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加拿大东北部和格陵兰岛近期北极快速变暖的热带强迫作用。

Tropical forcing of the recent rapid Arctic warming in northeastern Canada and Greenland.

机构信息

Department of Earth and Space Sciences and Quaternary Research Center, University of Washington, Seattle, Washington 98195, USA.

Department of Atmospheric Sciences, University of Washington, Seattle, Washington 98195, USA.

出版信息

Nature. 2014 May 8;509(7499):209-12. doi: 10.1038/nature13260.

Abstract

Rapid Arctic warming and sea-ice reduction in the Arctic Ocean are widely attributed to anthropogenic climate change. The Arctic warming exceeds the global average warming because of feedbacks that include sea-ice reduction and other dynamical and radiative feedbacks. We find that the most prominent annual mean surface and tropospheric warming in the Arctic since 1979 has occurred in northeastern Canada and Greenland. In this region, much of the year-to-year temperature variability is associated with the leading mode of large-scale circulation variability in the North Atlantic, namely, the North Atlantic Oscillation. Here we show that the recent warming in this region is strongly associated with a negative trend in the North Atlantic Oscillation, which is a response to anomalous Rossby wave-train activity originating in the tropical Pacific. Atmospheric model experiments forced by prescribed tropical sea surface temperatures simulate the observed circulation changes and associated tropospheric and surface warming over northeastern Canada and Greenland. Experiments from the Coupled Model Intercomparison Project Phase 5 (ref. 16) models with prescribed anthropogenic forcing show no similar circulation changes related to the North Atlantic Oscillation or associated tropospheric warming. This suggests that a substantial portion of recent warming in the northeastern Canada and Greenland sector of the Arctic arises from unforced natural variability.

摘要

北极地区迅速变暖以及海冰减少被广泛归因于人为气候变化。由于包括海冰减少和其他动力及辐射反馈在内的反馈,北极变暖的速度超过了全球平均变暖速度。我们发现,自 1979 年以来,北极地区最显著的年度平均地表和对流层变暖出现在加拿大东北部和格陵兰岛。在这一地区,每年的大部分温度变化都与北大西洋主要的大规模环流变化模式有关,即北大西洋涛动。我们在此表明,该地区近期的变暖与北大西洋涛动的负向趋势密切相关,而北大西洋涛动是对源自热带太平洋的异常罗斯贝波列活动的响应。受规定热带海表温度强迫的大气模式实验模拟了观测到的加拿大东北部和格陵兰岛的环流变化以及相关的对流层和地表变暖。来自耦合模式比较计划第五阶段(参考文献 16)模型的受规定人为强迫的实验并未显示出与北大西洋涛动或相关的对流层变暖相关的类似环流变化。这表明,北极加拿大东北部和格陵兰地区近期变暖的很大一部分来自于非强迫的自然变率。

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