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Mesoscale surface circulation and variability of Southern Indian Ocean derived by combining satellite altimetry and drifter observations

机译:结合卫星测高和漂流观测资料获得的南印度洋中尺度表面环流和变化

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摘要

High resoultion Eulerian mean velocity field has been derived by combining the satellite tracked surface drifter data with satellite altimetry and ocean surface winds. The drifter data used in this study includes Argos and surface drifter data from Global Drifter Program. Maps of Sea Level Anomaly (MSLA) weekly files with a resolution of (1/3)° in both Latitude and Longitude for the period 1993–2012 have been used. The Ekman current is computed using ocean surface mean wind fields from scatterometers onboard ERS 1/2, Quikscat and ASCAT. The derived mean velocity field exhibits the broad flow of Antarctic Circumpolar Current with speeds up to 0.6 m/s. Anomalous field is quite significant in the western part between 20° and 40°E and in the eastern part between 80°E and 100°E with velocity anomaly up to 0.3 m/s. The estimated mean flow pattern well agrees with the dynamic topography derived from in-situ observations. Also, the derived velocity field is consistent with the in-situ ADCP current measurements. Eddy kinetic energy illustrates an increasing trend during 1993–2008 and is in phase coherence with the Southern Annular Mode by three month lag. Periodic modulations are found in the eddy kinetic energy due the low frequency Antarctic Circumpolar Wave propagation.
机译:通过将卫星跟踪的地面漂泊者数据与卫星测高仪和海洋表面风相结合,可以得出高重整性的欧拉平均速度场。本研究中使用的漂流数据包括Argos和来自全球漂流计划的地面漂流数据。使用了1993-2012年期间海平面异常(MSLA)每周文件的地图,它们的纬度和经度均为(1/3)°。利用来自ERS 1/2,Quikscat和ASCAT上的散射仪的海洋表面平均风场来计算Ekman流。导出的平均速度场显示出南极绕极电流的广泛流动,速度高达0.6 m / s。在20°至40°E的西部和80°E至100°E的东部,异常场非常明显,速度异常高达0.3 m / s。估计的平均流型与从原位观测得到的动态地形非常吻合。而且,导出的速度场与原位ADCP电流测量结果一致。涡动能说明了1993-2008年期间的增长趋势,并且与南部环形模式相位相干,滞后了三个月。由于低频南极外接极波传播,在涡动能中发现了周期性调制。

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  • 来源
    《海洋学报(英文版)》 |2015年第9期|12-22|共11页
  • 作者单位

    Department of Coastal and 0ffshore Engineering, School of 0cean Engineering and Underwater Technology, Kerala University of Fisheries and 0cean Studies, Kochi 682506, India;

    Department of Geomatic Engineering, Faculty of Geoinformation and Real Estate, University of Technology Malaysia, Johor 81310, Malaysia;

    Institute of Geospatial Science&Technology, Faculty of Geoinformation and Real Estate, University of Technology Malaysia, Johor 81310, Malaysia;

    Institute of Geospatial Science&Technology, Faculty of Geoinformation and Real Estate, University of Technology Malaysia, Johor 81310, Malaysia;

    Department of Geomatic Engineering, Faculty of Geoinformation and Real Estate, University of Technology Malaysia, Johor 81310, Malaysia;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:57:53
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