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    A Composite Perspective on Bore Passages during the PECAN Campaign

    Source: Monthly Weather Review:;2019:;volume 147:;issue 004::page 1395
    Author:
    Loveless, David M.
    ,
    Wagner, Timothy J.
    ,
    Turner, David D.
    ,
    Ackerman, Steven A.
    ,
    Feltz, Wayne F.
    DOI: 10.1175/MWR-D-18-0291.1
    Publisher: American Meteorological Society
    Abstract: AbstractAtmospheric bores have been shown to have a role in the initiation and maintenance of elevated convection. Previous observational studies of bores have been case studies of more notable events. However, this creates a selection bias toward extraordinary cases, while discussions of the differences between bores that favor convective initiation and maintenance and bores that do not are lacking from the literature. This study attempts to fill that gap by analyzing a high-temporal-resolution thermodynamic profile composite of eight bores observed by multiple platforms during the Plains Elevated Convection at Night (PECAN) campaign in order to assess the impact of bores on the environment. The time?height cross section of the potential temperature composite displays quasi-permanent parcel displacements up to 900 m with the bore passage. Low-level lifting is shown to weaken the capping inversion and reduce convective inhibition (CIN) and the level of free convection (LFC). Additionally, low-level water vapor increases by about 1 g kg?1 in the composite mean. By assessing variability across the eight cases, it is shown that increases in low-level water vapor result in increases to convective available potential energy (CAPE), while drying results in decreased CAPE. Most cases resulted in decreased CIN and LFC height with the bore passage, but only some cases resulted in increased CAPE. This suggests that bores will increase the potential for convective initiation, but future research should be directed toward better understanding cases that result in increased CAPE as those are the types of bores that will increase severity of convection.
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      A Composite Perspective on Bore Passages during the PECAN Campaign

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    contributor authorLoveless, David M.
    contributor authorWagner, Timothy J.
    contributor authorTurner, David D.
    contributor authorAckerman, Steven A.
    contributor authorFeltz, Wayne F.
    date accessioned2019-10-05T06:54:45Z
    date available2019-10-05T06:54:45Z
    date copyright2/26/2019 12:00:00 AM
    date issued2019
    identifier otherMWR-D-18-0291.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4263816
    description abstractAbstractAtmospheric bores have been shown to have a role in the initiation and maintenance of elevated convection. Previous observational studies of bores have been case studies of more notable events. However, this creates a selection bias toward extraordinary cases, while discussions of the differences between bores that favor convective initiation and maintenance and bores that do not are lacking from the literature. This study attempts to fill that gap by analyzing a high-temporal-resolution thermodynamic profile composite of eight bores observed by multiple platforms during the Plains Elevated Convection at Night (PECAN) campaign in order to assess the impact of bores on the environment. The time?height cross section of the potential temperature composite displays quasi-permanent parcel displacements up to 900 m with the bore passage. Low-level lifting is shown to weaken the capping inversion and reduce convective inhibition (CIN) and the level of free convection (LFC). Additionally, low-level water vapor increases by about 1 g kg?1 in the composite mean. By assessing variability across the eight cases, it is shown that increases in low-level water vapor result in increases to convective available potential energy (CAPE), while drying results in decreased CAPE. Most cases resulted in decreased CIN and LFC height with the bore passage, but only some cases resulted in increased CAPE. This suggests that bores will increase the potential for convective initiation, but future research should be directed toward better understanding cases that result in increased CAPE as those are the types of bores that will increase severity of convection.
    publisherAmerican Meteorological Society
    titleA Composite Perspective on Bore Passages during the PECAN Campaign
    typeJournal Paper
    journal volume147
    journal issue4
    journal titleMonthly Weather Review
    identifier doi10.1175/MWR-D-18-0291.1
    journal fristpage1395
    journal lastpage1413
    treeMonthly Weather Review:;2019:;volume 147:;issue 004
    contenttypeFulltext
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