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Topological methods for 2D time-dependent vector fields based on stream lines and path lines

机译:基于流线和路径线的二维时间相关矢量场的拓扑方法

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This paper describes approaches to topologically segmenting 2D time-dependent vector fields. For this class of vector fields, two important classes of lines exist: stream lines and path lines. Because of this, two segmentations are possible: either concerning the behavior of stream lines or of path lines. While topological features based on stream lines are well established, we introduce path line oriented topology as a new visualization approach in this paper. As a contribution to stream line oriented topology, we introduce new methods to detect global bifurcations like saddle connections and cyclic fold bifurcations as well as a method of tracking all isolated closed stream lines. To get the path line oriented topology, we segment the vector field into areas of attracting, repelling, and saddle-like behavior of the path lines. We compare both kinds of topologies and apply them to a number of test data sets.
机译:本文介绍了对2D时间相关矢量场进行拓扑分割的方法。对于此类矢量场,存在两类重要的线:流线和路径线。因此,可能有两种分割方式:关于流线或路径线的行为。虽然已经很好地建立了基于流线的拓扑特征,但在本文中,我们介绍了面向路径线的拓扑作为一种新的可视化方法。作为对面向流线拓扑的一种贡献,我们引入了检测全局分叉(如鞍形连接和循环折叠分叉)的新方法,以及跟踪所有隔离的闭合流线的方法。为了获得面向路径线的拓扑,我们将矢量场划分为路径线的吸引,排斥和类似鞍形行为的区域。我们比较了两种拓扑,并将它们应用于许多测试数据集。

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