First ISCCP Regional Experiment (FIRE) Atlantic Stratocumulus Transition Experiment (ASTEX) United Kingdom Meteorological Office (UKMO) C-130 Aircraft Data

Description

The First ISCCP Regional Experiments have been designed to improve data products and cloud/radiation parameterizations used in general circulation models (GCMs). Specifically, the goals of FIRE are (1) to improve basic understanding of the interaction of physical processes in determining life cycles of cirrus and marine stratocumulus systems and the radiative properties of these clouds during their life cycles and (2) to investigate the interrelationships between the ISCCP data, GCM parameterizations, and higher space and time resolution cloud data.To-date, four intensive field-observation periods were planned and executed: a cirrus IFO (October 13-November 2, 1986); a marine stratocumulus IFO off the southwestern coast of California (June 29-July 20, 1987); a second cirrus IFO in southeastern Kansas (November 13-December 7, 1991); and a second marine stratocumulus IFO in the eastern North Atlantic Ocean (June 1-June 28, 1992). Each mission combined coordinated satellite, airborne, and surface observations with modeling studies to investigate the cloud properties and physical processes of the cloud systems. These data were collected by the United Kingdom Meteorological Office (UKMO) from the Meteorological Research Flight C-130 Aircraft. This data set is a 1 to 64 Hertz time series data set.

Resources

Name Format Description Link
5 https://asdc.larc.nasa.gov%2Fproject%2FFIRE
5 https://search.earthdata.nasa.gov%2Fsearch%2Fgranules%3Fp%3DC1000001050-LARC_ASDC
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2Fread_software%2Ffhdf_netcdf.c
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2Freadme%2Freadme_fire_ax_ukmo_c130
5 https://doi.org%2F10.5067%2FASDC_DAAC%2FFIRE%2F0066
5 https://asdc.larc.nasa.gov%2Fciting-data
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2Fguide%2Ffire_project.pdf
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2FFIRE_II-ASTEX.tar
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2FFIRE_I-Cirrus.tar
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2FFIRE_I-Extended-Time-Observation.tar
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2FFIRE_II-Cirrus.tar
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2FFIRE_III.tar
5 https://asdc.larc.nasa.gov%2Fdata%2FFIRE%2FFIRE_AX_UKMO_C130%2F
5 https://opendap.larc.nasa.gov%2Fopendap%2FFIRE%2FFIRE_AX_UKMO_C130%2Fcontents.html
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2Fread_software%2Ffire.netcdf.rd.make.txt
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2Fguide%2Fbase_fire_ax_ukmo_c130_dataset.pdf
5 https://asdc.larc.nasa.gov%2Fdocuments%2Ffire%2Freadme%2Freadme_fire_ax_ukmo_c130_info1
5 https://search.earthdata.nasa.gov/search/granules?p=C1000001050-LARC_ASDC
5 https://asdc.larc.nasa.gov/documents/fire/read_software/fhdf_netcdf.c
5 fire.netcdf.rd.make.txt https://asdc.larc.nasa.gov/documents/fire/read_software/fire.netcdf.rd.make.txt
33 base_fire_ax_ukmo_c130_dataset.pdf https://asdc.larc.nasa.gov/documents/fire/guide/base_fire_ax_ukmo_c130_dataset.pdf
5 https://asdc.larc.nasa.gov/documents/fire/readme/readme_fire_ax_ukmo_c130
5 https://asdc.larc.nasa.gov/documents/fire/readme/readme_fire_ax_ukmo_c130_info1
21 https://doi.org/10.5067/ASDC_DAAC/FIRE/0066
5 https://asdc.larc.nasa.gov/citing-data
33 fire_project.pdf https://asdc.larc.nasa.gov/documents/fire/guide/fire_project.pdf
45 FIRE_II-ASTEX.tar https://asdc.larc.nasa.gov/documents/fire/FIRE_II-ASTEX.tar
45 FIRE_I-Cirrus.tar https://asdc.larc.nasa.gov/documents/fire/FIRE_I-Cirrus.tar
45 FIRE_I-Extended-Time-Observation.tar https://asdc.larc.nasa.gov/documents/fire/FIRE_I-Extended-Time-Observation.tar
45 FIRE_II-Cirrus.tar https://asdc.larc.nasa.gov/documents/fire/FIRE_II-Cirrus.tar
45 FIRE_III.tar https://asdc.larc.nasa.gov/documents/fire/FIRE_III.tar
5 https://asdc.larc.nasa.gov/data/FIRE/FIRE_AX_UKMO_C130/
21 contents.html https://opendap.larc.nasa.gov/opendap/FIRE/FIRE_AX_UKMO_C130/contents.html
5 https://asdc.larc.nasa.gov/project/FIRE
5 https://search.earthdata.nasa.gov/search/granules?p=C1000001050-LARC_ASDC
5 https://asdc.larc.nasa.gov/documents/fire/read_software/fhdf_netcdf.c
47 fire.netcdf.rd.make.txt https://asdc.larc.nasa.gov/documents/fire/read_software/fire.netcdf.rd.make.txt
5 https://asdc.larc.nasa.gov/documents/fire/readme/readme_fire_ax_ukmo_c130
33 base_fire_ax_ukmo_c130_dataset.pdf https://asdc.larc.nasa.gov/documents/fire/guide/base_fire_ax_ukmo_c130_dataset.pdf
21 https://doi.org/10.5067/ASDC_DAAC/FIRE/0066
5 https://asdc.larc.nasa.gov/data/FIRE/FIRE_AX_UKMO_C130/
21 contents.html https://opendap.larc.nasa.gov/opendap/FIRE/FIRE_AX_UKMO_C130/contents.html
0 The metadata's original source. https://cmr.earthdata.nasa.gov/search/concepts/C1000001050-LARC_ASDC.iso19115
5 https://asdc.larc.nasa.gov/documents/fire/readme/readme_fire_ax_ukmo_c130_info1

Tags

  • earth-science-clouds-atmosphere-cloud-microphysics-cloud-droplet-concentration-size
  • earth-science-atmospheric-chemistry-atmosphere-oxygen-compounds-atmospheric-ozone
  • earth-science-clouds-atmosphere-cloud-microphysics-cloud-liquid-water-ice
  • earth-science-infrared-wavelengths-spectral-engineering-infrared-flux
  • earth-science-atmospheric-winds-atmosphere-surface-winds
  • earth-science-infrared-wavelengths-spectral-engineering-brightness-temperature
  • earth-science-atmospheric-water-vapor-atmosphere-water-vapor-indicators-dew-point-temperature
  • earth-science-atmospheric-chemistry-atmosphere-sulfur-compounds-sulfur-dioxide
  • earth-science-atmospheric-temperature-atmosphere-surface-temperature-deiced-temperature
  • earth-science-microwave-spectral-engineering-brightness-temperature
  • earth-science-clouds-atmosphere-cloud-properties-cloud-top-temperature
  • earth-science-atmospheric-winds-atmosphere-upper-level-winds
  • earth-science-atmospheric-winds-atmosphere-wind-dynamics-vertical-wind-velocity-speed
  • earth-science-atmospheric-pressure-atmosphere-static-pressure
  • earth-science-altitude-atmosphere-barometric-altitude

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