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On the Variability of Antarctic Circumpolar Current Fronts Inferred from 1992-2011 Altimetry

机译:从1992-2011年测高仪推断的南极绕极流锋变化

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Antarctic Circumpolar Current (ACC) fronts, defined as water mass boundaries, have been known to respond to large-scale atmospheric variabilities, especially the Southern Hemisphere annular mode (SAM) and El Nino-Southern Oscillation (ENSO). Distinct patterns of localized variability in meridional front displacements during 1992-2011 are derived from the analysis of satellite sea surface height data. Major basin-scale differences are found between the southeast Pacific (150°-90°W) and the southeast Indian (75°-150°E) sectors of the ACC. Frontal positions in the southeast Pacific show large year-to-year meridional fluctuations, attributed mostly to ENSO and in part SAM, and no apparent seasonal cycles or long-term trends. In contrast, summer (winter) frontal locations in the southeast Indian extend farther to the south (north) of their long-term mean distribution. A southward drift of ACC fronts is indicated over the Indian sector during the past two decades. This long-term shift is not directly related to the atmospheric variabilities, but this is most likely in response to changes in large-scale ocean circulation, in particular to the poleward expansion of the Indian subtropical gyre. The existence of these localized, contrasting variability patterns suggests that a circumpolar-averaging analysis could possibly smooth out a local climate signal, with an emphasis on a basin-scale investigation for climate studies in the Southern Ocean.
机译:已知被定义为水团边界的南极绕极流(ACC)前沿对大规模的大气变化有响应,特别是南半球环形模式(SAM)和厄尔尼诺-南方涛动(ENSO)。从卫星海面高度数据的分析得出1992-2011年子午线前向位移的局部变化的不同模式。在ACC的东南太平洋(150°-90°W)和印度东南部(75°-150°E)区域之间发现了主要的盆地尺度差异。东南太平洋的正面位置显示每年的经年波动很大,主要归因于ENSO和部分SAM,并且没有明显的季节性周期或长期趋势。相反,印度东南部的夏季(冬季)锋面位置延伸至其长期平均分布的南部(北部)。在过去的二十年中,印度地区的ACC前沿向南偏移。这种长期变化与大气变化没有直接关系,但是最有可能是对大规模海洋环流变化的响应,特别是对印度亚热带回旋极向扩张的反应。这些局部的,相反的变异性模式的存在表明,绕极平均分析可能会消除局部气候信号,并着重于对南大洋进行气候研究的流域规模调查。

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  • 来源
    《Journal of Physical Oceanography 》 |2014年第12期| 3054-3071| 共18页
  • 作者单位

    Ocean Science and Technology School, Korea Maritime and Ocean University, Busan, and Ocean Circulation and Climate Research Department, Korea Institute of Ocean Science and Technology, Ansan, South Korea,Korea Institute of Ocean Science and Technology, 787 Haean-ro, Sangrok-gu, Ansan, 426-744, South Korea;

    Department of Oceanography, Texas A&M University, College Station, Texas;

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