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    A Unified Modeling Approach to Climate System Prediction

    Source: Bulletin of the American Meteorological Society:;2009:;volume( 090 ):;issue: 012::page 1819
    Author:
    Hurrell, James
    ,
    Meehl, Gerald A.
    ,
    Bader, David
    ,
    Delworth, Thomas L.
    ,
    Kirtman, Ben
    ,
    Wielicki, Bruce
    DOI: 10.1175/2009BAMS2752.1
    Publisher: American Meteorological Society
    Abstract: There is a new perspective of a continuum of prediction problems, with a blurring of the distinction between short-term predictions and long-term climate projections. At the heart of this new perspective is the realization that all climate system predictions, regardless of time scale, share common processes and mechanisms; moreover, interactions across time and space scales are fundamental to the climate system itself. Further, just as seasonal-to-interannual predictions start from an estimate of the state of the climate system, there is a growing realization that decadal and longer-term climate predictions could be initialized with estimates of the current observed state of the atmosphere, oceans, cryosphere, and land surface. Even though the prediction problem itself is seamless, the best practical approach to it may be described as unified: models aimed at different time scales and phenomena may have large commonality but place emphasis on different aspects of the system. The potential benefits of this commonality are significant and include improved predictions on all time scales and stronger collaboration and shared knowledge, infrastructure, and technical capabilities among those in the weather and climate prediction communities.
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      A Unified Modeling Approach to Climate System Prediction

    URI
    https://yetl.yabesh.ir/yetl1/handle/yetl/4209675
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    • Bulletin of the American Meteorological Society

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    contributor authorHurrell, James
    contributor authorMeehl, Gerald A.
    contributor authorBader, David
    contributor authorDelworth, Thomas L.
    contributor authorKirtman, Ben
    contributor authorWielicki, Bruce
    date accessioned2017-06-09T16:27:18Z
    date available2017-06-09T16:27:18Z
    date copyright2009/12/01
    date issued2009
    identifier issn0003-0007
    identifier otherams-68149.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4209675
    description abstractThere is a new perspective of a continuum of prediction problems, with a blurring of the distinction between short-term predictions and long-term climate projections. At the heart of this new perspective is the realization that all climate system predictions, regardless of time scale, share common processes and mechanisms; moreover, interactions across time and space scales are fundamental to the climate system itself. Further, just as seasonal-to-interannual predictions start from an estimate of the state of the climate system, there is a growing realization that decadal and longer-term climate predictions could be initialized with estimates of the current observed state of the atmosphere, oceans, cryosphere, and land surface. Even though the prediction problem itself is seamless, the best practical approach to it may be described as unified: models aimed at different time scales and phenomena may have large commonality but place emphasis on different aspects of the system. The potential benefits of this commonality are significant and include improved predictions on all time scales and stronger collaboration and shared knowledge, infrastructure, and technical capabilities among those in the weather and climate prediction communities.
    publisherAmerican Meteorological Society
    titleA Unified Modeling Approach to Climate System Prediction
    typeJournal Paper
    journal volume90
    journal issue12
    journal titleBulletin of the American Meteorological Society
    identifier doi10.1175/2009BAMS2752.1
    journal fristpage1819
    journal lastpage1832
    treeBulletin of the American Meteorological Society:;2009:;volume( 090 ):;issue: 012
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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