netcdf IMOS/Argo/dac/csio/2902884/2902884_Rtraj.nc { dimensions: STRING2 = 2; STRING4 = 4; STRING8 = 8; STRING16 = 16; STRING32 = 32; STRING64 = 64; STRING256 = 256; DATE_TIME = 14; N_CALIB_PARAM = 2; N_CALIB_JULD = 1; N_HISTORY = 51; N_PARAM = 11; N_CYCLE = 128; N_MEASUREMENT = UNLIMITED; // (3916 currently) variables: 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(STRING8=8); :long_name = "Float unique identifier"; :conventions = "WMO float identifier : A9IIIII"; :_FillValue = " "; char DATA_CENTRE(STRING2=2); :long_name = "Data centre in charge of float data processing"; :conventions = "Argo reference table 4"; :_FillValue = " "; char WMO_INST_TYPE(STRING4=4); :long_name = "Coded instrument type"; :conventions = "Argo reference table 8"; :_FillValue = " "; char PROJECT_NAME(STRING64=64); :long_name = "Name of the project"; :_FillValue = " "; char PI_NAME(STRING64=64); :long_name = "Name of the principal investigator"; :_FillValue = " "; char DATA_TYPE(STRING16=16); :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 POSITIONING_SYSTEM(STRING8=8); :long_name = "Positioning system"; :_FillValue = " "; char TRAJECTORY_PARAMETERS(N_PARAM=11, STRING64=64); :long_name = "List of available parameters"; :conventions = "Argo reference table 3"; :_FillValue = " "; char DATA_STATE_INDICATOR(STRING4=4); :long_name = "Degree of processing the data have passed through"; :conventions = "Argo reference table 6"; :_FillValue = " "; char PLATFORM_TYPE(STRING32=32); :long_name = "Type of float"; :conventions = "Argo reference table 23"; :_FillValue = " "; char FLOAT_SERIAL_NO(STRING32=32); :long_name = "Serial number of the float"; :_FillValue = " "; char FIRMWARE_VERSION(STRING64=64); :long_name = "Instrument firmware version"; :_FillValue = " "; double JULD(N_MEASUREMENT=3916); :long_name = "Julian day (UTC) of each measurement relative to REFERENCE_DATE_TIME"; :standard_name = "time"; :conventions = "Relative julian days with decimal part (as parts of day)"; :units = "days since 1950-01-01 00:00:00 UTC"; :resolution = 1.1574E-5; // double :_FillValue = 999999.0; // double :axis = "T"; char JULD_STATUS(N_MEASUREMENT=3916); :long_name = "Status of the date and time"; :conventions = "Argo reference table 19"; :_FillValue = " "; char JULD_QC(N_MEASUREMENT=3916); :long_name = "Quality on date and time"; :conventions = "Argo reference table 2"; :_FillValue = " "; double JULD_ADJUSTED(N_MEASUREMENT=3916); :long_name = "Adjusted julian day (UTC) of each measurement relative to REFERENCE_DATE_TIME"; :standard_name = "time"; :conventions = "Relative julian days with decimal part (as parts of day)"; :units = "days since 1950-01-01 00:00:00 UTC"; :resolution = 1.1574E-5; // double :_FillValue = 999999.0; // double :axis = "T"; char JULD_ADJUSTED_STATUS(N_MEASUREMENT=3916); :long_name = "Status of the JULD_ADJUSTED date"; :conventions = "Argo reference table 19"; :_FillValue = " "; char JULD_ADJUSTED_QC(N_MEASUREMENT=3916); :long_name = "Quality on adjusted date and time"; :conventions = "Argo reference table 2"; :_FillValue = " "; double LATITUDE(N_MEASUREMENT=3916); :long_name = "Latitude of each location"; :standard_name = "latitude"; :_FillValue = 99999.0; // double :units = "degree_north"; :valid_min = -90.0; // double :valid_max = 90.0; // double :axis = "Y"; double LONGITUDE(N_MEASUREMENT=3916); :long_name = "Longitude of each location"; :standard_name = "longitude"; :_FillValue = 99999.0; // double :units = "degree_east"; :valid_min = -180.0; // double :valid_max = 180.0; // double :axis = "X"; char POSITION_ACCURACY(N_MEASUREMENT=3916); :long_name = "Estimated accuracy in latitude and longitude"; :conventions = "Argo reference table 5"; :_FillValue = " "; char POSITION_QC(N_MEASUREMENT=3916); :long_name = "Quality on position"; :conventions = "Argo reference table 2"; :_FillValue = " "; int CYCLE_NUMBER(N_MEASUREMENT=3916); :long_name = "Float cycle number of the measurement"; :conventions = "0...N, 0 : launch cycle, 1 : first complete cycle"; :_FillValue = 99999; // int int CYCLE_NUMBER_ADJUSTED(N_MEASUREMENT=3916); :long_name = "Adjusted float cycle number of the measurement"; :conventions = "0...N, 0 : launch cycle, 1 : first complete cycle"; :_FillValue = 99999; // int int MEASUREMENT_CODE(N_MEASUREMENT=3916); :long_name = "Flag referring to a measurement event in the cycle"; :conventions = "Argo reference table 15"; :_FillValue = 99999; // int float PRES(N_MEASUREMENT=3916); :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 = "%8.2f"; :FORTRAN_format = "F8.2"; :resolution = 0.01f; // float :comment_on_resolution = "comment_on_resolutio"; :axis = "Z"; char PRES_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PRES_ADJUSTED(N_MEASUREMENT=3916); :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 = "%8.2f"; :FORTRAN_format = "F8.2"; :resolution = 0.01f; // float :comment_on_resolution = "comment_on_resolutio"; char PRES_ADJUSTED_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PRES_ADJUSTED_ERROR(N_MEASUREMENT=3916); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "decibar"; :C_format = "%8.2f"; :FORTRAN_format = "F8.2"; :resolution = 0.01f; // float float TEMP(N_MEASUREMENT=3916); :long_name = "Sea temperature in-situ ITS-90 scale"; :standard_name = "sea_water_temperature"; :_FillValue = 99999.0f; // float :units = "degree_Celsius"; :valid_min = -2.5f; // float :valid_max = 40.0f; // float :C_format = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float char TEMP_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_ADJUSTED(N_MEASUREMENT=3916); :long_name = "Sea temperature in-situ ITS-90 scale"; :standard_name = "sea_water_temperature"; :_FillValue = 99999.0f; // float :units = "degree_Celsius"; :valid_min = -2.5f; // float :valid_max = 40.0f; // float :C_format = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float char TEMP_ADJUSTED_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_ADJUSTED_ERROR(N_MEASUREMENT=3916); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "degree_Celsius"; :C_format = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float float PSAL(N_MEASUREMENT=3916); :long_name = "Practical salinity"; :standard_name = "sea_water_salinity"; :_FillValue = 99999.0f; // float :units = "psu"; :valid_min = 2.0f; // float :valid_max = 41.0f; // float :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float char PSAL_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PSAL_ADJUSTED(N_MEASUREMENT=3916); :long_name = "Practical salinity"; :standard_name = "sea_water_salinity"; :_FillValue = 99999.0f; // float :units = "psu"; :valid_min = 2.0f; // float :valid_max = 41.0f; // float :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float char PSAL_ADJUSTED_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PSAL_ADJUSTED_ERROR(N_MEASUREMENT=3916); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "psu"; :C_format = "%.4f"; :FORTRAN_format = "F.4"; :resolution = 1.0E-4f; // float float PHASE_DELAY_DOXY(N_MEASUREMENT=3916); :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_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_VOLTAGE_DOXY(N_MEASUREMENT=3916); :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_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float TEMP_DOXY(N_MEASUREMENT=3916); :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 = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float char TEMP_DOXY_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float DOXY(N_MEASUREMENT=3916); :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 = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float char DOXY_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float DOXY_ADJUSTED(N_MEASUREMENT=3916); :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 = "%.3f"; :FORTRAN_format = "F.3"; :resolution = 0.001f; // float char DOXY_ADJUSTED_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float DOXY_ADJUSTED_ERROR(N_MEASUREMENT=3916); :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 PPOX_DOXY(N_MEASUREMENT=3916); :long_name = "Partial pressure of oxygen"; :_FillValue = 99999.0f; // float :units = "millibar"; :valid_min = -5.0f; // float :valid_max = 5000.0f; // float :C_format = "%8.2f"; :FORTRAN_format = "F8.2"; :resolution = 0.01f; // float char PPOX_DOXY_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PPOX_DOXY_ADJUSTED(N_MEASUREMENT=3916); :long_name = "Partial pressure of oxygen"; :_FillValue = 99999.0f; // float :units = "millibar"; :valid_min = -5.0f; // float :valid_max = 5000.0f; // float :C_format = "%8.2f"; :FORTRAN_format = "F8.2"; :resolution = 0.01f; // float char PPOX_DOXY_ADJUSTED_QC(N_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PPOX_DOXY_ADJUSTED_ERROR(N_MEASUREMENT=3916); :long_name = "Contains the error on the adjusted values as determined by the delayed mode QC process"; :_FillValue = 99999.0f; // float :units = "millibar"; :C_format = "%8.2f"; :FORTRAN_format = "F8.2"; :resolution = 0.01f; // float float VRS_PH(N_MEASUREMENT=3916); :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_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_FREE(N_MEASUREMENT=3916); :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_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_TOTAL(N_MEASUREMENT=3916); :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_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_TOTAL_ADJUSTED(N_MEASUREMENT=3916); :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_MEASUREMENT=3916); :long_name = "quality flag"; :conventions = "Argo reference table 2"; :_FillValue = " "; float PH_IN_SITU_TOTAL_ADJUSTED_ERROR(N_MEASUREMENT=3916); :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 float AXES_ERROR_ELLIPSE_MAJOR(N_MEASUREMENT=3916); :long_name = "Semi-major axis of error ellipse from positioning system"; :units = "meters"; :_FillValue = 99999.0f; // float float AXES_ERROR_ELLIPSE_MINOR(N_MEASUREMENT=3916); :long_name = "Semi-minor axis of error ellipse from positioning system"; :units = "meters"; :_FillValue = 99999.0f; // float float AXES_ERROR_ELLIPSE_ANGLE(N_MEASUREMENT=3916); :long_name = "Angle of error ellipse from positioning system"; :units = "Degrees (from North when heading East)"; :_FillValue = 99999.0f; // float char SATELLITE_NAME(N_MEASUREMENT=3916); :long_name = "Satellite name from positioning system"; :_FillValue = " "; char TRAJECTORY_PARAMETER_DATA_MODE(N_MEASUREMENT=3916, N_PARAM=11); :long_name = "Delayed mode or real time data"; :conventions = "R : real time; D : delayed mode; A : real time with adjustment"; :_FillValue = " "; char JULD_DATA_MODE(N_MEASUREMENT=3916); :long_name = "Delayed mode or real time data"; :conventions = "R : real time; D : delayed mode; A : real time with adjustment"; :_FillValue = " "; double JULD_DESCENT_START(N_CYCLE=128); :long_name = "Descent start date of the cycle"; :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 char JULD_DESCENT_START_STATUS(N_CYCLE=128); :long_name = "Status of descent start date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_FIRST_STABILIZATION(N_CYCLE=128); :long_name = "Time when a float first becomes water-neutral"; :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 char JULD_FIRST_STABILIZATION_STATUS(N_CYCLE=128); :long_name = "Status of time when a float first becomes water-neutral"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_DESCENT_END(N_CYCLE=128); :long_name = "Descent end date of the cycle"; :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 char JULD_DESCENT_END_STATUS(N_CYCLE=128); :long_name = "Status of descent end date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_PARK_START(N_CYCLE=128); :long_name = "Drift start date of the cycle"; :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 char JULD_PARK_START_STATUS(N_CYCLE=128); :long_name = "Status of drift start date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_PARK_END(N_CYCLE=128); :long_name = "Drift end date of the cycle"; :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 char JULD_PARK_END_STATUS(N_CYCLE=128); :long_name = "Status of drift end date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_DEEP_DESCENT_END(N_CYCLE=128); :long_name = "Deep descent end date of the cycle"; :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 char JULD_DEEP_DESCENT_END_STATUS(N_CYCLE=128); :long_name = "Status of deep descent end date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_DEEP_PARK_START(N_CYCLE=128); :long_name = "Deep park start date of the cycle"; :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 char JULD_DEEP_PARK_START_STATUS(N_CYCLE=128); :long_name = "Status of deep park start date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_ASCENT_START(N_CYCLE=128); :long_name = "Start date of the ascent to the surface"; :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 char JULD_ASCENT_START_STATUS(N_CYCLE=128); :long_name = "Status of start date of the ascent to the surface"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_DEEP_ASCENT_START(N_CYCLE=128); :long_name = "Deep ascent