科技报告详细信息
Impact of Assimilating AIRS Cloud-Cleared Radiances on Atmospheric Dynamics and Boundary Layer Height at High Latitudes
McGrath-Spangler, E L ; Ganeshan, M ; Reale, O ; McCarty, W ; Gelaro, R
关键词: ASSIMILATION;    ATMOSPHERIC INFRARED SOUNDER;    CLOUD COVER;    RADIANCE;    ATMOSPHERIC PHYSICS;    PLANETARY BOUNDARY LAYER;    ARCTIC REGIONS;    ATMOSPHERIC TEMPERATURE;    GEOPOTENTIAL HEIGHT;    INFRARED RADIATION;    DATA PROCESSING;    FORECASTING;    EARTH OBSERVING SYSTEM (EOS);   
RP-ID  :  GSFC-E-DAA-TN64778
学科分类:大气科学
美国|英语
来源: NASA Technical Reports Server
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【 摘 要 】
High latitude weather forecasts, on scales ranging from mesoscale to synoptic, present difficulties due, in part, to the sparsity of conventional observations. In addition, the prevalence of extended low-level stratus cloud cover limits the use of infrared data, which are operationally assimilated only in areas unaffected by clouds. Use of cloud-cleared AIRS (Atmospheric Infrared Sounder) radiances (AIRS CCR), allows the assimilation of infrared information in cloudy regions, permitting data ingestion in regions usually undersampled. This study explores the sensitivity of planetary boundary layer height and related atmospheric dynamics to the assimilation of these data in the Goddard Earth Observing System (GEOS, version 5) data assimilation and forecast system during the boreal fall 2014 season using observing system experiments (OSEs). Examined here are comparisons between the current, operational approach of assimilating AIRS clear-sky radiances against the assimilation of CCR. Assimilation of hyperspectral infrared information from AIRS over the Arctic region slightly modifies the lower midtropospheric temperature structure, which in turn contributes to adjustments in geopotential height, affecting the baroclinic instability properties over the entire hemisphere and explaining the overall improvement in global forecast skill.
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