CPEX-AW HALO Aerosol and Water Vapor Profiles and Images

Description

CPEXAW-HALO_DC8_1 is the High Altitude Lidar Observatory (HALO) image and h5 data files collected during the Convective Processes Experiment - Aerosols & Winds (CPEX-AW) onboard the DC-8 aircraft. Data collection for this product is complete. The Convective Processes Experiment – Aerosols & Winds (CPEX-AW) campaign was a joint effort between the US National Aeronautics and Space Administration (NASA) and the European Space Agency (ESA) with the primary goal of conducting a post-launch calibration and validation activities of the Atmospheric Dynamics Mission-Aeolus (ADM-AEOLUS) Earth observation wind Lidar satellite in St. Croix. CPEX-AW is a follow-on to the Convective Processes Experiment (CPEX) field campaign which took place in the summer of 2017. In addition to joint calibration/validation of ADM-AEOLUS, CPEX-AW studied the dynamics related to the Saharan Air Layer, African Easterly Waves and Jets, Tropical Easterly Jet, and deep convection in the InterTropical Convergence Zone (ITCZ). CPEX-AW science goals include: • Better understanding interactions of convective cloud systems and tropospheric winds as part of the joint NASA-ESA Aeolus Cal/Val effort over the tropical Atlantic; • Observing the vertical structure and variability of the marine boundary layer in relation to initiation and lifecycle of the convective cloud systems, convective processes (e.g., cold pools), and environmental conditions within and across the ITCZ; • Investigating how the African easterly waves and dry air and dust associated with Sahara Air Layer control the convectively suppressed and active periods of the ITCZ; • Investigating interactions of wind, aerosol, clouds, and precipitation and effects on long range dust transport and air quality over the western Atlantic. In order to successfully achieve the objectives of the campaign, NASA deployed its DC-8 aircraft equipped with an Airborne Third Generation Precipitation Radar (APR-3), Doppler Aerosol WiNd Lidar (DAWN), High Altitude Lidar Observatory (HALO), High Altitude Monolithic Microwave Integrated Circuit (MMIC) Sounding Radiometer (HAMSR), and dropsondes. This campaign aims to provide useful material to atmospheric scientists, meteorologists, lidar experts, air quality experts, professors, and students. The Atmospheric Science Data Center (ASDC) archives the dropsonde, HALO, and DAWN data products for CPEX-AW. For additional datasets please visit the Global Hydrometeorology Resource Center (GHRC).

Resources

Name Format Description Link
21 CPEX-AW Project Overview https://espo.nasa.gov/cpex-aw/content/CPEX-AW
21 Earth Observatory Overview of the HALO Airborne Sensor https://eoportal.org/web/eoportal/airborne-sensors/halo
21 Search results for publications that cite this dataset by its DOI. https://scholar.google.com/scholar?q=10.5067%2FASDC%2FSUBORBITAL%2FCPEXAW-HALO_DC8_1
33 HALO Instrument Overview Presentation http://www.estotechnology.us/techportfolio/pdf/additionalInfo/1914_Nehrir/Nehrir_ESTF2018_A1P2.pdf
21 Airborne Lidar Observations of Water Vapor, Methane, and Aerosol/Cloud Profiles with the High Altitude Lidar Observatory https://agu-do03.confex.com/agu/fm19/meetingapp.cgi/Paper/497501
21 Earthdata Search client for CPEXAW-HALO_DC8_1 https://search.earthdata.nasa.gov/search/granules?p=C2258503612-LARC_ASDC
21 GHRC CPEX-AW Home Page https://ghrc.nsstc.nasa.gov/home/field-campaigns/cpex-aw
21 ASDC Direct Data Download for CPEXAW-HALO_DC8_1 https://asdc.larc.nasa.gov/data/CPEX-AW/HALO_DC8_1/
21 OPeNDAP data access for CPEXAW-HALO_DC8_1 https://opendap.larc.nasa.gov/opendap/CPEX-AW/HALO_DC8_1/contents.html
21 Differential absorption lidar measurements of water vapor by the High Altitude Lidar Observatory (HALO): retrieval framework and first results https://amt.copernicus.org/articles/15/605/2022/amt-15-605-2022-discussion.html
21 CPEX-AW Data on the Sub-Orbital Order Tool (SOOT) Power User Interface (UI) https://asdc.larc.nasa.gov/soot/power-user/CPEXAW/2021
21 Airborne Lidar Observations of Water Vapor Profiles and Planetary Boundary Layer Heights - Prospects for Future SmallSat Missions https://ams.confex.com/ams/2020Annual/webprogram/Paper365622.html
21 Airborne Lidar Observations of Water Vapor Profiles and Planetary Boundary Layer Heights with the NASA High Altitude Lidar Observatory (HALO) https://agu-do03.confex.com/agu/fm19/meetingapp.cgi/Paper/555344
21 DOI for CPEXAW-HALO_DC8_1 https://doi.org/10.5067/ASDC/SUBORBITAL/CPEXAW-HALO_DC8_1
21 GHRC CPEX-AW Data https://ghrc.nsstc.nasa.gov/uso/ds_details/collections/cpexawC.html

Tags

  • altitude
  • atmospheric-water-vapor
  • aerosols
  • atmosphere
  • earth-science

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