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    Thermodynamic Environments of Deep Convection in Atlantic Tropical Disturbances

    Source: Journal of the Atmospheric Sciences:;2013:;Volume( 070 ):;issue: 007::page 1912
    Author:
    Davis, Christopher A.
    ,
    Ahijevych, David A.
    DOI: 10.1175/JAS-D-12-0278.1
    Publisher: American Meteorological Society
    Abstract: onditional composites of dropsondes deployed into eight tropical Atlantic weather systems during 2010 are analyzed. The samples are conditioned based on cloud-top temperature within 10 km of the dropsonde, the radius from the cyclonic circulation center of the disturbance, and the stage of system development toward tropical cyclogenesis. Statistical tests are performed to identify significant differences between composite profiles. Cold-cloud-region-composite profiles of virtual temperature deviations from a large-scale instantaneous average indicate enhanced static stability prior to genesis within 200 km of the center of circulation, with negative anomalies below 700 hPa and larger warm anomalies above 600 hPa. Moist static energy is enhanced in the middle troposphere in this composite mainly because of an increase in water vapor content. Prior to genesis the buoyancy of lifted parcels within 200 km of the circulation center is sharply reduced compared to the buoyancy of parcels farther from the center. These thermodynamic characteristics support the conceptual model of an altered mass flux profile prior to genesis that strongly favors convergence in the lower troposphere and rapid increase of circulation near the surface. It is also noted that the air?sea temperature difference is greatest in the inner core of the pregenesis composite, which suggests a means to preferentially initiate new convection in the inner core where the rotation is greatest.
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      Thermodynamic Environments of Deep Convection in Atlantic Tropical Disturbances

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4219091
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    contributor authorDavis, Christopher A.
    contributor authorAhijevych, David A.
    date accessioned2017-06-09T16:55:52Z
    date available2017-06-09T16:55:52Z
    date copyright2013/07/01
    date issued2013
    identifier issn0022-4928
    identifier otherams-76623.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4219091
    description abstractonditional composites of dropsondes deployed into eight tropical Atlantic weather systems during 2010 are analyzed. The samples are conditioned based on cloud-top temperature within 10 km of the dropsonde, the radius from the cyclonic circulation center of the disturbance, and the stage of system development toward tropical cyclogenesis. Statistical tests are performed to identify significant differences between composite profiles. Cold-cloud-region-composite profiles of virtual temperature deviations from a large-scale instantaneous average indicate enhanced static stability prior to genesis within 200 km of the center of circulation, with negative anomalies below 700 hPa and larger warm anomalies above 600 hPa. Moist static energy is enhanced in the middle troposphere in this composite mainly because of an increase in water vapor content. Prior to genesis the buoyancy of lifted parcels within 200 km of the circulation center is sharply reduced compared to the buoyancy of parcels farther from the center. These thermodynamic characteristics support the conceptual model of an altered mass flux profile prior to genesis that strongly favors convergence in the lower troposphere and rapid increase of circulation near the surface. It is also noted that the air?sea temperature difference is greatest in the inner core of the pregenesis composite, which suggests a means to preferentially initiate new convection in the inner core where the rotation is greatest.
    publisherAmerican Meteorological Society
    titleThermodynamic Environments of Deep Convection in Atlantic Tropical Disturbances
    typeJournal Paper
    journal volume70
    journal issue7
    journal titleJournal of the Atmospheric Sciences
    identifier doi10.1175/JAS-D-12-0278.1
    journal fristpage1912
    journal lastpage1928
    treeJournal of the Atmospheric Sciences:;2013:;Volume( 070 ):;issue: 007
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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