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首页> 外文期刊>Journal of Physical Oceanography >Seasonal Variability in Middepth Gyral Circulation Patterns in the Central East/Japan Sea as Revealed by Long-Term Argo Data
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Seasonal Variability in Middepth Gyral Circulation Patterns in the Central East/Japan Sea as Revealed by Long-Term Argo Data

机译:长期Argo数据揭示了中东/日本海中深层回旋模式的季节性变化

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Trajectories of Argo floats deployed in the East/Japan Sea from 2001 to 2014 reveal that the middepth gyral circulation pattern of the Japan basin, the central part of the East/Japan Sea, undergoes a seasonal variation. The middepth circulation of the Japan basin is found to be characterized usually by the gyres trapped to the east of the Bogorov Rise (E-gyres) and those extending farther westward into the whole basin (BW-gyres). The E-gyre trajectories are generally associated with the turning of the floats toward deeper regions off the isobaths. This occurs in winter either on the northern or eastern side of the eastern Japan basin. It seems that the upstream part of the otherwise BW-gyre is subject to a strong negative wind stress curl in winter, and there the circulating water columns are driven toward the deeper region, thus triggering the formation of the E-gyre. The topographic effect associated with the Bogorov Rise seems to interfere thereafter in the process of determining the passage of the E-gyre. Otherwise, the water columns continue to flow along the isobaths, hence maintaining the BW-gyre. To the knowledge of the authors, this is the first observational evidence of seasonal variability in the middepth gyral circulation pattern in the East/Japan Sea. It suggests that oceanic middepth circulation, usually known to be quasi steady or slowly varying on climatological time scales, might also undergo a significant seasonal variation as it does in the East/Japan Sea.
机译:2001年至2014年在东海/日本海中部署的Argo浮标的轨迹表明,东海/日本海的中部日本盆地的中深回旋环流模式经历了季节性变化。人们发现,日本盆地的中深环流的特征通常是被困在Bogorov Rise(E-gyres)以东的旋涡(E-gyres)和向西延伸到整个盆地的旋涡(BW-gyres)。 E回转轨迹通常与浮标向等压线以外的更深区域的转向有关。这种情况发生在冬季,即日本东部盆地北部或东部。看来,冬季其他BW涡流的上游部分会受到强烈的负风应力卷曲,那里的循环水柱被驱向更深的区域,从而触发了E涡流的形成。此后,与Bogorov Rise相关的地形效应似乎会干扰确定E型回转通道的过程。否则,水柱将继续沿等压线流动,从而保持BW回转。据作者所知,这是东/日本海中深层回旋模式季节性变化的第一个观测证据。这表明通常在气候时间尺度上准稳定或缓慢变化的海洋中深度环流也可能像东/日本海一样经历明显的季节变化。

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