITU_FREE profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char PROFILE_PH_IN_SITU_TOTAL_QC(N_PROF=2); :long_name = "Global quality flag of PH_IN_SITU_TOTAL profile"; :conventions = "Argo reference table 2a"; :_FillValue = " "; char VERTICAL_SAMPLING_SCHEME(N_PROF=2, STRING256=256); :long_name = "Vertical sampling scheme"; :conventions = "Argo reference table 16"; :_FillValue = " "; int CONFIG_MISSION_NUMBER(N_PROF=2); :long_name = "Unique number denoting the missions performed by the float"; :conventions = "1...N, 1 : first complete mission"; :_FillValue = 99999; // int float PRES(N_PROF=2, N_LEVELS=140); :long_name = "Sea water pressure, equals 0 at sea-level"; :standard_name = "sea_water_pressure"; :_FillValue = 99999.0f; // float :units = "decibar"; :valid_min = 0.0f; // float :valid_max = 12000.0f; // float :C_format = "%7.1f"; :FORTRAN_format = "F7.1"; :resolution = 0.1f; // float :axis = "Z"; float PHASE_DELAY_DOXY(N_PROF=2, N_LEVELS=140); :long_name = "Phase delay reported by oxygen sensor"; :_FillValue = 99999.0f; // float :units = "microsecond"; :valid_min = 0.0f; // float :valid_max = 99999.0f; // float :C_format = "%9.3f"; :FORTRAN_format = "F9.3"; :resolution = 0.001f; // float char PHASE_DELAY_DOXY_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_VOLTAGE_DOXY(N_PROF=2, N_LEVELS=140); :long_name = "Thermistor voltage reported by oxygen sensor"; :units = "volt"; :resolution = 1.0E-6f; // float :C_format = "%.6f"; :FORTRAN_format = "F.6f"; :_FillValue = 99999.0f; // float char TEMP_VOLTAGE_DOXY_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_DOXY(N_PROF=2, N_LEVELS=140); :long_name = "Sea temperature from oxygen sensor ITS-90 scale"; :standard_name = "temperature_of_sensor_for_oxygen_in_sea_water"; :_FillValue = 99999.0f; // float :units = "degree_Celsius"; :valid_min = -2.0f; // float :valid_max = 40.0f; // float :C_format = "%9.3f"; :FORTRAN_format = "F9.3"; :resolution = 0.001f; // float char TEMP_DOXY_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float DOXY(N_PROF=2, N_LEVELS=140); :long_name = "Dissolved oxygen"; :standard_name = "moles_of_oxygen_per_unit_mass_in_sea_water"; :_FillValue = 99999.0f; // float :units = "micromole/kg"; :valid_min = -5.0f; // float :valid_max = 600.0f; // float :C_format = "%9.3f"; :FORTRAN_format = "F9.3"; :resolution = 0.001f; // float char DOXY_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float DOXY_ADJUSTED(N_PROF=2, N_LEVELS=140); :long_name = "Dissolved oxygen"; :standard_name = "moles_of_oxygen_per_unit_mass_in_sea_water"; :_FillValue = 99999.0f; // float :units = "micromole/kg"; :valid_min = -5.0f; // float :valid_max = 600.0f; // float :C_format = "%9.3f"; :FORTRAN_format = "F9.3"; :resolution = 0.001f; // float char DOXY_ADJUSTED_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float DOXY_ADJUSTED_ERROR(N_PROF=2, N_LEVELS=140); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "micromole/kg"; :C_format = "%9.3f"; :FORTRAN_format = "F9.3"; :resolution = 0.001f; // float float FLUORESCENCE_CHLA(N_PROF=2, N_LEVELS=140); :long_name = "Chlorophyll-A signal from fluorescence sensor"; :units = "count"; :resolution = 0.0f; // float :C_format = "%.0f"; :FORTRAN_format = "F.0f"; :_FillValue = 99999.0f; // float char FLUORESCENCE_CHLA_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float BETA_BACKSCATTERING532(N_PROF=2, N_LEVELS=140); :long_name = "Total angle specific volume from backscattering sensor at 532 nanometers"; :units = "count"; :resolution = 0.0f; // float :C_format = "%.0f"; :FORTRAN_format = "F.0f"; :_FillValue = 99999.0f; // float char BETA_BACKSCATTERING532_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float BETA_BACKSCATTERING700(N_PROF=2, N_LEVELS=140); :long_name = "Total angle specific volume from backscattering sensor at 700 nanometers"; :units = "count"; :resolution = 0.0f; // float :C_format = "%.0f"; :FORTRAN_format = "F.0f"; :_FillValue = 99999.0f; // float char BETA_BACKSCATTERING700_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float CHLA(N_PROF=2, N_LEVELS=140); :long_name = "Chlorophyll-A"; :standard_name = "mass_concentration_of_chlorophyll_a_in_sea_water"; :units = "mg/m3"; :resolution = 1.0E-4f; // float :C_format = "%.4f"; :FORTRAN_format = "F.4f"; :_FillValue = 99999.0f; // float char CHLA_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float CHLA_ADJUSTED(N_PROF=2, N_LEVELS=140); :long_name = "Chlorophyll-A"; :standard_name = "mass_concentration_of_chlorophyll_a_in_sea_water"; :units = "mg/m3"; :resolution = 1.0E-4f; // float :C_format = "%.4f"; :FORTRAN_format = "F.4f"; :_FillValue = 99999.0f; // float char CHLA_ADJUSTED_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float CHLA_ADJUSTED_ERROR(N_PROF=2, N_LEVELS=140); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :units = "mg/m3"; :resolution = 1.0E-4f; // float :C_format = "%.4f"; :FORTRAN_format = "F.4f"; :_FillValue = 99999.0f; // float float BBP532(N_PROF=2, N_LEVELS=140); :long_name = "Particle backscattering at 532 nanometers"; :units = "m-1"; :resolution = 1.0E-5f; // float :C_format = "%.5f"; :FORTRAN_format = "F.5f"; :_FillValue = 99999.0f; // float char BBP532_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float BBP532_ADJUSTED(N_PROF=2, N_LEVELS=140); :long_name = "Particle backscattering at 532 nanometers"; :units = "m-1"; :resolution = 1.0E-5f; // float :C_format = "%.5f"; :FORTRAN_format = "F.5f"; :_FillValue = 99999.0f; // float char BBP532_ADJUSTED_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float BBP532_ADJUSTED_ERROR(N_PROF=2, N_LEVELS=140); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :units = "m-1"; :resolution = 1.0E-5f; // float :C_format = "%.5f"; :FORTRAN_format = "F.5f"; :_FillValue = 99999.0f; // float float BBP700(N_PROF=2, N_LEVELS=140); :long_name = "Particle backscattering at 700 nanometers"; :units = "m-1"; :resolution = 1.0E-5f; // float :C_format = "%.5f"; :FORTRAN_format = "F.5f"; :_FillValue = 99999.0f; // float char BBP700_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float BBP700_ADJUSTED(N_PROF=2, N_LEVELS=140); :long_name = "Particle backscattering at 700 nanometers"; :units = "m-1"; :resolution = 1.0E-5f; // float :C_format = "%.5f"; :FORTRAN_format = "F.5f"; :_FillValue = 99999.0f; // float char BBP700_ADJUSTED_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float BBP700_ADJUSTED_ERROR(N_PROF=2, N_LEVELS=140); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :units = "m-1"; :resolution = 1.0E-5f; // float :C_format = "%.5f"; :FORTRAN_format = "F.5f"; :_FillValue = 99999.0f; // float float TEMP_NITRATE(N_PROF=2, N_LEVELS=140); :long_name = "Internal temperature of the SUNA sensor"; :_FillValue = 99999.0f; // float :units = "degree_Celsius"; :C_format = "%.1f"; :FORTRAN_format = "F.1"; :resolution = 0.1f; // float char TEMP_NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_SPECTROPHOTOMETER_NITRATE(N_PROF=2, N_LEVELS=140); :long_name = "Temperature of the spectrometer"; :_FillValue = 