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Mid-depth recirculation observed in the interior Labrador and Irminger seas by direct velocity measurements

机译:通过直接速度测量在拉布拉多和艾明格海内部观测到的中深度回流

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The Labrador Sea is one of the sites where convection exports surface water to the deep ocean in winter as part of the thermo-haline circulation. Labrador Sea water is characteristically cold and fresh, and it can be traced at intermediate depths (500-2,000 m) across the North Atlantic Ocean, to the south and to the east of the Labrador Sea. Widespread observations of the ocean currents that lead to this distribution of Labrador Sea water have, however, been difficult and therefore scarce. We have used more than 200 subsurface floats to measure directly basin-wide horizontal velocities at various depths in the Labrador and Irminger seas. We observe unanticipated recirculations of the mid-depth (~700m) cyclonic boundary currents in both basins, leading to an anticyclonic flow in the interior of the Labrador basin. About 40% of the floats from the region of deep convection left the basin within one year and were rapidly transported in the anticyclonic flow to the Irminger basin, and also eastwards into the subpolar gyre. Surprisingly, the float tracks did not clearly depict the deep western boundary current, which is the expected main pathway of Labrador Sea water in the thermohaline circulation. Rather, the flow along the boundary near Flemish Cap is dominated by eddies that transport water offshore. Our detailed observations of the velocity structure with a high data coverage suggest that we may have to revise our picture of the formation and spreading of Labrador Sea water, and future studies with similar instrumentation will allow new insights on the intermediate depth ocean circulation.
机译:拉布拉多海是冬季热对流循环的一部分,对流将地表水输出到深海。拉布拉多海水的特征是凉爽而新鲜,可以追溯到横跨北大西洋,拉布拉多海的南部和东部的中间深度(500-2,000 m)。然而,对导致拉布拉多海水这种分布的洋流的广泛观测一直很困难,因此很稀少。我们已经使用了200多个地下浮标来直接测量拉布拉多和艾明格海不同深度的全盆地水平速度。我们观察到两个盆地中深度(〜700m)气旋边界流的意外回流,导致拉布拉多盆地内部的反气旋流动。来自深对流区域的浮子约有40%在一年之内离开了该盆地,并以反旋流的形式迅速输送到了艾明格盆地,并向东进入了亚极回旋。出乎意料的是,浮线没有清楚地描绘出深西部边界流,这是拉布拉多海水在热盐环流中预期的主要途径。而是,沿着佛兰芒盖帽附近边界的水流主要是将水运到近海的涡流。我们对具有高数据覆盖率的速度结构的详细观察表明,我们可能不得不修改关于拉布拉多海水形成和扩散的图景,并且使用类似仪器进行的未来研究将为中深度海洋环流提供新的见识。

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