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首页> 外文期刊>Geophysical Research Letters >Global linkages originating from decadal oceanic variability in the subpolar North Atlantic
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Global linkages originating from decadal oceanic variability in the subpolar North Atlantic

机译:源于北极亚极年代际海洋变化的全球联系

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摘要

The anomalous decadal warming of the subpolar North Atlantic Ocean (SPNA), and the northward spreading of this warm water, has been linked to rapid Arctic sea ice loss and more frequent cold European winters. Recently, variations in this heat transport have also been reported to covary with global warming slowdown/acceleration periods via a Pacific climate response. We here examine the role of SPNA temperature variability in this Atlantic-Pacific climate connectivity. We find that the evolution of ocean heat content anomalies from the subtropics to the subpolar region, likely due to ocean circulation changes, coincides with a basin-wide Atlantic warming/cooling. This induces an Atlantic-Pacific sea surface temperature seesaw, which in turn, strengthens/weakens the Walker circulation and amplifies the Pacific decadal variability that triggers pronounced global-scale atmospheric circulation anomalies. We conclude that the decadal oceanic variability in the SPNA is an essential component of the tropical interactions between the Atlantic and Pacific Oceans.
机译:亚极北大西洋(SPNA)的年代际异常变暖以及这种暖水的向北扩散与北极海冰的迅速流失和欧洲冬季更频繁的寒冷有关。最近,也有报道称这种热传输的变化会通过太平洋气候响应而与全球变暖的减速/加速期相伴而生。我们在这里研究了SPNA温度变化在大西洋与太平洋气候连接中的作用。我们发现,可能由于海洋环流变化,从亚热带到亚极地区的海洋热含量异常的演变与整个盆地范围的大西洋变暖/降温相吻合。这引起了大西洋-太平洋海面温度的跷跷板,从而增强/减弱了沃克环流,并放大了太平洋年代际变化,从而引发了全球范围内明显的大气环流异常。我们得出的结论是,SPNA的年代际海洋变化是大西洋与太平洋之间热带相互作用的重要组成部分。

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