科技报告详细信息
Planetary Boundary Layer Height from AIRS and MERRA-2 Products at NASA GES DISC, and Insights from Data Intercomparison
Ding, Feng ; Iredell, Lena F ; Shen, Suhung ; Ostrenga, Dana M ; Theobald, Michael L ; Vollmer, Bruce E ; Wei, Jennifer C ; Meyer, David J
关键词: DATA SYSTEMS;    EARTH OBSERVING SYSTEM (EOS);    INFRARED INSTRUMENTS;    INFORMATION SYSTEMS;    OCEAN SURFACE;    PLANETARY BOUNDARY LAYER;    THERMODYNAMICS;    SOUNDING;    ASSIMILATION;   
RP-ID  :  GSFC-E-DAA-TN65014
学科分类:大气科学
美国|英语
来源: NASA Technical Reports Server
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【 摘 要 】

The Atmospheric Infrared Sounder (AIRS) is the hyperspectral infrared sounder onboard NASA's Aqua satellite, launched in 2002. The NASA Goddard Earth Sciences Data and Information Services Center (GES DISC), in collaboration with NASA Sounder Team at JPL, provides processing, archiving, and distribution services for NASA sounders: the Aqua AIRS mission and the subsequent Suomi-National Polar-orbiting Partnership Cross-track Infrared Sounder (CrIS) mission. The Planetary Boundary Layer (PBL) Height is a new variable added in the AIRS Version 6 support product. It is derived based on gradients of the retrieved atmospheric thermodynamic profile, and gives the pressure at the top of PBL over the ocean. The GES DISC also provides services for the second Modern-Era Retrospective analysis for Research and Applications (MERRA-2) product generated by the Goddard Earth Observing System Model, Version 5 (GEOS-5) data assimilation system. The monthly PBL Height variable has been available in the Giovanni system, which is a Web-based application developed by the GES DISC providing a simple and intuitive way to visualize, analyze, and access vast amounts of Earth science remote sensing data. In this work, we will present the monthly PBL Height data from AIRS and MERRA-2 and the services to support data intercomparison, such as access, plotting, subsetting, re-gridding, and generation of a multi-year monthly mean. We will also show intercomparison results, and evaluate whether (over the ocean) AIRS can observe PBL features similar to the reanalysis product at monthly and longer-term scales.

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