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    Structure and Evolution of Rainfall in Numerically Simulated Landfalling Hurricanes

    Source: Monthly Weather Review:;2008:;volume( 136 ):;issue: 010::page 3822
    Author:
    Kimball, Sytske K.
    DOI: 10.1175/2008MWR2304.1
    Publisher: American Meteorological Society
    Abstract: Using an idealized landfalling model hurricane, the impact of different land surface characteristics on hurricane rainfall distribution before, during, and after landfall is investigated. Before landfall, maximum rainfall occurs on the right side of the storm track as a result of dry air intrusion from both the environmental flow behind the vortex and the land surface ahead of the vortex. These sources of dry air combine to destabilize the right side and stabilize the left side of the storm. Upon landfall, the rainfall maximum shifts to the left of the storm track over land, near the coast. Increased friction over land drives a region of convergence in the entire front half of the storm. While mean rainfall rates decrease, localized areas of large rainfall accumulations may occur as a result of this frictional forcing. Over land, the rainfall area broadens and mean rainfall rates decrease. No differences are detected in inner-core rainfall rates between cases, but outer-core rainfall rates and rainfall coverage increase with moister land surfaces. Hence, significant differences in rainfall accumulations occur depending on moisture availability of the land surface. Since reconnaissance planes cannot fly over land, forecasters are often forced to make extrapolations from reconnaissance data over water. They should take extreme caution in doing so, since rainfall distributions may change suddenly upon landfall as different forcing mechanisms take over.
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      Structure and Evolution of Rainfall in Numerically Simulated Landfalling Hurricanes

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4209273
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    • Monthly Weather Review

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    contributor authorKimball, Sytske K.
    date accessioned2017-06-09T16:25:59Z
    date available2017-06-09T16:25:59Z
    date copyright2008/10/01
    date issued2008
    identifier issn0027-0644
    identifier otherams-67788.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4209273
    description abstractUsing an idealized landfalling model hurricane, the impact of different land surface characteristics on hurricane rainfall distribution before, during, and after landfall is investigated. Before landfall, maximum rainfall occurs on the right side of the storm track as a result of dry air intrusion from both the environmental flow behind the vortex and the land surface ahead of the vortex. These sources of dry air combine to destabilize the right side and stabilize the left side of the storm. Upon landfall, the rainfall maximum shifts to the left of the storm track over land, near the coast. Increased friction over land drives a region of convergence in the entire front half of the storm. While mean rainfall rates decrease, localized areas of large rainfall accumulations may occur as a result of this frictional forcing. Over land, the rainfall area broadens and mean rainfall rates decrease. No differences are detected in inner-core rainfall rates between cases, but outer-core rainfall rates and rainfall coverage increase with moister land surfaces. Hence, significant differences in rainfall accumulations occur depending on moisture availability of the land surface. Since reconnaissance planes cannot fly over land, forecasters are often forced to make extrapolations from reconnaissance data over water. They should take extreme caution in doing so, since rainfall distributions may change suddenly upon landfall as different forcing mechanisms take over.
    publisherAmerican Meteorological Society
    titleStructure and Evolution of Rainfall in Numerically Simulated Landfalling Hurricanes
    typeJournal Paper
    journal volume136
    journal issue10
    journal titleMonthly Weather Review
    identifier doi10.1175/2008MWR2304.1
    journal fristpage3822
    journal lastpage3847
    treeMonthly Weather Review:;2008:;volume( 136 ):;issue: 010
    contenttypeFulltext
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