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首页> 外文期刊>Ocean Science Discussions >Comparison between three implementations of automatic identification algorithms for the quantification and characterization of mesoscale eddies in the South Atlantic Ocean
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Comparison between three implementations of automatic identification algorithms for the quantification and characterization of mesoscale eddies in the South Atlantic Ocean

机译:用于南大西洋中尺度涡旋定量和表征的自动识别算法的三种实现方式的比较

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Three methods for automatic detection of mesoscale coherent structures are applied to Sea Level Anomaly (SLA) fields in the South Atlantic. The first method is based on the wavelet packet decomposition of the SLA data, the second on the estimation of the Okubo-Weiss parameter and the third on a geometric criterion using the winding-angle approach. The results provide a comprehensive picture of the mesoscale eddies over the South Atlantic Ocean, emphasizing their main characteristics: amplitude, diameter, duration and propagation velocity. Five areas of particular eddy dynamics were selected: the Brazil Current, the Agulhas eddies propagation corridor, the Agulhas Current retroflexion, the Brazil-Malvinas confluence zone and the northern branch of the Antarctic Circumpolar Current (ACC). For these areas, mean propagation velocities and amplitudes were calculated. Two regions with long duration eddies were observed, corresponding to the propagation of Agulhas and ACC eddies. Through the comparison between the identification methods, their main advantages and shortcomings were detailed. The geometric criterion presents a better performance, mainly in terms of number of detections, duration of the eddies and propagation velocities. The results are particularly good for the Agulhas Rings, that presented the longest lifetimes of all South Atlantic eddies.
机译:自动检测中尺度相干结构的三种方法应用于南大西洋的海平面异常(SLA)领域。第一种方法基于SLA数据的小波包分解,第二种方法基于Okubo-Weiss参数的估计,第三种方法基于使用缠绕角方法的几何准则。结果提供了南大西洋中尺度涡旋的全面情况,强调了它们的主要特征:振幅,直径,持续时间和传播速度。选择了五个具有特殊涡流动力学的区域:巴西洋流,阿古拉斯涡流传播走廊,阿古拉斯流逆转,巴西-马尔维纳斯汇合带和南极绕极流(ACC)的北部分支。对于这些区域,计算了平均传播速度和幅度。观察到两个具有长持续时间涡流的区域,对应于Agulhas和ACC涡流的传播。通过比较识别方法,详细介绍了它们的主要优点和缺点。几何标准表现出更好的性能,主要在检测次数,涡流持续时间和传播速度方面。结果对Agulhas Rings尤其有利,因为Agulhas Rings是所有南大西洋涡流中寿命最长的。

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