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TPVTrack v1.0: a watershed segmentation and overlap correspondence method for tracking tropopause polar vortices

机译:TPVTrack v1.0:用于追踪对流层顶极涡的分水岭分割和重叠对应方法

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A new free modular software package is described for tracking tropopause polar vortices (TPVs) natively on structured or unstructured grids. Motivated by limitations in spatial characterization and time tracking within existing approaches, TPVTrack mimics the expected dynamics of TPVs to represent their (1)?spatial structure, with variable shapes and intensities, and (2)?time evolution, with mergers and splits. TPVs are segmented from the gridded flow field into spatial objects as restricted regional watershed basins on the tropopause, described by geometric metrics, associated over time by overlap similarity into major and minor correspondences, and tracked along major correspondences. Simplified segmentation and correspondence test cases illustrate some of the appeal, sensitivities, and limitations of TPVTrack, including effective representation of spatial shape and reduced false positive associations in time. Tracked TPVs in more realistic historical conditions are consistent in bulk with expectations of life cycle and mean structure. Individual tracks are less reliable when discriminating among multiple overlaps. Modifications to track other physical features are possible, with each application requiring evaluation.
机译:描述了一个新的免费模块化软件包,用于自然地跟踪结构化或非结构化网格上的对流层顶极涡(TPV)。 TPVTrack受现有方法中空间表征和时间跟踪的限制的启发,模拟了TPV的预期动态,以表示其(1)具有可变形状和强度的空间结构以及(2)具有合并和分裂的时间演化。 TPV从对流层顶上的网格流场分割为空间对象,作为对流层顶上的受限区域分水岭盆地,由几何度量描述,随着时间的推移通过重叠相似度关联为主要和次要对应关系,并沿主要对应关系进行跟踪。简化的细分和对应测试用例说明了TPVTrack的某些吸引力,敏感性和局限性,包括有效表示空间形状和减少时间上的假阳性关联。在更现实的历史条件下跟踪的TPV总体上与预期的生命周期和平均结构保持一致。区分多个重叠时,单个轨道的可靠性较差。跟踪其他物理特征的修改是可能的,每个应用都需要评估。

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