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Multidecadal-Scale Freshening at the Salinity Minimum in the Western Part of North Pacific : Importance of Wind-Driven Cross-Gyre Transport of Subarctic Water to the Subtropical Gyre

机译:北太平洋西部盐度最低时的多年代尺度清新:北极空风驱动的跨旋流输送到亚热带旋流的重要性

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摘要

Using oceanographic observations and an eddy-resolving ice–ocean coupled model simulation from 1955 to 2004, the effects of the wind-driven ocean circulation change that occurred in the late 1970s during multidecadal-scale freshening of the North Pacific Intermediate Water (NPIW) at salinity minimum density (;26.8 su) were investigated. An analysis of the observations revealed that salinity decreased significantly at the density range of 26.6–26.8 su in the western subtropical gyre, including the mixed water region (MWR). The temporal variability of the salinity is dominated by the marked change in the late 1970s. With results similar to the observations, the model, selectively forced by the interannual variability of the wind-driven ocean circulation, simulated significant freshening of the intermediate layer over the subtropical gyre. The significant freshening is related to the increase in southward transport of the Oyashio associated with the intensification of the Aleutian low. Accompanying these changes, the intrusion of fresh and low potential vorticity water, originating in the Okhotsk Sea, to the MWRincreased, and the freshening signal propagated farther southward in the western subtropical gyre during the subsequent 6 yr, crossing the Kuroshio Extension. These results indicate that the multidecadal-scale freshening of the NPIW is partly caused by intensification of the wind-driven cross-gyre transport of the subarctic water to the subtropical gyre.
机译:利用1955年至2004年的海洋学观测结果和涡旋分辨的冰海耦合模型模拟,发现在1970年代后期风速驱动的海洋环流变化对北太平洋中间水(NPIW)进行了数十年规模的更新期间所产生的影响。研究了盐度最小密度(; 26.8 su)。对观测结果的分析表明,在包括混合水区(MWR)的西亚热带回旋中,盐度在26.6-26.8 su的密度范围内显着下降。盐度的时间变化主要由1970年代后期的显着变化决定。通过与观测结果相似的结果,该模型在风驱动海洋环流的年际变化的作用下选择性地模拟了亚热带回旋管中间层的明显更新。显着的清新与与阿留申低潮的加剧相关的Oyashio向南运输的增加有关。伴随着这些变化,来自鄂霍次克海的淡水和低势涡水入侵到MWR增加,并且在随后的6年中,越过黑潮扩展,清新信号在西亚热带回旋波中向南传播。这些结果表明,NPIW的多年代尺度的更新部分是由风驱动的跨弧向南亚热带水向亚热带回水输送的交叉旋流增强引起的。

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