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首页> 外文期刊>Journal of Physical Oceanography >Estimation of the Effect of Eddies on Coastal El Nino Flows Using Along-Track Satellite Altimeter Data
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Estimation of the Effect of Eddies on Coastal El Nino Flows Using Along-Track Satellite Altimeter Data

机译:利用沿轨卫星高度计数据估算涡流对沿岸厄尔尼诺现象的影响

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摘要

Previous work has shown that the El Nino sea level signal leaks through the gappy western equatorial Pacific to the coasts of western and southern Australia. South of about 22°S, in the region of the Leeuwin Current, the amplitude of this El Nino signal falls. Using coastal sea level measurements and along-track altimetry data from the Ocean Topography Experiment (TOPEX)/Poseidon, Jason-1, and OSTM/Jason-2 satellites, this study finds that the interannual divergence of the eddy momentum flux D' is correlated with the southward along-shelf sea level amplitude decay, consistent with the eddies removing energy from the large-scale sea level signal. The quantity D' is also correlated with the interannual flow with a surprisingly short dissipation time scale of only 2 days, much shorter than the interannual time scale. A similar analysis off the western coast of South America, site of the originally named "El Nino" current, was carried out. Interannual sea level decay along the shelf edge is observed, and the interannual southward flow along the shelf edge is found to be highly positively correlated with the along-shelf sea level decay with a dissipation time scale of a few days. Dynamics similar to the Australian case likely apply.
机译:先前的工作表明,厄尔尼诺现象的海平面信号通过蓬松的西部赤道太平洋泄漏到澳大利亚西部和南部的海岸。在Leeuwin Current区域以南约22°S处,此El Nino信号的振幅下降。利用沿海地形测量和海洋地形实验(TOPEX)/ Poseidon,Jason-1和OSTM / Jason-2卫星的沿线测高数据,本研究发现涡旋动量通量D'的年际发散是相关的向南沿陆架海平面振幅衰减,这与涡旋将大规模海平面信号中的能量去除有关。数量D'也与年际流量相关,其令人惊讶的短耗散时间尺度仅为2天,比年际时间尺度短得多。在最初命名为“厄尔尼诺”流的南美西南海岸进行了类似的分析。观测到沿陆架边缘的年际海平面衰减,发现沿陆架边缘的年际南流与沿架空海平面衰减高度正相关,耗散时间为数天。与澳大利亚情况类似的动态可能适用。

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  • 来源
    《Journal of Physical Oceanography》 |2013年第6期|1209-1224|共16页
  • 作者单位

    Department of Earth, Ocean and Atmospheric Science, The Florida State University, Tallahassee, Florida;

    Department of Earth, Ocean and Atmospheric Science, The Florida State University, Tallahassee, Florida;

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