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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Tracking Labrador Sea Water property signals along the Deep Western Boundary Current
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Tracking Labrador Sea Water property signals along the Deep Western Boundary Current

机译:沿着深度西部边界电流跟踪拉布拉多海水性能信号

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摘要

Observations of the Deep Western Boundary Current (DWBC) at Line W on the western North Atlantic continental slope southeast of Cape Cod from 1995 to 2014 reveal water mass changes that are consistent with changes in source water properties upstream in the Labrador Sea. This is most evident in the cold, dense, and deep class of Labrador Sea Water (dLSW) that was created and progressively replenished and deepened by recurring winter convection during the severe winters of 1987-1994. The arrival of this record cold, fresh, and low potential vorticity anomaly at Line W lags its formation in the Labrador Sea by 3-7 years. Complementary observations along the path of the DWBC provide further evidence that this anomaly is advected along the boundary and indicate that stirring between the boundary and the interior intensifies south of the Flemish Cap. Finally, the consistency of the data with realistic advective and mixing time scales is assessed using the Waugh and Hall (2005) model framework. The data are found to be best represented by a mean transit time of 5 years from the Labrador Sea to Line W, with a leading order role for both advection by the DWBC and mixing between the boundary flow and interior waters.
机译:1995年至2014年北大大大陆山南北大西洋坡度南部北大西洋坡度南部的深度边界电流(DWBC)揭示了与拉布拉多州上游的源水质变化一致的水质变化。这在寒冷,密集和深阶层的拉布拉多海水(DLSW)中最明显,通过在1987-1994的严重冬季重复冬季对流创造和逐步补充和加深。该记录的到达寒冷,新鲜和低潜在的涡旋异常,在线W滞后于3-7岁的拉布拉多海中的形成。沿DWBC的路径的互补观察提供了进一步的证据表明,这种异常沿着边界建立,并表明边界与内部之间的搅拌加剧了佛兰帽的南部。最后,使用Waugh和Hall(2005)模型框架评估具有现实平程和混合时间尺度的数据的一致性。发现数据是由拉布拉多海到线W 5年的平均转运时间最合适的,以跨国公司的平流和边界流和内部水域之间的平流发挥领先顺序的作用。

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