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    Mesoscale Vertical Motions near Nocturnal Convection Initiation in PECAN

    Source: Monthly Weather Review:;2017:;volume( 145 ):;issue: 008::page 2919
    Author:
    Trier, Stanley B.
    ,
    Wilson, James W.
    ,
    Ahijevych, David A.
    ,
    Sobash, Ryan A.
    DOI: 10.1175/MWR-D-17-0005.1
    Publisher: American Meteorological Society
    Abstract: adiosonde measurements from the Plains Elevated Convection at Night (PECAN) 2015 field campaign are used to diagnose mesoscale vertical motions near nocturnal convection initiation (CI). These CI events occur in distinctly different environments including ones with 1) strong forcing for ascent associated with a synoptic cold front and midtropospheric shortwave, 2) nocturnal low-level jets interacting with weaker quasi-stationary fronts, or 3) the absence of a surface front or boundary altogether. Radiosonde-derived vertical motion profiles in each of these CI environments are characterized by low-to-midtropospheric ascent. The representativeness of these vertical motion profiles is supported by distributions of corresponding mesoscale averages from model-produced 0 to 6-hour ensemble forecasts. Thermodynamic data from radiosondes are then analyzed along with selected model ensemble members to elucidate the role of the vertical motions on subsequent CI. In a case with strong forcing for mesoscale ascent, vertical motions facilitated CI by reducing convection inhibition (CIN). However, in the majority of cases, weaker but persistent vertical motions contributed to the development of elevated, approximately saturated layers with lapse rates greater than moist adiabatic. Such layers have negligible CIN and, thereby, the capacity to support CI even without strong fine-scale triggering mechanisms in the environment. This aspect may distinguish much central U.S. nocturnal CI from typical daytime CI. The elevated unstable layers occur in disparate large-scale environments, but a common aspect of their development is mesoscale ascent in the presence of warm advection, which results in upward transports of moisture (contributing to local increases of moist static energy) with adiabatic cooling above.
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      Mesoscale Vertical Motions near Nocturnal Convection Initiation in PECAN

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    contributor authorTrier, Stanley B.
    contributor authorWilson, James W.
    contributor authorAhijevych, David A.
    contributor authorSobash, Ryan A.
    date accessioned2017-06-09T17:34:44Z
    date available2017-06-09T17:34:44Z
    date issued2017
    identifier issn0027-0644
    identifier otherams-87464.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4231136
    description abstractadiosonde measurements from the Plains Elevated Convection at Night (PECAN) 2015 field campaign are used to diagnose mesoscale vertical motions near nocturnal convection initiation (CI). These CI events occur in distinctly different environments including ones with 1) strong forcing for ascent associated with a synoptic cold front and midtropospheric shortwave, 2) nocturnal low-level jets interacting with weaker quasi-stationary fronts, or 3) the absence of a surface front or boundary altogether. Radiosonde-derived vertical motion profiles in each of these CI environments are characterized by low-to-midtropospheric ascent. The representativeness of these vertical motion profiles is supported by distributions of corresponding mesoscale averages from model-produced 0 to 6-hour ensemble forecasts. Thermodynamic data from radiosondes are then analyzed along with selected model ensemble members to elucidate the role of the vertical motions on subsequent CI. In a case with strong forcing for mesoscale ascent, vertical motions facilitated CI by reducing convection inhibition (CIN). However, in the majority of cases, weaker but persistent vertical motions contributed to the development of elevated, approximately saturated layers with lapse rates greater than moist adiabatic. Such layers have negligible CIN and, thereby, the capacity to support CI even without strong fine-scale triggering mechanisms in the environment. This aspect may distinguish much central U.S. nocturnal CI from typical daytime CI. The elevated unstable layers occur in disparate large-scale environments, but a common aspect of their development is mesoscale ascent in the presence of warm advection, which results in upward transports of moisture (contributing to local increases of moist static energy) with adiabatic cooling above.
    publisherAmerican Meteorological Society
    titleMesoscale Vertical Motions near Nocturnal Convection Initiation in PECAN
    typeJournal Paper
    journal volume145
    journal issue008
    journal titleMonthly Weather Review
    identifier doi10.1175/MWR-D-17-0005.1
    journal fristpage2919
    journal lastpage2941
    treeMonthly Weather Review:;2017:;volume( 145 ):;issue: 008
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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