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    Assimilation of AIRS Radiances Affected by Mid- to Low-Level Clouds

    Source: Monthly Weather Review:;2009:;volume( 137 ):;issue: 012::page 4276
    Author:
    Pangaud, Thomas
    ,
    Fourrie, Nadia
    ,
    Guidard, Vincent
    ,
    Dahoui, Mohamed
    ,
    Rabier, Florence
    DOI: 10.1175/2009MWR3020.1
    Publisher: American Meteorological Society
    Abstract: An approach to make use of Atmospheric Infrared Sounder (AIRS) cloud-affected infrared radiances has been developed at Météo-France in the context of the global numerical weather prediction model. The method is based on (i) the detection and the characterization of clouds by the CO2-slicing algorithm and (ii) the identification of clear?cloudy channels using the ECMWF cloud-detection scheme. Once a hypothetical cloud-affected pixel is detected by the CO2-slicing scheme, the cloud-top pressure and the effective cloud fraction are provided to the radiative transfer model simultaneously with other atmospheric variables to simulate cloud-affected radiances. Furthermore, the ECMWF scheme flags each channel of the pixel as clear or cloudy. In the current configuration of the assimilation scheme, channels affected by clouds whose cloud-top pressure ranges between 600 and 950 hPa are assimilated over sea in addition to clear channels. Results of assimilation experiments are presented. On average, 3.5% of additional pixels are assimilated over the globe but additional assimilated channels are much more numerous for mid- to high latitudes (10% of additional assimilated channels on average). Encouraging results are found in the quality of the analyses: background departures of AIRS observations are reduced, especially for surface channels, which are globally 4 times smaller, and the analysis better fits some conventional and satellite data. Global forecasts are slightly improved for the geopotential field. These improvements are significant up to the 72-h forecast range. Predictability improvements have been obtained for a case study: a low pressure system that affected the southeastern part of Italy in September 2006. The trajectory, intensity, and the whole development of the cyclogenesis are better predicted, whatever the forecast range, for this case study.
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      Assimilation of AIRS Radiances Affected by Mid- to Low-Level Clouds

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4211307
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    contributor authorPangaud, Thomas
    contributor authorFourrie, Nadia
    contributor authorGuidard, Vincent
    contributor authorDahoui, Mohamed
    contributor authorRabier, Florence
    date accessioned2017-06-09T16:32:19Z
    date available2017-06-09T16:32:19Z
    date copyright2009/12/01
    date issued2009
    identifier issn0027-0644
    identifier otherams-69618.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4211307
    description abstractAn approach to make use of Atmospheric Infrared Sounder (AIRS) cloud-affected infrared radiances has been developed at Météo-France in the context of the global numerical weather prediction model. The method is based on (i) the detection and the characterization of clouds by the CO2-slicing algorithm and (ii) the identification of clear?cloudy channels using the ECMWF cloud-detection scheme. Once a hypothetical cloud-affected pixel is detected by the CO2-slicing scheme, the cloud-top pressure and the effective cloud fraction are provided to the radiative transfer model simultaneously with other atmospheric variables to simulate cloud-affected radiances. Furthermore, the ECMWF scheme flags each channel of the pixel as clear or cloudy. In the current configuration of the assimilation scheme, channels affected by clouds whose cloud-top pressure ranges between 600 and 950 hPa are assimilated over sea in addition to clear channels. Results of assimilation experiments are presented. On average, 3.5% of additional pixels are assimilated over the globe but additional assimilated channels are much more numerous for mid- to high latitudes (10% of additional assimilated channels on average). Encouraging results are found in the quality of the analyses: background departures of AIRS observations are reduced, especially for surface channels, which are globally 4 times smaller, and the analysis better fits some conventional and satellite data. Global forecasts are slightly improved for the geopotential field. These improvements are significant up to the 72-h forecast range. Predictability improvements have been obtained for a case study: a low pressure system that affected the southeastern part of Italy in September 2006. The trajectory, intensity, and the whole development of the cyclogenesis are better predicted, whatever the forecast range, for this case study.
    publisherAmerican Meteorological Society
    titleAssimilation of AIRS Radiances Affected by Mid- to Low-Level Clouds
    typeJournal Paper
    journal volume137
    journal issue12
    journal titleMonthly Weather Review
    identifier doi10.1175/2009MWR3020.1
    journal fristpage4276
    journal lastpage4292
    treeMonthly Weather Review:;2009:;volume( 137 ):;issue: 012
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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