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首页> 外文期刊>Nature Communications >One mechanism contributing to co-variability of the Atlantic inflow branches to the Arctic
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One mechanism contributing to co-variability of the Atlantic inflow branches to the Arctic

机译:促成大西洋流入量协变的一种机制是进入北极

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The two-branched inflow of warm and saline Atlantic Water to the Arctic is the major contributor of oceanic heat to the Arctic climate system. However, while the Atlantic Water entering the Arctic through the Fram Strait retains a large part of its heat as it flows along the Arctic continental slope, the branch flowing through the shallow Barents Sea releases a substantial amount of heat to the atmosphere. Hence, the pathway of the Atlantic Water into the Arctic to a large degree determines the short term fate of its heat. Here we show events in which the relative strengths of the two branches are affected by wind-induced Ekman-transport off the northern Barents Sea shelf. The resulting decrease in sea surface height induces a cyclonic circulation anomaly along the slope encircling the northern Barents Sea shelf area, which enhances the flow through the Barents Sea while weakening the branch flowing along the Arctic continental slope.
机译:北极的温水和咸水两支流入北极,是北极气候系统中海洋热量的主要来源。然而,尽管通过弗拉姆海峡进入北极的大西洋水在沿北极大陆坡流动时保留了大部分热量,但流经巴伦支海浅海的分支却向大气释放了大量热量。因此,大西洋水在很大程度上进入北极决定了其热量的短期命运。在这里,我们显示了其中两个分支的相对强度受北巴伦支海陆架风致埃克曼运输影响的事件。导致的海面高度下降导致沿环绕北巴伦支海陆架区域的斜坡的气旋环流异常,这增强了通过巴伦支海的流量,同时削弱了沿北极大陆坡流动的分支。

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