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    The Atmospheric General Circulation in Thermodynamical Coordinates

    Source: Journal of the Atmospheric Sciences:;2013:;Volume( 071 ):;issue: 003::page 916
    Author:
    Kjellsson, Joakim
    ,
    Döös, Kristofer
    ,
    Laliberté, Frédéric B.
    ,
    Zika, Jan D.
    DOI: 10.1175/JAS-D-13-0173.1
    Publisher: American Meteorological Society
    Abstract: he zonal and meridional components of the atmospheric general circulation are used to define a global thermodynamic streamfunction in dry static energy versus latent heat coordinates. Diabatic motions in the tropical circulations and fluxes driven by midlatitude eddies are found to form a single, global thermodynamic cycle. Calculations based on the Interim European Centre for Medium-Range Weather Forecasts (ECMWF) Re-Analysis (ERA-Interim) dataset indicate that the cycle has a peak transport of 428 Sv (Sv ≡ 109 kg s?1). The thermodynamic cycle encapsulates a globally interconnected heat and water cycle comprising ascent of moist air where latent heat is converted into dry static energy, radiative cooling where dry air loses dry static energy, and a moistening branch where air is warmed and moistened. It approximately follows a tropical moist adiabat and is bounded by the Clausius?Clapeyron relationship for near-surface air. The variability of the atmospheric general circulation is related to ENSO events using reanalysis data from recent years (1979?2009) and historical simulations from the EC-Earth Consortium (EC-Earth) coupled climate model (1850?2005). The thermodynamic cycle in both EC-Earth and ERA-Interim widens and weakens with positive ENSO phases and narrows and strengthens during negative ENSO phases with a high correlation coefficient. Weakening in amplitude suggests a weakening of the large-scale circulation, while widening suggests an increase in mean tropical near-surface moist static energy.
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      The Atmospheric General Circulation in Thermodynamical Coordinates

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4219273
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    contributor authorKjellsson, Joakim
    contributor authorDöös, Kristofer
    contributor authorLaliberté, Frédéric B.
    contributor authorZika, Jan D.
    date accessioned2017-06-09T16:56:32Z
    date available2017-06-09T16:56:32Z
    date copyright2014/03/01
    date issued2013
    identifier issn0022-4928
    identifier otherams-76788.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4219273
    description abstracthe zonal and meridional components of the atmospheric general circulation are used to define a global thermodynamic streamfunction in dry static energy versus latent heat coordinates. Diabatic motions in the tropical circulations and fluxes driven by midlatitude eddies are found to form a single, global thermodynamic cycle. Calculations based on the Interim European Centre for Medium-Range Weather Forecasts (ECMWF) Re-Analysis (ERA-Interim) dataset indicate that the cycle has a peak transport of 428 Sv (Sv ≡ 109 kg s?1). The thermodynamic cycle encapsulates a globally interconnected heat and water cycle comprising ascent of moist air where latent heat is converted into dry static energy, radiative cooling where dry air loses dry static energy, and a moistening branch where air is warmed and moistened. It approximately follows a tropical moist adiabat and is bounded by the Clausius?Clapeyron relationship for near-surface air. The variability of the atmospheric general circulation is related to ENSO events using reanalysis data from recent years (1979?2009) and historical simulations from the EC-Earth Consortium (EC-Earth) coupled climate model (1850?2005). The thermodynamic cycle in both EC-Earth and ERA-Interim widens and weakens with positive ENSO phases and narrows and strengthens during negative ENSO phases with a high correlation coefficient. Weakening in amplitude suggests a weakening of the large-scale circulation, while widening suggests an increase in mean tropical near-surface moist static energy.
    publisherAmerican Meteorological Society
    titleThe Atmospheric General Circulation in Thermodynamical Coordinates
    typeJournal Paper
    journal volume71
    journal issue3
    journal titleJournal of the Atmospheric Sciences
    identifier doi10.1175/JAS-D-13-0173.1
    journal fristpage916
    journal lastpage928
    treeJournal of the Atmospheric Sciences:;2013:;Volume( 071 ):;issue: 003
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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