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    Influence of the Lake Erie Overlake Boundary Layer on Deep Convective Storm Evolution

    Source: Weather and Forecasting:;2012:;volume( 027 ):;issue: 005::page 1279
    Author:
    Workoff, Thomas E.
    ,
    Kristovich, David A. R.
    ,
    Laird, Neil F.
    ,
    LaPlante, Robert
    ,
    Leins, Daniel
    DOI: 10.1175/WAF-D-11-00076.1
    Publisher: American Meteorological Society
    Abstract: he influence that the overlake boundary layer has on storm intensity and structure is not well understood. To improve scientists? understanding of the evolution of storms crossing Lake Erie, 111 events during 2001?09 were examined using observations from Weather Surveillance Radar-1988 Doppler (WSR-88D), surface, buoy, and rawinsonde sites. It was found that on average, all storm modes tended to weaken over the lake; however, considerable variability in changes of storm intensity existed, with some storms exhibiting steady-state or increasing intensity in specific environments. Noteworthy changes in the storm maximum reflectivity generally occurred within 60 min after storms crossed the upwind shoreline. Isolated and cluster storm modes exhibited much greater weakening than those storms organized into lines or convective complexes. The atmospheric parameters having the greatest influence on storm intensity over Lake Erie varied by mode. Isolated and cluster storms generally weakened more rapidly with increasingly cold overlake surface air temperatures. Linear and complex systems, on the other hand, tended to exhibit constant or increasing maximum reflectivity with cooler overlake surface air temperatures. It is suggested that strongly stable conditions near the lake surface limit the amount of boundary layer air ingested into storms in these cases.
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      Influence of the Lake Erie Overlake Boundary Layer on Deep Convective Storm Evolution

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4231487
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    contributor authorWorkoff, Thomas E.
    contributor authorKristovich, David A. R.
    contributor authorLaird, Neil F.
    contributor authorLaPlante, Robert
    contributor authorLeins, Daniel
    date accessioned2017-06-09T17:35:40Z
    date available2017-06-09T17:35:40Z
    date copyright2012/10/01
    date issued2012
    identifier issn0882-8156
    identifier otherams-87781.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4231487
    description abstracthe influence that the overlake boundary layer has on storm intensity and structure is not well understood. To improve scientists? understanding of the evolution of storms crossing Lake Erie, 111 events during 2001?09 were examined using observations from Weather Surveillance Radar-1988 Doppler (WSR-88D), surface, buoy, and rawinsonde sites. It was found that on average, all storm modes tended to weaken over the lake; however, considerable variability in changes of storm intensity existed, with some storms exhibiting steady-state or increasing intensity in specific environments. Noteworthy changes in the storm maximum reflectivity generally occurred within 60 min after storms crossed the upwind shoreline. Isolated and cluster storm modes exhibited much greater weakening than those storms organized into lines or convective complexes. The atmospheric parameters having the greatest influence on storm intensity over Lake Erie varied by mode. Isolated and cluster storms generally weakened more rapidly with increasingly cold overlake surface air temperatures. Linear and complex systems, on the other hand, tended to exhibit constant or increasing maximum reflectivity with cooler overlake surface air temperatures. It is suggested that strongly stable conditions near the lake surface limit the amount of boundary layer air ingested into storms in these cases.
    publisherAmerican Meteorological Society
    titleInfluence of the Lake Erie Overlake Boundary Layer on Deep Convective Storm Evolution
    typeJournal Paper
    journal volume27
    journal issue5
    journal titleWeather and Forecasting
    identifier doi10.1175/WAF-D-11-00076.1
    journal fristpage1279
    journal lastpage1289
    treeWeather and Forecasting:;2012:;volume( 027 ):;issue: 005
    contenttypeFulltext
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