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    High-Resolution Global Climate Simulations with the ECMWF Model in Project Athena: Experimental Design, Model Climate, and Seasonal Forecast Skill

    Source: Journal of Climate:;2011:;volume( 025 ):;issue: 009::page 3155
    Author:
    Jung, T.
    ,
    Miller, M. J.
    ,
    Palmer, T. N.
    ,
    Towers, P.
    ,
    Wedi, N.
    ,
    Achuthavarier, D.
    ,
    Adams, J. M.
    ,
    Altshuler, E. L.
    ,
    Cash, B. A.
    ,
    Kinter, J. L.
    ,
    Marx, L.
    ,
    Stan, C.
    ,
    Hodges, K. I.
    DOI: 10.1175/JCLI-D-11-00265.1
    Publisher: American Meteorological Society
    Abstract: he sensitivity to the horizontal resolution of the climate, anthropogenic climate change, and seasonal predictive skill of the ECMWF model has been studied as part of Project Athena?an international collaboration formed to test the hypothesis that substantial progress in simulating and predicting climate can be achieved if mesoscale and subsynoptic atmospheric phenomena are more realistically represented in climate models.In this study the experiments carried out with the ECMWF model (atmosphere only) are described in detail. Here, the focus is on the tropics and the Northern Hemisphere extratropics during boreal winter. The resolutions considered in Project Athena for the ECMWF model are T159 (126 km), T511 (39 km), T1279 (16 km), and T2047 (10 km). It was found that increasing horizontal resolution improves the tropical precipitation, the tropical atmospheric circulation, the frequency of occurrence of Euro-Atlantic blocking, and the representation of extratropical cyclones in large parts of the Northern Hemisphere extratropics. All of these improvements come from the increase in resolution from T159 to T511 with relatively small changes for further resolution increases to T1279 and T2047, although it should be noted that results from this very highest resolution are from a previously untested model version. Problems in simulating the Madden?Julian oscillation remain unchanged for all resolutions tested. There is some evidence that increasing horizontal resolution to T1279 leads to moderate increases in seasonal forecast skill during boreal winter in the tropics and Northern Hemisphere extratropics. Sensitivity experiments are discussed, which helps to foster a better understanding of some of the resolution dependence found for the ECMWF model in Project Athena.
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      High-Resolution Global Climate Simulations with the ECMWF Model in Project Athena: Experimental Design, Model Climate, and Seasonal Forecast Skill

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4221723
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    contributor authorJung, T.
    contributor authorMiller, M. J.
    contributor authorPalmer, T. N.
    contributor authorTowers, P.
    contributor authorWedi, N.
    contributor authorAchuthavarier, D.
    contributor authorAdams, J. M.
    contributor authorAltshuler, E. L.
    contributor authorCash, B. A.
    contributor authorKinter, J. L.
    contributor authorMarx, L.
    contributor authorStan, C.
    contributor authorHodges, K. I.
    date accessioned2017-06-09T17:04:29Z
    date available2017-06-09T17:04:29Z
    date copyright2012/05/01
    date issued2011
    identifier issn0894-8755
    identifier otherams-78993.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4221723
    description abstracthe sensitivity to the horizontal resolution of the climate, anthropogenic climate change, and seasonal predictive skill of the ECMWF model has been studied as part of Project Athena?an international collaboration formed to test the hypothesis that substantial progress in simulating and predicting climate can be achieved if mesoscale and subsynoptic atmospheric phenomena are more realistically represented in climate models.In this study the experiments carried out with the ECMWF model (atmosphere only) are described in detail. Here, the focus is on the tropics and the Northern Hemisphere extratropics during boreal winter. The resolutions considered in Project Athena for the ECMWF model are T159 (126 km), T511 (39 km), T1279 (16 km), and T2047 (10 km). It was found that increasing horizontal resolution improves the tropical precipitation, the tropical atmospheric circulation, the frequency of occurrence of Euro-Atlantic blocking, and the representation of extratropical cyclones in large parts of the Northern Hemisphere extratropics. All of these improvements come from the increase in resolution from T159 to T511 with relatively small changes for further resolution increases to T1279 and T2047, although it should be noted that results from this very highest resolution are from a previously untested model version. Problems in simulating the Madden?Julian oscillation remain unchanged for all resolutions tested. There is some evidence that increasing horizontal resolution to T1279 leads to moderate increases in seasonal forecast skill during boreal winter in the tropics and Northern Hemisphere extratropics. Sensitivity experiments are discussed, which helps to foster a better understanding of some of the resolution dependence found for the ECMWF model in Project Athena.
    publisherAmerican Meteorological Society
    titleHigh-Resolution Global Climate Simulations with the ECMWF Model in Project Athena: Experimental Design, Model Climate, and Seasonal Forecast Skill
    typeJournal Paper
    journal volume25
    journal issue9
    journal titleJournal of Climate
    identifier doi10.1175/JCLI-D-11-00265.1
    journal fristpage3155
    journal lastpage3172
    treeJournal of Climate:;2011:;volume( 025 ):;issue: 009
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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