ACEPOL ER-2 Meteorological and Navigational Data Version 1

Description

ACEPOL_MetNav_AircraftInSitu_Data are in situ meteorological and navigational measurements collected onboard the ER-2 during ACEPOL. In order to improve our understanding of the effect of aerosols on climate and air quality, measurements of aerosol chemical composition, size distribution, height profile, and optical properties are of crucial importance. In terms of remotely sensed instrumentation, the most extensive set of aerosol properties can be obtained by combining passive multi-angle, multi-spectral measurements of intensity and polarization with active measurements performed by a High Spectral Resolution Lidar. During Fall 2017, the Aerosol Characterization from Polarimeter and Lidar (ACEPOL) campaign, jointly sponsored by NASA and the Netherlands Institute for Space Research (SRON), performed aerosol and cloud measurements over the United States from the NASA high altitude ER-2 aircraft. Six instruments were deployed on the aircraft. Four of these instruments were multi-angle polarimeters: the Airborne Hyper Angular Rainbow Polarimeter (AirHARP), the Airborne Multiangle SpectroPolarimetric Imager (AirMSPI), the Airborne Spectrometer for Planetary Exploration (SPEX Airborne) and the Research Scanning Polarimeter (RSP). The other two instruments were lidars: the High Spectral Resolution Lidar 2 (HSRL-2) and the Cloud Physics Lidar (CPL). The ACEPOL operation was based at NASA’s Armstrong Flight Research Center in Palmdale California, which enabled observations of a wide variety of scene types, including urban, desert, forest, coastal ocean and agricultural areas, with clear, cloudy, polluted and pristine atmospheric conditions. The primary goal of ACEPOL was to assess the capabilities of the different polarimeters for retrieval of aerosol and cloud microphysical and optical parameters, as well as their capabilities to derive aerosol layer height (near-UV polarimetry, O2 A-band). ACEPOL also focused on the development and evaluation of aerosol retrieval algorithms that combine data from both active (lidar) and passive (polarimeter) instruments. ACEPOL data are appropriate for algorithm development and testing, instrument intercomparison, and investigations of active and passive instrument data fusion, which make them valuable resources for remote sensing communities as they prepare for the next generation of spaceborne MAP and lidar missions.

Resources

Name Format Description Link
21 Search results for publications that cite this dataset by its DOI. https://scholar.google.com/scholar?q=10.5067%2FSUBORBITAL%2FACEPOL2017%2FMetNav_AircraftInSitu_Data_1
21 NASA Airborne Science Program Overview of ACEPWG ACEPOL/LIREX field campaign https://airbornescience.nasa.gov/acepwg/content/ACE_Polarimeter_Working_Group_ACEPWG_ACEPOL_field_campaign
21 How to cite ASDC data https://asdc.larc.nasa.gov/citing-data
21 DOI data set landing page for ACEPOL_MetNav_AircraftInSitu_Data_1 https://doi.org/10.5067/SUBORBITAL/ACEPOL2017/MetNav_AircraftInSitu_Data_1
21 NASA LaRC Airborne Science Data for Atmospheric Composition ACEPOL Home Page https://www-air.larc.nasa.gov/missions/acepol/index.html
21 Netherlands Organization for Scientific Research (NWO) ACEPOL Home Page https://www.nwo.nl/en/projects/alw-go16-09/
21 Global Modeling and Assimilation Office (GMAO) ACEPOL Support Website https://gmao.gsfc.nasa.gov/field_campaigns/ACEPOL/
21 ACEPOL Data on the Sub-Orbital Order Tool (SOOT) Power User Interface (UI) https://asdc.larc.nasa.gov/soot/power-user/ACEPOL/2017
21 ASDC Direct Data Download for ACEPOL_MetNav_AircraftInSitu_Data_1 https://asdc.larc.nasa.gov/data/ACEPOL/MetNav_AircraftInSitu_Data_1/
21 Earthdata Search for ACEPOL_MetNav_AircraftInSitu_Data_1 (NASA Application to search, discover, visualize, refine, and access NASA Earth Observation data) https://search.earthdata.nasa.gov/search/granules?p=C1758588825-LARC_ASDC

Tags

  • altitude
  • atmospheric-water-vapor
  • atmosphere
  • atmospheric-temperature
  • atmospheric-winds
  • earth-science

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