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    Observational Constraints on Past Attributable Warming and Predictions of Future Global Warming

    Source: Journal of Climate:;2006:;volume( 019 ):;issue: 013::page 3055
    Author:
    Stott, Peter A.
    ,
    Mitchell, John F. B.
    ,
    Allen, Myles R.
    ,
    Delworth, Thomas L.
    ,
    Gregory, Jonathan M.
    ,
    Meehl, Gerald A.
    ,
    Santer, Benjamin D.
    DOI: 10.1175/JCLI3802.1
    Publisher: American Meteorological Society
    Abstract: This paper investigates the impact of aerosol forcing uncertainty on the robustness of estimates of the twentieth-century warming attributable to anthropogenic greenhouse gas emissions. Attribution analyses on three coupled climate models with very different sensitivities and aerosol forcing are carried out. The Third Hadley Centre Coupled Ocean?Atmosphere GCM (HadCM3), Parallel Climate Model (PCM), and GFDL R30 models all provide good simulations of twentieth-century global mean temperature changes when they include both anthropogenic and natural forcings. Such good agreement could result from a fortuitous cancellation of errors, for example, by balancing too much (or too little) greenhouse warming by too much (or too little) aerosol cooling. Despite a very large uncertainty for estimates of the possible range of sulfate aerosol forcing obtained from measurement campaigns, results show that the spatial and temporal nature of observed twentieth-century temperature change constrains the component of past warming attributable to anthropogenic greenhouse gases to be significantly greater (at the 5% level) than the observed warming over the twentieth century. The cooling effects of aerosols are detected in all three models. Both spatial and temporal aspects of observed temperature change are responsible for constraining the relative roles of greenhouse warming and sulfate cooling over the twentieth century. This is because there are distinctive temporal structures in differential warming rates between the hemispheres, between land and ocean, and between mid- and low latitudes. As a result, consistent estimates of warming attributable to greenhouse gas emissions are obtained from all three models, and predictions are relatively robust to the use of more or less sensitive models. The transient climate response following a 1% yr?1 increase in CO2 is estimated to lie between 2.2 and 4 K century?1 (5?95 percentiles).
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      Observational Constraints on Past Attributable Warming and Predictions of Future Global Warming

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4220919
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    contributor authorStott, Peter A.
    contributor authorMitchell, John F. B.
    contributor authorAllen, Myles R.
    contributor authorDelworth, Thomas L.
    contributor authorGregory, Jonathan M.
    contributor authorMeehl, Gerald A.
    contributor authorSanter, Benjamin D.
    date accessioned2017-06-09T17:02:03Z
    date available2017-06-09T17:02:03Z
    date copyright2006/07/01
    date issued2006
    identifier issn0894-8755
    identifier otherams-78269.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4220919
    description abstractThis paper investigates the impact of aerosol forcing uncertainty on the robustness of estimates of the twentieth-century warming attributable to anthropogenic greenhouse gas emissions. Attribution analyses on three coupled climate models with very different sensitivities and aerosol forcing are carried out. The Third Hadley Centre Coupled Ocean?Atmosphere GCM (HadCM3), Parallel Climate Model (PCM), and GFDL R30 models all provide good simulations of twentieth-century global mean temperature changes when they include both anthropogenic and natural forcings. Such good agreement could result from a fortuitous cancellation of errors, for example, by balancing too much (or too little) greenhouse warming by too much (or too little) aerosol cooling. Despite a very large uncertainty for estimates of the possible range of sulfate aerosol forcing obtained from measurement campaigns, results show that the spatial and temporal nature of observed twentieth-century temperature change constrains the component of past warming attributable to anthropogenic greenhouse gases to be significantly greater (at the 5% level) than the observed warming over the twentieth century. The cooling effects of aerosols are detected in all three models. Both spatial and temporal aspects of observed temperature change are responsible for constraining the relative roles of greenhouse warming and sulfate cooling over the twentieth century. This is because there are distinctive temporal structures in differential warming rates between the hemispheres, between land and ocean, and between mid- and low latitudes. As a result, consistent estimates of warming attributable to greenhouse gas emissions are obtained from all three models, and predictions are relatively robust to the use of more or less sensitive models. The transient climate response following a 1% yr?1 increase in CO2 is estimated to lie between 2.2 and 4 K century?1 (5?95 percentiles).
    publisherAmerican Meteorological Society
    titleObservational Constraints on Past Attributable Warming and Predictions of Future Global Warming
    typeJournal Paper
    journal volume19
    journal issue13
    journal titleJournal of Climate
    identifier doi10.1175/JCLI3802.1
    journal fristpage3055
    journal lastpage3069
    treeJournal of Climate:;2006:;volume( 019 ):;issue: 013
    contenttypeFulltext
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