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TempestExtremes v2.1: a community framework for feature detection, tracking, and analysis in large datasets

机译:Tempestextremes v2.1:在大型数据集中的特征检测,跟踪和分析的社区框架

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TempestExtremes (TE) is a multifaceted framework for feature detection, tracking, and scientific analysis of regional or global Earth system datasets on either rectilinear or unstructured/native grids. Version?2.1 of the TE framework now provides extensive support for examining both nodal (i.e., pointwise) and areal features, including tropical and extratropical cyclones, monsoonal lows and depressions, atmospheric rivers, atmospheric blocking, precipitation clusters, and heat waves. Available operations include nodal and areal thresholding, calculations of quantities related to nodal features such as accumulated cyclone energy and azimuthal wind profiles, filtering data based on the characteristics of nodal features, and stereographic compositing. This paper describes the core algorithms (kernels) that have been added to the TE framework since version 1.0, including algorithms for editing pointwise trajectory files, composition of fields around nodal features, generation of areal masks via thresholding and nodal features, and tracking of areal features in time. Several examples are provided of how these kernels can be combined to produce composite algorithms for evaluating and understanding common atmospheric features and their underlying processes. These examples include analyzing the fraction of precipitation from tropical cyclones, compositing meteorological fields around extratropical cyclones, calculating fractional contribution to poleward vapor transport from atmospheric rivers, and building a climatology of atmospheric blocks.
机译:Tempestextremes(TE)是一个多方面的框架,用于在直线或非结构化/天然网格上的区域或全球地球系统数据集的特征检测,跟踪和科学分析。版本?2.1 TE Framework现在提供了广泛的支持,用于检查节点(即,点)和区域特征,包括热带和鞋面旋风,季风低点和凹陷,大气河流,大气阻挡,降水簇和热波。可用操作包括节点和区域阈值,计算与节点特征(如累积旋风能量和方位角风谱相关的数量计算),基于节点特征的特征过滤数据和立体合成。本文介绍了自版本1.0以来已添加到TE框架中的核心算法(内核),包括用于编辑点轨迹文件的算法,节点特征周围的字段的构成,通过阈值和节点特征生成面部掩模,以及跟踪区域特点及时。提供了几个例子,这些内核如何组合,以产生用于评估和理解常见的大气特征及其底层过程的复合算法。这些实例包括分析热带气旋的沉淀分数,在潜水旋风区周围合成气象场,从大气河流中计算分数贡献,并建立大气块的气候学。

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