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    Rainfall Occurrence in the U.S. Warm Season: The Diurnal Cycle

    Source: Journal of Climate:;2008:;volume( 021 ):;issue: 016::page 4132
    Author:
    Carbone, R. E.
    ,
    Tuttle, J. D.
    DOI: 10.1175/2008JCLI2275.1
    Publisher: American Meteorological Society
    Abstract: The diurnal occurrence of warm-season rainfall over the U.S. mainland is examined, particularly in light of forcings at multiple scales. The analysis is based on a radar dataset of 12-seasons duration covering the U.S. mainland from the Continental Divide eastward. The dataset resolves 2-km features at 15-min intervals, thus providing a detailed view of both large- and regional-scale diurnal patterns, as well as the statistics of events underlying these patterns. The results confirm recent findings with respect to the role of propagating rainfall systems and the high frequency at which these are excited by sensible heating over elevated terrain. Between the Rockies and the Appalachians, ?60% of midsummer rainfall occurs in this manner. Most rainfall in the central United States is nocturnal and may be attributed to the following three main forcings: 1) the passage of eastward-propagating rainfall systems with origins near the Continental Divide at 105°W; 2) a nocturnal reversal of the mountain?plains solenoid, which is associated with widespread ascent over the plains; and 3) the transport of energetic air and moisture convergence by the Great Plains low-level jet. Other features of interest include effects of the Appalachians, semidiurnal signals of regional significance, and the impact of breezes along the Gulf of Mexico. A modest effort was put forth to discern signals associated with El Niño and the Southern Oscillation. While tendencies in precipitation patterns are observed, the record is too short to draw conclusions of general significance.
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      Rainfall Occurrence in the U.S. Warm Season: The Diurnal Cycle

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    contributor authorCarbone, R. E.
    contributor authorTuttle, J. D.
    date accessioned2017-06-09T16:23:46Z
    date available2017-06-09T16:23:46Z
    date copyright2008/08/01
    date issued2008
    identifier issn0894-8755
    identifier otherams-67107.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4208518
    description abstractThe diurnal occurrence of warm-season rainfall over the U.S. mainland is examined, particularly in light of forcings at multiple scales. The analysis is based on a radar dataset of 12-seasons duration covering the U.S. mainland from the Continental Divide eastward. The dataset resolves 2-km features at 15-min intervals, thus providing a detailed view of both large- and regional-scale diurnal patterns, as well as the statistics of events underlying these patterns. The results confirm recent findings with respect to the role of propagating rainfall systems and the high frequency at which these are excited by sensible heating over elevated terrain. Between the Rockies and the Appalachians, ?60% of midsummer rainfall occurs in this manner. Most rainfall in the central United States is nocturnal and may be attributed to the following three main forcings: 1) the passage of eastward-propagating rainfall systems with origins near the Continental Divide at 105°W; 2) a nocturnal reversal of the mountain?plains solenoid, which is associated with widespread ascent over the plains; and 3) the transport of energetic air and moisture convergence by the Great Plains low-level jet. Other features of interest include effects of the Appalachians, semidiurnal signals of regional significance, and the impact of breezes along the Gulf of Mexico. A modest effort was put forth to discern signals associated with El Niño and the Southern Oscillation. While tendencies in precipitation patterns are observed, the record is too short to draw conclusions of general significance.
    publisherAmerican Meteorological Society
    titleRainfall Occurrence in the U.S. Warm Season: The Diurnal Cycle
    typeJournal Paper
    journal volume21
    journal issue16
    journal titleJournal of Climate
    identifier doi10.1175/2008JCLI2275.1
    journal fristpage4132
    journal lastpage4146
    treeJournal of Climate:;2008:;volume( 021 ):;issue: 016
    contenttypeFulltext
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