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The decadally modulating eddy field in the upstream Kuroshio Extension and its related mechanisms

机译:黑潮上游的年代际涡旋及其相关机制

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摘要

Both the level of the high-frequency eddy kinetic energy (HF-EKE) and the energy-containing scale in the upstream Kuroshio Extension (KE) undergo a well-defined decadal modulation, which correlates well with the decadal KE path variability. The HF-EKE level and the energy-containing scales will increase with unstable KE path and decrease with stable KE path. Also the mesoscale eddies are a little meridionally elongated in the stable state, while they are much zonally elongated in the unstable state. The local baroclinic instability and the barotropic instability associated with the decadal modulation of HF-EKE have been investigated. The results show that the baroclinic instability is stronger in the stable state than that in the unstable state, with a shorter characteristic temporal scale and a larger characteristic spatial scale. Meanwhile, the regional-averaged barotropic conversion rate is larger in the unstable state than that in the stable state. The results also demonstrate that the baroclinic instability is not the dominant mechanism influencing the decadal modulation of the mesoscale eddy field, while the barotropic instability makes a positive contribution to the decadal modulation.
机译:高频涡动能(HF-EKE)的水平和上游黑潮扩展区(KE)的含能尺度都经历了明确定义的年代际调制,这与年代际KE路径变异性密切相关。 HF-EKE能级和含能标度将随着不稳定的KE路径而增加,而随着稳定的KE路径而降低。同样,中尺度涡流在稳定状态下略微经向伸长,而在不稳定状态下略微经向伸长。研究了与HF-EKE的十年调制有关的局部斜压不稳定性和正压不稳定性。结果表明,斜压不稳定性在稳定状态下比不稳定状态更强,特征时间尺度较短,特征空间尺度较大。同时,不稳定状态下的区域平均正压转换率要比稳定状态下大。结果还表明,斜压不稳定不是影响中尺度涡旋场年代际调制的主要机制,而正压不稳定对年代际调制具有积极作用。

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  • 来源
    《海洋学报(英文版)》 |2016年第5期|9-17|共9页
  • 作者单位

    Key Laboratory of 0cean Circulation and Waves, Institute of 0ceanology, Chinese Academy of Sciences, Qingdao 266071, China;

    Key Laboratory of 0cean Circulation and Waves, Institute of 0ceanology, Chinese Academy of Sciences, Qingdao 266071, China;

    Key Laboratory of 0cean Circulation and Waves, Institute of 0ceanology, Chinese Academy of Sciences, Qingdao 266071, China;

    International Hurricane Research Center, Florida International University, Miami, MARC 370, USA;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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