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首页> 外文期刊>Journal of Climate >Contrasting the Antarctic and Arctic Atmospheric Responses to Projected Sea Ice Loss in the Late Twenty-First Century
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Contrasting the Antarctic and Arctic Atmospheric Responses to Projected Sea Ice Loss in the Late Twenty-First Century

机译:将南极和北极大气反应对比二十一世纪后期投影海冰损失

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Models project that Antarctic sea ice area will decline considerably by the end of this century, but the consequences remain largely unexplored. Here, the atmospheric response to future sea ice loss in the Antarctic is investigated, and contrasted to the Arctic case, using the Community Earth Systems Model (CESM) Whole Atmosphere Coupled Climate Model (WACCM). Time-slice model runs with historic sea ice concentrations are compared to runs with future concentrations, from the late twenty-first century, in each hemisphere separately. As for the Arctic, results indicate that Antarctic sea ice loss will act to shift the tropospheric jet equatorward, an internal negative feedback to the poleward shift associated with increased greenhouse gases. Also, the tropospheric response to Antarctic sea ice loss is found to be somewhat weaker, more vertically confined, and less seasonally varying than in the case of Arctic sea ice loss. The stratospheric response to Antarctic sea ice loss is relatively weak compared to the Arctic case, although it is here demonstrated that the latter is still small relative to internal variability. In contrast to the Arctic case, the response of the ozone layer is found to be positive (up to 5 Dobson units): interestingly, it is present in all seasons except austral spring. Finally, while the response of surface temperature and precipitation is limited to the southern high latitudes, it is nonetheless unable to impact the interior of the Antarctic continent, suggesting a minor role of sea ice loss on recent Antarctic temperature trends.
机译:南极海冰区将在本世纪末下降的模型项目,但后果仍然很大程度上是未开发的。在这里,研究了对南极未来海冰冰损失的大气反应,并与北极案件形成鲜明对比,使用社区地球系统模型(CESM)全部大气耦合气候模型(WACCM)。与历史悠久的海冰浓度相比,与历史悠久的海冰浓度一起运行,以未来的浓度从二十一世纪分开的每个半球。至于北极,结果表明,南极海冰损失将采用转移到对流层射流赤道,内部负反馈与与增加的温室气体相关联的管道转变。此外,发现对南极海冰损失的对流层反应有所疲软,更垂直于北极海冰损失的情况下更垂直狭窄,更季节性地变化。与北极案相比,对南极海冰冰损的平流层反应相对较弱,尽管它在此表明后者相对于内部变异性仍然很小。与北极病例相比,发现臭氧层的响应是阳性的(最多5个多手单位):有趣的是,它存在于除南方春天以外的所有季节。最后,虽然表面温度和降水的响应仅限于南方高纬度,但尽管如此,仍然无法影响南极大陆的内部,暗示海冰损失对近期南极温度趋势的轻微作用。

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