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    Regionalizing Africa: Patterns of Precipitation Variability in Observations and Global Climate Models

    Source: Journal of Climate:;2016:;volume( 029 ):;issue: 024::page 9027
    Author:
    Badr, Hamada S.
    ,
    Dezfuli, Amin K.
    ,
    Zaitchik, Benjamin F.
    ,
    Peters-Lidard, Christa D.
    DOI: 10.1175/JCLI-D-16-0182.1
    Publisher: American Meteorological Society
    Abstract: any studies have documented dramatic climatic and environmental changes that have affected Africa over different time scales. These studies often raise questions regarding the spatial extent and regional connectivity of changes inferred from observations and proxies and/or derived from climate models. Objective regionalization offers a tool for addressing these questions. To demonstrate this potential, applications of hierarchical climate regionalizations of Africa using observations and GCM historical simulations and future projections are presented. First, Africa is regionalized based on interannual precipitation variability using Climate Hazards Group Infrared Precipitation with Stations (CHIRPS) data for the period 1981?2014. A number of data processing techniques and clustering algorithms are tested to ensure a robust definition of climate regions. These regionalization results highlight the seasonal and even month-to-month specificity of regional climate associations across the continent, emphasizing the need to consider time of year as well as research question when defining a coherent region for climate analysis. CHIRPS regions are then compared to those of five GCMs for the historic period, with a focus on boreal summer. Results show that some GCMs capture the climatic coherence of the Sahel and associated teleconnections in a manner that is similar to observations, while other models break the Sahel into uncorrelated subregions or produce a Sahel-like region of variability that is spatially displaced from observations. Finally, shifts in climate regions under projected twenty-first-century climate change for different GCMs and emissions pathways are examined. A projected change is found in the coherence of the Sahel, in which the western and eastern Sahel become distinct regions with different teleconnections. This pattern is most pronounced in high-emissions scenarios.
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      Regionalizing Africa: Patterns of Precipitation Variability in Observations and Global Climate Models

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    contributor authorBadr, Hamada S.
    contributor authorDezfuli, Amin K.
    contributor authorZaitchik, Benjamin F.
    contributor authorPeters-Lidard, Christa D.
    date accessioned2017-06-09T17:13:15Z
    date available2017-06-09T17:13:15Z
    date copyright2016/12/01
    date issued2016
    identifier issn0894-8755
    identifier otherams-81289.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4224275
    description abstractany studies have documented dramatic climatic and environmental changes that have affected Africa over different time scales. These studies often raise questions regarding the spatial extent and regional connectivity of changes inferred from observations and proxies and/or derived from climate models. Objective regionalization offers a tool for addressing these questions. To demonstrate this potential, applications of hierarchical climate regionalizations of Africa using observations and GCM historical simulations and future projections are presented. First, Africa is regionalized based on interannual precipitation variability using Climate Hazards Group Infrared Precipitation with Stations (CHIRPS) data for the period 1981?2014. A number of data processing techniques and clustering algorithms are tested to ensure a robust definition of climate regions. These regionalization results highlight the seasonal and even month-to-month specificity of regional climate associations across the continent, emphasizing the need to consider time of year as well as research question when defining a coherent region for climate analysis. CHIRPS regions are then compared to those of five GCMs for the historic period, with a focus on boreal summer. Results show that some GCMs capture the climatic coherence of the Sahel and associated teleconnections in a manner that is similar to observations, while other models break the Sahel into uncorrelated subregions or produce a Sahel-like region of variability that is spatially displaced from observations. Finally, shifts in climate regions under projected twenty-first-century climate change for different GCMs and emissions pathways are examined. A projected change is found in the coherence of the Sahel, in which the western and eastern Sahel become distinct regions with different teleconnections. This pattern is most pronounced in high-emissions scenarios.
    publisherAmerican Meteorological Society
    titleRegionalizing Africa: Patterns of Precipitation Variability in Observations and Global Climate Models
    typeJournal Paper
    journal volume29
    journal issue24
    journal titleJournal of Climate
    identifier doi10.1175/JCLI-D-16-0182.1
    journal fristpage9027
    journal lastpage9043
    treeJournal of Climate:;2016:;volume( 029 ):;issue: 024
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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