netcdf asimfr10mM1.a0.20171101.000000 { dimensions: time = UNLIMITED ; // (2880 currently) variables: int base_time ; base_time:string = "2017-11-01 00:00:00 0:00" ; base_time:long_name = "Base time in Epoch" ; base_time:units = "seconds since 1970-1-1 0:00:00 0:00" ; base_time:ancillary_variables = "time_offset" ; double time_offset(time) ; time_offset:long_name = "Time offset from base_time" ; time_offset:units = "seconds since 2017-11-01 00:00:00 0:00" ; time_offset:ancillary_variables = "base_time" ; double time(time) ; time:long_name = "Time offset from midnight" ; time:units = "seconds since 2017-11-01 00:00:00 0:00" ; float up_hemisp_broadband_raw(time) ; up_hemisp_broadband_raw:long_name = "10 meter upwelling broadband hemispheric irradiance" ; up_hemisp_broadband_raw:units = "count" ; up_hemisp_broadband_raw:missing_value = -9999.f ; up_hemisp_broadband_raw:explanation_of_broadband_channel = "Unfiltered silicon, nominally from 320 to 1200nm" ; float up_hemisp_narrowband_filter1_raw(time) ; up_hemisp_narrowband_filter1_raw:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 1" ; up_hemisp_narrowband_filter1_raw:units = "count" ; up_hemisp_narrowband_filter1_raw:missing_value = -9999.f ; up_hemisp_narrowband_filter1_raw:explanation_of_narrowband_channel = "The nominal wavelength is 415nm, half power width 10nm" ; float up_hemisp_narrowband_filter2_raw(time) ; up_hemisp_narrowband_filter2_raw:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 2" ; up_hemisp_narrowband_filter2_raw:units = "count" ; up_hemisp_narrowband_filter2_raw:missing_value = -9999.f ; up_hemisp_narrowband_filter2_raw:explanation_of_narrowband_channel = "The nominal wavelength is 500nm, half power width 10nm" ; float up_hemisp_narrowband_filter3_raw(time) ; up_hemisp_narrowband_filter3_raw:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 3" ; up_hemisp_narrowband_filter3_raw:units = "count" ; up_hemisp_narrowband_filter3_raw:missing_value = -9999.f ; up_hemisp_narrowband_filter3_raw:explanation_of_narrowband_channel = "The nominal wavelength is 615nm, half power width 10nm" ; float up_hemisp_narrowband_filter4_raw(time) ; up_hemisp_narrowband_filter4_raw:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 4" ; up_hemisp_narrowband_filter4_raw:units = "count" ; up_hemisp_narrowband_filter4_raw:missing_value = -9999.f ; up_hemisp_narrowband_filter4_raw:explanation_of_narrowband_channel = "The nominal wavelength is 673nm, half power width 10nm" ; float up_hemisp_narrowband_filter5_raw(time) ; up_hemisp_narrowband_filter5_raw:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 5" ; up_hemisp_narrowband_filter5_raw:units = "count" ; up_hemisp_narrowband_filter5_raw:missing_value = -9999.f ; up_hemisp_narrowband_filter5_raw:explanation_of_narrowband_channel = "The nominal wavelength is 870nm, half power width 10nm" ; float up_hemisp_narrowband_filter6_raw(time) ; up_hemisp_narrowband_filter6_raw:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 6" ; up_hemisp_narrowband_filter6_raw:units = "count" ; up_hemisp_narrowband_filter6_raw:missing_value = -9999.f ; up_hemisp_narrowband_filter6_raw:explanation_of_narrowband_channel = "The nominal wavelength is 940nm, half power width 10nm" ; float up_hemisp_broadband(time) ; up_hemisp_broadband:long_name = "10 meter upwelling broadband hemispheric irradiance, offset corrected" ; up_hemisp_broadband:units = "count" ; up_hemisp_broadband:missing_value = -9999.f ; up_hemisp_broadband:explanation_of_broadband_channel = "Unfiltered silicon, nominally from 320 to 1200nm" ; float up_hemisp_narrowband_filter1(time) ; up_hemisp_narrowband_filter1:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 1, offset corrected" ; up_hemisp_narrowband_filter1:units = "count" ; up_hemisp_narrowband_filter1:missing_value = -9999.f ; up_hemisp_narrowband_filter1:explanation_of_narrowband_channel = "The nominal wavelength is 415nm, half power width 10nm" ; float up_hemisp_narrowband_filter2(time) ; up_hemisp_narrowband_filter2:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 2, offset corrected" ; up_hemisp_narrowband_filter2:units = "count" ; up_hemisp_narrowband_filter2:missing_value = -9999.f ; up_hemisp_narrowband_filter2:explanation_of_narrowband_channel = "The nominal wavelength is 500nm, half power width 10nm" ; float up_hemisp_narrowband_filter3(time) ; up_hemisp_narrowband_filter3:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 3, offset corrected" ; up_hemisp_narrowband_filter3:units = "count" ; up_hemisp_narrowband_filter3:missing_value = -9999.f ; up_hemisp_narrowband_filter3:explanation_of_narrowband_channel = "The nominal wavelength is 615nm, half power width 10nm" ; float up_hemisp_narrowband_filter4(time) ; up_hemisp_narrowband_filter4:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 4, offset corrected" ; up_hemisp_narrowband_filter4:units = "count" ; up_hemisp_narrowband_filter4:missing_value = -9999.f ; up_hemisp_narrowband_filter4:explanation_of_narrowband_channel = "The nominal wavelength is 673nm, half power width 10nm" ; float up_hemisp_narrowband_filter5(time) ; up_hemisp_narrowband_filter5:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 5, offset corrected" ; up_hemisp_narrowband_filter5:units = "count" ; up_hemisp_narrowband_filter5:missing_value = -9999.f ; up_hemisp_narrowband_filter5:explanation_of_narrowband_channel = "The nominal wavelength is 870nm, half power width 10nm" ; float up_hemisp_narrowband_filter6(time) ; up_hemisp_narrowband_filter6:long_name = "10 meter upwelling narrowband hemispheric irradiance, filter 6, offset corrected" ; up_hemisp_narrowband_filter6:units = "count" ; up_hemisp_narrowband_filter6:missing_value = -9999.f ; up_hemisp_narrowband_filter6:explanation_of_narrowband_channel = "The nominal wavelength is 940nm, half power width 10nm" ; float head_temp(time) ; head_temp:long_name = "Detector temperature" ; head_temp:units = "degC" ; head_temp:missing_value = -9999.f ; float head_temp2(time) ; head_temp2:long_name = "Second detector temperature" ; head_temp2:units = "degC" ; head_temp2:missing_value = -9999.f ; float logger_temperature(time) ; logger_temperature:long_name = "Logger temperature" ; logger_temperature:units = "degC" ; logger_temperature:missing_value = -9999.f ; float logger_volt(time) ; logger_volt:long_name = "Data logger supply voltage" ; logger_volt:units = "V" ; logger_volt:missing_value = -9999.f ; float offset_broadband(time) ; offset_broadband:long_name = "Offset subtracted from hemispheric broadband data" ; offset_broadband:units = "count" ; offset_broadband:missing_value = -9999.f ; offset_broadband:comment = "Offset value is a rounded average" ; offset_broadband:offset_source = "alltime data used for offset determination" ; float offset_filter1(time) ; offset_filter1:long_name = "Offset subtracted from hemispheric filter1 data" ; offset_filter1:units = "count" ; offset_filter1:missing_value = -9999.f ; offset_filter1:comment = "Offset value is a rounded average" ; offset_filter1:offset_source = "alltime data used for offset determination" ; float offset_filter2(time) ; offset_filter2:long_name = "Offset subtracted from hemispheric filter2 data" ; offset_filter2:units = "count" ; offset_filter2:missing_value = -9999.f ; offset_filter2:comment = "Offset value is a rounded average" ; offset_filter2:offset_source = "alltime data used for offset determination" ; float offset_filter3(time) ; offset_filter3:long_name = "Offset subtracted from hemispheric filter3 data" ; offset_filter3:units = "count" ; offset_filter3:missing_value = -9999.f ; offset_filter3:comment = "Offset value is a rounded average" ; offset_filter3:offset_source = "alltime data used for offset determination" ; float offset_filter4(time) ; offset_filter4:long_name = "Offset subtracted from hemispheric filter4 data" ; offset_filter4:units = "count" ; offset_filter4:missing_value = -9999.f ; offset_filter4:comment = "Offset value is a rounded average" ; offset_filter4:offset_source = "alltime data used for offset determination" ; float offset_filter5(time) ; offset_filter5:long_name = "Offset subtracted from hemispheric filter5 data" ; offset_filter5:units = "count" ; offset_filter5:missing_value = -9999.f ; offset_filter5:comment = "Offset value is a rounded average" ; offset_filter5:offset_source = "alltime data used for offset determination" ; float offset_filter6(time) ; offset_filter6:long_name = "Offset subtracted from hemispheric filter6 data" ; offset_filter6:units = "count" ; offset_filter6:missing_value = -9999.f ; offset_filter6:comment = "Offset value is a rounded average" ; offset_filter6:offset_source = "alltime data used for offset determination" ; float lat ; lat:long_name = "North latitude" ; lat:units = "degree_N" ; lat:valid_min = -90.f ; lat:valid_max = 90.f ; lat:standard_name = "latitude" ; float lon ; lon:long_name = "East longitude" ; lon:units = "degree_E" ; lon:valid_min = -180.f ; lon:valid_max = 180.f ; lon:standard_name = "longitude" ; float alt ; alt:long_name = "Altitude above mean sea level" ; alt:units = "m" ; alt:standard_name = "altitude" ; // global attributes: :command_line = "mfrcdl_ingest -n mfr10m -s asi -f M1" ; :process_version = "ingest-mfrcdl-11.11-0.el6" ; :dod_version = "mfr10m-a0-2.4" ; :input_source = "/data/collection/asi/asimfr10mM1.00/20171101_000000.dat" ; :site_id = "asi" ; :facility_id = "M1" ; :platform_id = "mfr10m" ; :location_description = "Layered Atlantic Smoke Interactions with Clouds (LASIC), Ascension Island" ; :data_level = "a0" ; :sampling_interval = "20 seconds" ; :averaging_interval = "None" ; :sensor_height = "10 m AGL" ; :mfr_internal_latitude = "-7.967400" ; :mfr_internal_longitude = "-14.349400" ; :logger_software_version = "1.400000" ; :serial_number = "Refer to logger_id and head_id" ; :head_id = "359915936" ; :logger_id = "73930" ; :datastream = "asimfr10mM1.a0" ; :history = "created by user dsmgr on machine ruby at 2017-11-01 01:31:01, using ingest-mfrcdl-11.11-0.el6" ; }