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    Synoptic and Frontal-Cyclone Scale Instabilities in Baroclinic Jet Flows

    Source: Journal of the Atmospheric Sciences:;1998:;Volume( 055 ):;issue: 008::page 1316
    Author:
    Garnier, Elodie
    ,
    Métais, Olivier
    ,
    Lesieur, Marcel
    DOI: 10.1175/1520-0469(1998)055<1316:SAFCSI>2.0.CO;2
    Publisher: American Meteorological Society
    Abstract: Baroclinic instabilities of jet flows are investigated by means of numerical simulations of the nonhydrostatic Boussinesq equations on the f plane. Frontal small scales are accurately described thanks to precise numerical methods (mixed spectral?high-order finite differences). First, direct numerical simulations are used to carry out linear instability studies. The authors show the existence for a critical value of Ro/F = 1.5, under which baroclinic instability dominates (Ro and F are the Rossby and the Froude numbers). Cyclogenesis events are then explored for various degrees of baroclinicity of the basic state with emphasis on the preferential amplification of cyclonic vorticity. The asymmetry of the vorticity field is quantified, and deterministic and statistical analyses of the various terms involved in the vorticity equation show simply how vertical stretching mechanisms are responsible for this asymmetry. The late stage of the instability following cutoff of the primary wave occlusion is then studied at high Reynolds number using large-eddy simulations techniques. They reveal the spontaneous development of intense small-scale secondary cyclones at various locations along the cold front. These are shown to result from similar vorticity amplification mechanisms to the primary large-scale cyclones.
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      Synoptic and Frontal-Cyclone Scale Instabilities in Baroclinic Jet Flows

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    contributor authorGarnier, Elodie
    contributor authorMétais, Olivier
    contributor authorLesieur, Marcel
    date accessioned2017-06-09T14:34:58Z
    date available2017-06-09T14:34:58Z
    date copyright1998/04/01
    date issued1998
    identifier issn0022-4928
    identifier otherams-22160.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4158580
    description abstractBaroclinic instabilities of jet flows are investigated by means of numerical simulations of the nonhydrostatic Boussinesq equations on the f plane. Frontal small scales are accurately described thanks to precise numerical methods (mixed spectral?high-order finite differences). First, direct numerical simulations are used to carry out linear instability studies. The authors show the existence for a critical value of Ro/F = 1.5, under which baroclinic instability dominates (Ro and F are the Rossby and the Froude numbers). Cyclogenesis events are then explored for various degrees of baroclinicity of the basic state with emphasis on the preferential amplification of cyclonic vorticity. The asymmetry of the vorticity field is quantified, and deterministic and statistical analyses of the various terms involved in the vorticity equation show simply how vertical stretching mechanisms are responsible for this asymmetry. The late stage of the instability following cutoff of the primary wave occlusion is then studied at high Reynolds number using large-eddy simulations techniques. They reveal the spontaneous development of intense small-scale secondary cyclones at various locations along the cold front. These are shown to result from similar vorticity amplification mechanisms to the primary large-scale cyclones.
    publisherAmerican Meteorological Society
    titleSynoptic and Frontal-Cyclone Scale Instabilities in Baroclinic Jet Flows
    typeJournal Paper
    journal volume55
    journal issue8
    journal titleJournal of the Atmospheric Sciences
    identifier doi10.1175/1520-0469(1998)055<1316:SAFCSI>2.0.CO;2
    journal fristpage1316
    journal lastpage1335
    treeJournal of the Atmospheric Sciences:;1998:;Volume( 055 ):;issue: 008
    contenttypeFulltext
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