99999.0f; // float :units = "degree_Celsius"; :C_format = "%.1f"; :FORTRAN_format = "F.1"; :resolution = 0.1f; // float char TEMP_SPECTROPHOTOMETER_NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float HUMIDITY_NITRATE(N_PROF=2, N_LEVELS=140); :long_name = "Relative humidity inside the SUNA sensor (If > 50% There is a leak)"; :_FillValue = 99999.0f; // float :units = "percent"; :valid_min = 0.0f; // float :valid_max = 100.0f; // float :C_format = "%.1f"; :FORTRAN_format = "F.1"; :resolution = 0.1f; // float char HUMIDITY_NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float UV_INTENSITY_DARK_NITRATE(N_PROF=2, N_LEVELS=140); :long_name = "Intensity of ultra violet flux dark measurement from nitrate sensor"; :_FillValue = 99999.0f; // float :units = "count"; :C_format = "%.0f"; :FORTRAN_format = "F.0f"; :resolution = 0.0f; // float char UV_INTENSITY_DARK_NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float FIT_ERROR_NITRATE(N_PROF=2, N_LEVELS=140); :long_name = "Nitrate fit error"; :_FillValue = 99999.0f; // float :units = "dimensionless"; :C_format = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float char FIT_ERROR_NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float UV_INTENSITY_NITRATE(N_PROF=2, N_LEVELS=140, N_VALUES41=41); :long_name = "Intensity of ultra violet flux from nitrate sensor"; :_FillValue = 99999.0f; // float :units = "count"; :C_format = "%.0f"; :FORTRAN_format = "F.0f"; :resolution = 0.0f; // float char UV_INTENSITY_NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float NITRATE(N_PROF=2, N_LEVELS=140); :long_name = "Nitrate"; :standard_name = "moles_of_nitrate_per_unit_mass_in_sea_water"; :_FillValue = 99999.0f; // float :units = "micromole/kg"; :C_format = "%.2f"; :FORTRAN_format = "F.2"; :resolution = 0.01f; // float char NITRATE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float NITRATE_ADJUSTED(N_PROF=2, N_LEVELS=140); :long_name = "Nitrate"; :standard_name = "moles_of_nitrate_per_unit_mass_in_sea_water"; :_FillValue = 99999.0f; // float :units = "micromole/kg"; :C_format = "%.2f"; :FORTRAN_format = "F.2"; :resolution = 0.01f; // float char NITRATE_ADJUSTED_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float NITRATE_ADJUSTED_ERROR(N_PROF=2, N_LEVELS=140); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "micromole/kg"; :C_format = "%.2f"; :FORTRAN_format = "F.2"; :resolution = 0.01f; // float float VRS_PH(N_PROF=2, N_LEVELS=140); :long_name = "Voltage difference between reference and source from pH sensor"; :_FillValue = 99999.0f; // float :units = "volt"; :C_format = "%.6f"; :FORTRAN_format = "F.6"; :resolution = 1.0E-6f; // float char VRS_PH_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_FREE(N_PROF=2, N_LEVELS=140); :long_name = "pH"; :_FillValue = 99999.0f; // float :units = "dimensionless"; :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float char PH_IN_SITU_FREE_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_TOTAL(N_PROF=2, N_LEVELS=140); :long_name = "pH"; :standard_name = "sea_water_ph_reported_on_total_scale"; :_FillValue = 99999.0f; // float :units = "dimensionless"; :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float char PH_IN_SITU_TOTAL_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_TOTAL_ADJUSTED(N_PROF=2, N_LEVELS=140); :long_name = "pH"; :standard_name = "sea_water_ph_reported_on_total_scale"; :_FillValue = 99999.0f; // float :units = "dimensionless"; :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float char