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首页> 外文期刊>Journal of atmospheric and oceanic technology >A Vector Geometry-Based Eddy Detection Algorithm and Its Application to a High-Resolution Numerical Model Product and High-Frequency Radar Surface Velocities in the Southern California Bight
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A Vector Geometry-Based Eddy Detection Algorithm and Its Application to a High-Resolution Numerical Model Product and High-Frequency Radar Surface Velocities in the Southern California Bight

机译:基于矢量几何的涡流检测算法及其在南加利福尼亚湾高分辨率数值模型产品和高频雷达表面速度中的应用

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摘要

Automated eddy detection methods are fundamental tools to analyze eddy activity from the large datasets derived from satellite measurements and numerical model simulations. Existing methods are either based on the distribution of physical parameters usually computed from velocity derivatives or on the geometry of velocity streamlines around minima or maxima of sea level anomaly. A new algorithm was developed based exclusively on the geometry of the velocity vectors. Four constraints characterizing the spatial distribution of the velocity vectors around eddy centers were derived from the general features associated with velocity fields in the presence of eddies. The grid points in the domain for which these four constraints are satisfied are detected as eddy centers. Eddy sizes are computed from closed contours of the streamfunction field, and eddy tracks are retrieved by comparing the distribution of eddy centers at successive time steps. The results were validated against manually derived eddy fields. Two parameters in the algorithm can be modified by the users to optimize its performance. The algorithm is applied to both a high-resolution model product and high-frequency radar surface velocity fields in the Southern California Bight.
机译:自动化涡流检测方法是从卫星测量和数值模型仿真得出的大型数据集中分析涡流活动的基本工具。现有方法要么基于通常通过速度导数计算出的物理参数的分布,要么基于围绕海平面异常的最小值或最大值的速度流线的几何形状。专门根据速度矢量的几何形状开发了一种新算法。从存在涡流的情况下,与速度场相关的一般特征得出了四个表征涡流中心周围速度矢量空间分布的约束。将满足这四个约束的域中的网格点检测为涡流中心。根据流函数字段的闭合轮廓计算涡流大小,并通过比较连续时间步长处的涡流中心分布来检索涡流轨迹。针对手动得出的涡流场验证了结果。用户可以修改算法中的两个参数以优化其性能。该算法适用于南加州湾的高分辨率模型产品和高频雷达表面速度场。

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  • 来源
    《Journal of atmospheric and oceanic technology》 |2010年第3期|p.564-579|共16页
  • 作者单位

    Ocean Physics Laboratory, University of California, Santa Barbara, Santa Barbara, California;

    rnIGPP, University of California, Los Angeles, Los Angeles, California;

    rnOcean Physics Laboratory, University of California, Santa Barbara, Santa Barbara, California;

    rnICESS, University of California, Santa Barbara, Santa Barbara, California;

    rnIGPP, University of California, Los Angeles, Los Angeles, California;

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