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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Atmospheric forcing on the Canadian Arctic Archipelago freshwater outflow and implications for the Labrador Sea variability
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Atmospheric forcing on the Canadian Arctic Archipelago freshwater outflow and implications for the Labrador Sea variability

机译:加拿大北极群岛淡水流出的大气强迫及其对拉布拉多海变率的影响

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摘要

[1] The variability of the freshwater export through the Canadian Arctic Archipelago (CAA) is analyzed using a hindcast simulation forced by surface atmospheric forcing from the ERA40 reanalysis (1958-2001). Although the two channels representing the archipelago in the model are both sensitive to the along-channel sea surface height (SSH) gradient, they appear to have very distinct behaviors. The outflow to Lancaster Sound is shown to be largely controlled by the magnitude of the upstream SSH gradient across McClure Strait. The gradient shows a close link to the wind stress curl in the western Arctic but also to a large-scale SSH anomaly pattern which has a strong signal over the shelf to the south of McClure Strait. The latter has, however, little statistical connection to the SSH variability in the Beaufort Gyre. By contrast, the outflow through Nares Strait responds preferentially to SSH variations in the northern Baffin Bay which are remotely forced by air-sea heat exchanges in the Labrador Sea. The variability is largely coherent between the two outflows and is controlled by a dipolar atmospheric pattern reminiscent of the North Atlantic/Arctic Oscillation. When entering the subpolar gyre, the CAA freshwater outflow remains confined to the Labrador shelf with little impact on the salinity of the interior Labrador Sea and potentially on the convection. The latter is represented by a distinct mode of salinity variability in the western subpolar gyre which is rather influenced by the variability of the sea ice export through Fram Strait.
机译:[1]通过对ERA40再分析(1958-2001)的地表大气强迫强迫进行的后验模拟,分析了通过加拿大北极群岛(CAA)的淡水出口的变化性。尽管在模型中代表群岛的两个航道都对沿航道海面高度(SSH)梯度敏感,但它们似乎具有非常不同的行为。事实证明,流向Lancaster Sound的流量很大程度上受整个麦克卢尔海峡上游SSH梯度的大小控制。梯度显示出与北极西部的风应力卷曲紧密相关,但也与大规模的SSH异常模式密切相关,该模式在麦克卢尔海峡以南的大陆架上具有强烈的信号。但是,后者与Beaufort Gyre中的SSH变异性几乎没有统计联系。相比之下,通过Nares海峡流出的水优先响应北部Baffin湾的SSH变化,这些变化是由拉布拉多海中的海-气热交换远程推动的。两次流出之间的变异性在很大程度上是连贯的,并由让人联想到北大西洋/北极涛动的偶极大气模式控制。当进入亚极回旋流时,CAA淡水流出仍被限制在拉布拉多架上,对内部拉布拉多海的盐度和对流的影响很小。后者以西部极地回旋区的盐度变异性的独特模式表示,而盐度变异性受Fram海峡出口海冰的变异性影响较大。

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