PH_IN_SITU_TOTAL_ADJUSTED_QC(N_PROF=2, N_LEVELS=140); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_TOTAL_ADJUSTED_ERROR(N_PROF=2, N_LEVELS=140); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "dimensionless"; :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float char PARAMETER(N_PROF=2, N_CALIB=1, N_PARAM=21, STRING64=64); :long_name = "List of parameters with calibration information"; :conventions = "Argo reference table 3"; :_FillValue = " "; char SCIENTIFIC_CALIB_EQUATION(N_PROF=2, N_CALIB=1, N_PARAM=21, STRING256=256); :long_name = "Calibration equation for this parameter"; :_FillValue = " "; char SCIENTIFIC_CALIB_COEFFICIENT(N_PROF=2, N_CALIB=1, N_PARAM=21, STRING256=256); :long_name = "Calibration coefficients for this equation"; :_FillValue = " "; char SCIENTIFIC_CALIB_COMMENT(N_PROF=2, N_CALIB=1, N_PARAM=21, STRING256=256); :long_name = "Comment applying to this parameter calibration"; :_FillValue = " "; char SCIENTIFIC_CALIB_DATE(N_PROF=2, N_CALIB=1, N_PARAM=21, DATE_TIME=14); :long_name = "Date of calibration"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char HISTORY_INSTITUTION(N_HISTORY=4, N_PROF=2, STRING4=4); :long_name = "Institution which performed action"; :conventions = "Argo reference table 4"; :_FillValue = " "; char HISTORY_STEP(N_HISTORY=4, N_PROF=2, STRING4=4); :long_name = "Step in data processing"; :conventions = "Argo reference table 12"; :_FillValue = " "; char HISTORY_SOFTWARE(N_HISTORY=4, N_PROF=2, STRING4=4); :long_name = "Name of software which performed action"; :conventions = "Institution dependent"; :_FillValue = " "; char HISTORY_SOFTWARE_RELEASE(N_HISTORY=4, N_PROF=2, STRING4=4); :long_name = "Version/release of software which performed action"; :conventions = "Institution dependent"; :_FillValue = " "; char HISTORY_REFERENCE(N_HISTORY=4, N_PROF=2, STRING64=64); :long_name = "Reference of database"; :conventions = "Institution dependent"; :_FillValue = " "; char HISTORY_DATE(N_HISTORY=4, N_PROF=2, DATE_TIME=14); :long_name = "Date the history record was created"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char HISTORY_ACTION(N_HISTORY=4, N_PROF=2, STRING4=4); :long_name = "Action performed on data"; :conventions = "Argo reference table 7"; :_FillValue = " "; char HISTORY_PARAMETER(N_HISTORY=4, N_PROF=2, STRING64=64); :long_name = "Station parameter action is performed on"; :conventions = "Argo reference table 3"; :_FillValue = " "; float HISTORY_START_PRES(N_HISTORY=4, N_PROF=2); :long_name = "Start pressure action applied on"; :_FillValue = 99999.0f; // float :units = "decibar"; float HISTORY_STOP_PRES(N_HISTORY=4, N_PROF=2); :long_name = "Stop pressure action applied on"; :_FillValue = 99999.0f; // float :units = "decibar"; float HISTORY_PREVIOUS_VALUE(N_HISTORY=4, N_PROF=2); :long_name = "Parameter/Flag previous value before action"; :_FillValue = 99999.0f; // float char HISTORY_QCTEST(N_HISTORY=4, N_PROF=2, STRING16=16); :long_name = "Documentation of tests performed, tests failed (in hex form)"; :conventions = "Write tests performed when ACTION=QCP$; tests failed when ACTION=QCF$"; :_FillValue = " "; // global attributes: :title = "Argo float vertical profile"; :institution = "CSIO"; :source = "Argo float"; :history = "2024-03-11T04:26:44Z creation; 2026-04-23T01:35:40Z last update"; :references = "http://www.argodatamgt.org/Documentation"; :comment = "free text"; :user_manual_version = "3.1"; :Conventions = "Argo-3.1 CF-1.6"; :featureType = "trajectoryProfile"; }