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    Storms and Precipitation Across the continental Divide Experiment (SPADE)

    Source: Bulletin of the American Meteorological Society:;2022:;volume( 103 ):;issue: 011::page E2628
    Author:
    Julie M. Thériault
    ,
    Nicolas R. Leroux
    ,
    Ronald E. Stewart
    ,
    André Bertoncini
    ,
    Stephen J. Déry
    ,
    John W. Pomeroy
    ,
    Hadleigh D. Thompson
    ,
    Hilary Smith
    ,
    Zen Mariani
    ,
    Aurélie Desroches-Lapointe
    ,
    Selina Mitchell
    ,
    Juris Almonte
    DOI: 10.1175/BAMS-D-21-0146.1
    Publisher: American Meteorological Society
    Abstract: The Canadian Rockies are a triple-continental divide, whose high mountains are drained by major snow-fed and rain-fed rivers flowing to the Pacific, Atlantic, and Arctic Oceans. The objective of the April–June 2019 Storms and Precipitation Across the continental Divide Experiment (SPADE) was to determine the atmospheric processes producing precipitation on the eastern and western sides of the Canadian Rockies during springtime, a period when upslope events of variable phase dominate precipitation on the eastern slopes. To do so, three observing sites across the divide were instrumented with advanced meteorological sensors. During the 13 observed events, the western side recorded only 25% of the eastern side’s precipitation accumulation, rainfall occurred rather than snowfall, and skies were mainly clear. Moisture sources and amounts varied markedly between events. An atmospheric river landfall in California led to moisture flowing persistently northward and producing the longest duration of precipitation on both sides of the divide. Moisture from the continental interior always produced precipitation on the eastern side but only in specific conditions on the western side. Mainly slow-falling ice crystals, sometimes rimed, formed at higher elevations on the eastern side (>3 km MSL), were lifted, and subsequently drifted westward over the divide during nonconvective storms to produce rain at the surface on the western side. Overall, precipitation generally crossed the divide in the Canadian Rockies during specific spring-storm atmospheric conditions although amounts at the surface varied with elevation, condensate type, and local and large-scale flow fields.
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      Storms and Precipitation Across the continental Divide Experiment (SPADE)

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    contributor authorJulie M. Thériault
    contributor authorNicolas R. Leroux
    contributor authorRonald E. Stewart
    contributor authorAndré Bertoncini
    contributor authorStephen J. Déry
    contributor authorJohn W. Pomeroy
    contributor authorHadleigh D. Thompson
    contributor authorHilary Smith
    contributor authorZen Mariani
    contributor authorAurélie Desroches-Lapointe
    contributor authorSelina Mitchell
    contributor authorJuris Almonte
    date accessioned2023-04-12T18:50:45Z
    date available2023-04-12T18:50:45Z
    date copyright2022/11/17
    date issued2022
    identifier otherBAMS-D-21-0146.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4290342
    description abstractThe Canadian Rockies are a triple-continental divide, whose high mountains are drained by major snow-fed and rain-fed rivers flowing to the Pacific, Atlantic, and Arctic Oceans. The objective of the April–June 2019 Storms and Precipitation Across the continental Divide Experiment (SPADE) was to determine the atmospheric processes producing precipitation on the eastern and western sides of the Canadian Rockies during springtime, a period when upslope events of variable phase dominate precipitation on the eastern slopes. To do so, three observing sites across the divide were instrumented with advanced meteorological sensors. During the 13 observed events, the western side recorded only 25% of the eastern side’s precipitation accumulation, rainfall occurred rather than snowfall, and skies were mainly clear. Moisture sources and amounts varied markedly between events. An atmospheric river landfall in California led to moisture flowing persistently northward and producing the longest duration of precipitation on both sides of the divide. Moisture from the continental interior always produced precipitation on the eastern side but only in specific conditions on the western side. Mainly slow-falling ice crystals, sometimes rimed, formed at higher elevations on the eastern side (>3 km MSL), were lifted, and subsequently drifted westward over the divide during nonconvective storms to produce rain at the surface on the western side. Overall, precipitation generally crossed the divide in the Canadian Rockies during specific spring-storm atmospheric conditions although amounts at the surface varied with elevation, condensate type, and local and large-scale flow fields.
    publisherAmerican Meteorological Society
    titleStorms and Precipitation Across the continental Divide Experiment (SPADE)
    typeJournal Paper
    journal volume103
    journal issue11
    journal titleBulletin of the American Meteorological Society
    identifier doi10.1175/BAMS-D-21-0146.1
    journal fristpageE2628
    journal lastpageE2649
    pageE2628–E2649
    treeBulletin of the American Meteorological Society:;2022:;volume( 103 ):;issue: 011
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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