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Vector Field Topology of Time-Dependent Flows in a Steady Reference Frame

机译:稳定参考系中时间相关流的矢量场拓扑

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The topological analysis of unsteady vector fields remains to this day one of the largest challenges in flow visualization. We build up on recent work on vortex extraction to define a time-dependent vector field topology for 2D and 3D flows. In our work, we split the vector field into two components: a vector field in which the flow becomes steady, and the remaining ambient flow that describes the motion of topological elements (such as sinks, sources and saddles) and feature curves (vortex corelines and bifurcation lines). To this end, we expand on recent local optimization approaches by modeling spatially-varying deformations through displacement transformations from continuum mechanics. We compare and discuss the relationships with existing local and integration-based topology extraction methods, showing for instance that separatrices seeded from saddles in the optimal frame align with the integration-based streakline vector field topology. In contrast to the streakline-based approach, our method gives a complete picture of the topology for every time slice, including the steps near the temporal domain boundaries. With our work it now becomes possible to extract topological information even when only few time slices are available. We demonstrate the method in several analytical and numerically-simulated flows and discuss practical aspects, limitations and opportunities for future work.
机译:到目前为止,非恒定矢量场的拓扑分析仍然是流可视化中最大的挑战之一。我们基于最新的涡旋提取工作来定义2D和3D流的时间相关矢量场拓扑。在我们的工作中,我们将向量场分为两个部分:一个向量场,在该向量场中流量变得稳定,而其余的环境流量则描述了拓扑元素(例如汇,源和鞍形)和特征曲线(涡旋核心线)的运动。和分叉线)。为此,我们通过对连续体力学进行位移变换来模拟空间变化的变形,从而扩展了最近的局部优化方法。我们比较并讨论了与现有的本地和基于集成的拓扑提取方法之间的关系,例如,表明在最佳帧中从鞍形种子中分离出的分离线与基于集成的条纹矢量场拓扑对齐。与基于条痕线的方法相比,我们的方法为每个时间片提供了完整的拓扑图,包括靠近时域边界的步骤。通过我们的工作,即使只有几个时间片可用,现在也可以提取拓扑信息。我们在几种分析和数值模拟的流程中演示了该方法,并讨论了实际方面,局限性和未来工作的机会。

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