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    An Estimation of the Climatic Effects of Stratospheric Ozone Losses during the 1980s

    Source: Journal of Climate:;1997:;volume( 010 ):;issue: 004::page 774
    Author:
    MacKay, Robert M.
    ,
    Ko, Malcolm K. W.
    ,
    Shia, Run-Lie
    ,
    Yang, Yajaing
    ,
    Zhou, Shuntai
    ,
    Molnar, Gyula
    DOI: 10.1175/1520-0442(1997)010<0774:AEOTCE>2.0.CO;2
    Publisher: American Meteorological Society
    Abstract: In order to study the potential climatic effects of the ozone hole more directly and to assess the validity of previous lower resolution model results, the latest high spatial resolution version of the Atmospheric and Environmental Research, Inc., seasonal radiative dynamical climate model is used to simulate the climatic effects of ozone changes relative to the other greenhouse gases. The steady-state climatic effect of a sustained decrease in lower stratospheric ozone, similar in magnitude to the observed 1979?90 decrease, is estimated by comparing three steady-state climate simulations: I) 1979 greenhouse gas concentrations and 1979 ozone, II) 1990 greenhouse gas concentrations with 1979 ozone, and III) 1990 greenhouse gas concentrations with 1990 ozone. The simulated increase in surface air temperature resulting from nonozone greenhouse gases is 0.272 K. When changes in lower stratospheric ozone are included, the greenhouse warming is 0.165 K, which is approximately 39% lower than when ozone is fixed at the 1979 concentrations. Ozone perturbations at high latitudes result in a cooling of the surface?troposphere system that is greater (by a factor of 2.8) than that estimated from the change in radiative forcing resulting from ozone depletion and the model?s 2 ? CO2 climate sensitivity. The results suggest that changes in meridional heat transport from low to high latitudes combined with the decrease in the infrared opacity of the lower stratosphere are very important in determining the steady-state response to high latitude ozone losses. The 39% compensation in greenhouse warming resulting from lower stratospheric ozone losses is also larger than the 28% compensation simulated previously by the lower resolution model. The higher resolution model is able to resolve the high latitude features of the assumed ozone perturbation, which are important in determining the overall climate sensitivity to these perturbations.
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      An Estimation of the Climatic Effects of Stratospheric Ozone Losses during the 1980s

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/4186789
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    • Journal of Climate

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    contributor authorMacKay, Robert M.
    contributor authorKo, Malcolm K. W.
    contributor authorShia, Run-Lie
    contributor authorYang, Yajaing
    contributor authorZhou, Shuntai
    contributor authorMolnar, Gyula
    date accessioned2017-06-09T15:34:35Z
    date available2017-06-09T15:34:35Z
    date copyright1997/04/01
    date issued1997
    identifier issn0894-8755
    identifier otherams-4755.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4186789
    description abstractIn order to study the potential climatic effects of the ozone hole more directly and to assess the validity of previous lower resolution model results, the latest high spatial resolution version of the Atmospheric and Environmental Research, Inc., seasonal radiative dynamical climate model is used to simulate the climatic effects of ozone changes relative to the other greenhouse gases. The steady-state climatic effect of a sustained decrease in lower stratospheric ozone, similar in magnitude to the observed 1979?90 decrease, is estimated by comparing three steady-state climate simulations: I) 1979 greenhouse gas concentrations and 1979 ozone, II) 1990 greenhouse gas concentrations with 1979 ozone, and III) 1990 greenhouse gas concentrations with 1990 ozone. The simulated increase in surface air temperature resulting from nonozone greenhouse gases is 0.272 K. When changes in lower stratospheric ozone are included, the greenhouse warming is 0.165 K, which is approximately 39% lower than when ozone is fixed at the 1979 concentrations. Ozone perturbations at high latitudes result in a cooling of the surface?troposphere system that is greater (by a factor of 2.8) than that estimated from the change in radiative forcing resulting from ozone depletion and the model?s 2 ? CO2 climate sensitivity. The results suggest that changes in meridional heat transport from low to high latitudes combined with the decrease in the infrared opacity of the lower stratosphere are very important in determining the steady-state response to high latitude ozone losses. The 39% compensation in greenhouse warming resulting from lower stratospheric ozone losses is also larger than the 28% compensation simulated previously by the lower resolution model. The higher resolution model is able to resolve the high latitude features of the assumed ozone perturbation, which are important in determining the overall climate sensitivity to these perturbations.
    publisherAmerican Meteorological Society
    titleAn Estimation of the Climatic Effects of Stratospheric Ozone Losses during the 1980s
    typeJournal Paper
    journal volume10
    journal issue4
    journal titleJournal of Climate
    identifier doi10.1175/1520-0442(1997)010<0774:AEOTCE>2.0.CO;2
    journal fristpage774
    journal lastpage788
    treeJournal of Climate:;1997:;volume( 010 ):;issue: 004
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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