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Vortex and Strain Skeletons in Eulerian and Lagrangian Frames

机译:欧拉和拉格朗日框架中的涡旋和应变骨架

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We present an approach to analyze mixing in flow fields by extracting vortex and strain features as extremal structures of derived scalar quantities that satisfy a duality property: they indicate vortical as well as high-strain (saddletype) regions. Specifically, we consider the Okubo-Weiss criterion and the recently introduced MZ-criterion. While the first is derived from a purely Eulerian framework, the latter is based on Lagrangian considerations. In both cases high values indicate vortex activity whereas low values indicate regions of high strain. By considering the extremal features of those quantities, we define the notions of a vortex and a strain skeleton in a hierarchical manner: the collection of maximal 0D, 1D and 2D structures assemble the vortex skeleton; the minimal structures identify the strain skeleton. We extract those features using scalar field topology and apply our method to a number of steady and unsteady 3D flow fields.
机译:我们提出了一种通过提取涡旋和应变特征来分析流场中混合的方法,这些特征是满足双重性的派生标量的极值结构:它们指示涡旋以及高应变(鞍形)区域。具体来说,我们考虑了Okubo-Weiss准则和最近引入的MZ标准。尽管第一个是从纯欧拉框架派生的,但后者是基于拉格朗日考虑的。在这两种情况下,高值表示涡旋活动,而低值表示高应变区域。通过考虑这些量的极值特征,我们以分层的方式定义了涡旋和应变骨架的概念:最大的0D,1D和2D结构的集合组装了涡旋骨架;最小的结构确定了应变骨架。我们使用标量场拓扑提取这些特征,并将我们的方法应用于许多稳定和不稳定的3D流场。

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