start date of the cycle"; :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 char JULD_DEEP_ASCENT_START_STATUS(N_CYCLE=128); :long_name = "Status of deep ascent start date of the cycle"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_ASCENT_END(N_CYCLE=128); :long_name = "End date of ascent to the surface"; :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 char JULD_ASCENT_END_STATUS(N_CYCLE=128); :long_name = "Status of end date of ascent to the surface"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_TRANSMISSION_START(N_CYCLE=128); :long_name = "Start date of transmission"; :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 char JULD_TRANSMISSION_START_STATUS(N_CYCLE=128); :long_name = "Status of start date of transmission"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_FIRST_MESSAGE(N_CYCLE=128); :long_name = "Date of earliest float message received"; :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 char JULD_FIRST_MESSAGE_STATUS(N_CYCLE=128); :long_name = "Status of date of earliest float message received"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_FIRST_LOCATION(N_CYCLE=128); :long_name = "Date of earliest location"; :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 char JULD_FIRST_LOCATION_STATUS(N_CYCLE=128); :long_name = "Status of date of earliest location"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_LAST_LOCATION(N_CYCLE=128); :long_name = "Date of latest location"; :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 char JULD_LAST_LOCATION_STATUS(N_CYCLE=128); :long_name = "Status of date of latest location"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_LAST_MESSAGE(N_CYCLE=128); :long_name = "Date of latest float message received"; :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 char JULD_LAST_MESSAGE_STATUS(N_CYCLE=128); :long_name = "Status of date of latest float message received"; :conventions = "Argo reference table 19"; :_FillValue = " "; double JULD_TRANSMISSION_END(N_CYCLE=128); :long_name = "Transmission end date"; :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 char JULD_TRANSMISSION_END_STATUS(N_CYCLE=128); :long_name = "Status of transmission end date"; :conventions = "Argo reference table 19"; :_FillValue = " "; double CLOCK_OFFSET(N_CYCLE=128); :long_name = "Time of float clock drift"; :units = "days"; :conventions = "Days with decimal part (as parts of day)"; :_FillValue = 999999.0; // double char GROUNDED(N_CYCLE=128); :long_name = "Did the profiler touch the ground for that cycle?"; :conventions = "Argo reference table 20"; :_FillValue = " "; float REPRESENTATIVE_PARK_PRESSURE(N_CYCLE=128); :long_name = "Best pressure value during park phase"; :units = "decibar"; :_FillValue = 99999.0f; // float char REPRESENTATIVE_PARK_PRESSURE_STATUS(N_CYCLE=128); :long_name = "Status of best pressure value during park phase"; :conventions = "Argo reference table 21"; :_FillValue = " "; int CONFIG_MISSION_NUMBER(N_CYCLE=128); :long_name = "Unique number denoting the missions performed by the float"; :conventions = "1...N, 1 : first complete mission"; :_FillValue = 99999; // int int CYCLE_NUMBER_INDEX(N_CYCLE=128); :long_name = "Cycle number that corresponds to the current index"; :conventions = "0...N, 0 : launch cycle, 1 : first complete cycle"; :_FillValue = 99999; // int int CYCLE_NUMBER_INDEX_ADJUSTED(N_CYCLE=128); :long_name = "Adjusted cycle number that corresponds to the current index"; :conventions = "0...N, 0 : launch cycle, 1 : first complete cycle"; :_FillValue = 99999; // int char DATA_MODE(N_CYCLE=128); :long_name = "Delayed mode or real time data"; :conventions = "R : real time; D : delayed mode; A : real time with adjustment"; :_FillValue = " "; char SCIENTIFIC_CALIB_PARAMETER(N_CALIB_PARAM=2, N_PARAM=11, STRING64=64); :long_name = "List of parameters with calibration information"; :conventions = "Argo reference table 3"; :_FillValue = " "; char SCIENTIFIC_CALIB_EQUATION(N_CALIB_PARAM=2, N_PARAM=11, STRING256=256); :long_name = "Calibration equation for this parameter"; :_FillValue = " "; char SCIENTIFIC_CALIB_COEFFICIENT(N_CALIB_PARAM=2, N_PARAM=11, STRING256=256); :long_name = "Calibration coefficients for this equation"; :_FillValue = " "; char SCIENTIFIC_CALIB_COMMENT(N_CALIB_PARAM=2, N_PARAM=11, STRING256=256); :long_name = "Comment applying to this parameter calibration"; :_FillValue = " "; char SCIENTIFIC_CALIB_DATE(N_CALIB_PARAM=2, N_PARAM=11, DATE_TIME=14); :long_name = "Date of calibration"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char JULD_CALIB_EQUATION(N_CALIB_JULD=1, STRING256=256); :long_name = "Calibration equation for JULD"; :conventions = "R : real time; D : delayed mode; A : real time with adjustment"; :_FillValue = " "; char JULD_CALIB_COEFFICIENT(N_CALIB_JULD=1, STRING256=256); :long_name = "Calibration coefficients for JULD equation"; :_FillValue = " "; char JULD_CALIB_COMMENT(N_CALIB_JULD=1, STRING256=256); :long_name = "Comment applying to JULD calibration"; :_FillValue = " "; char JULD_CALIB_DATE(N_CALIB_JULD=1, DATE_TIME=14); :long_name = "Date of JULD calibration"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char HISTORY_INSTITUTION(N_HISTORY=51, STRING4=4); :long_name = "Institution which performed action"; :conventions = "Argo reference table 4"; :_FillValue = " "; char HISTORY_STEP(N_HISTORY=51, STRING4=4); :long_name = "Step in data processing"; :conventions = "Argo reference table 12"; :_FillValue = " "; char HISTORY_SOFTWARE(N_HISTORY=51, STRING4=4); :long_name = "Name of software which performed action"; :conventions = "Institution dependent"; :_FillValue = " "; char HISTORY_SOFTWARE_RELEASE(N_HISTORY=51, STRING4=4); :long_name = "Version/release of software which performed action"; :conventions = "Institution dependent"; :_FillValue = " "; char HISTORY_REFERENCE(N_HISTORY=51, STRING64=64); :long_name = "Reference of database"; :conventions = "Institution dependent"; :_FillValue = " "; char HISTORY_DATE(N_HISTORY=51, DATE_TIME=14); :long_name = "Date the history record was created"; :conventions = "YYYYMMDDHHMISS"; :_FillValue = " "; char HISTORY_ACTION(N_HISTORY=51, STRING4=4); :long_name = "Action performed on data"; :conventions = "Argo reference table 7"; :_FillValue = " "; char HISTORY_PARAMETER(N_HISTORY=51, STRING64=64); :long_name = "Parameter action is performed on"; :conventions = "Argo reference table 3"; :_FillValue = " "; float HISTORY_PREVIOUS_VALUE(N_HISTORY=51); :long_name = "Parameter/Flag previous value before action"; :_FillValue = 99999.0f; // float char HISTORY_INDEX_DIMENSION(N_HISTORY=51); :long_name = "Name of dimension to which HISTORY_START_INDEX and HISTORY_STOP_INDEX correspond"; :conventions = "C: N_CYCLE, M: N_MEASUREMENT"; :_FillValue = " "; int HISTORY_START_INDEX(N_HISTORY=51); :long_name = "Start index action applied on"; :_FillValue = 99999; // int int HISTORY_STOP_INDEX(N_HISTORY=51); :long_name = "Stop index action applied on"; :_FillValue = 99999; // int char HISTORY_QCTEST(N_HISTORY=51, 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 trajectory file"; :institution = "CSIO"; :source = "Argo float"; :history = "2025-09-04T20:15:26Z creation"; :references = "http://www.argodatamgt.org/Documentation"; :comment = "free text"; :user_manual_version = "3.4"; :Conventions = "Argo-3.1 CF-1.6"; :featureType = "trajectory"; :id = "https://doi.org/10.17882/42182"; :comment_on_resolution = "PRES variable resolutions depend on measurement codes"; :comment_on_measurement_code = "Meaning of some specific measurement codes for this float: 89: cycle start time, 189: buoyancy action during descent to park pressure, 190: descending profile dated levels, 203: descending profile deepest level, 289: buoyancy action during drift at park pressure, 297: min pressure sampled during drift at park pressure, 298: max pressure sampled during drift at park pressure, 301: representative park measurement, 389: buoyancy action during descent to profile pressure, 398: max pressure sampled during descent to profile pressure, 489: buoyancy action during drift at profile pressure, 497: min pressure sampled during drift at profile pressure, 498: max pressure sampled during drift at profile pressure, 503: ascending profile deepest level, 589: buoyancy action during ascending profile, 590: ascending profile dated levels, 599: last pumped CTD raw measurement sampled during ascending profile (when JULD, PRES, TEMP and PSAL are provided) or Ice abort cycle time and pressure (when JULD and PRES are provided), 689: start of surface final pump action to acquire max buoyancy, 711: in-air samples, part of surface sequence, relative to TST, 799: in air single measurement, relative to TET, 901: grounded information"; }