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Representation and display of vector field topology in fluid flow data sets

机译:流体数据集中矢量场拓扑的表示和显示

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摘要

The visualization of physical processes in general and of vector fields in particular is discussed. An approach to visualizing flow topology that is based on the physics and mathematics underlying the physical phenomenon is presented. It involves determining critical points in the flow where the velocity vector vanishes. The critical points, connected by principal lines or planes, determine the topology of the flow. The complexity of the data is reduced without sacrificing the quantitative nature of the data set. By reducing the original vector field to a set of critical points and their connections, a representation of the topology of a two-dimensional vector field is much smaller than the original data set but retains with full precision the information pertinent to the flow topology is obtained. This representation can be displayed as a set of points and tangent curves or as a graph. Analysis (including algorithms), display, interaction, and implementation aspects are discussed.
机译:讨论了一般物理过程的可视化,尤其是矢量场的可视化。提出了一种可视化流动拓扑的方法,该方法基于物理现象背后的物理和数学。它涉及确定流中速度矢量消失的临界点。通过主线或平面连接的临界点确定了流的拓扑。在不牺牲数据集的定量性质的情况下,降低了数据的复杂性。通过将原始矢量场简化为一组关键点及其连接,二维矢量场的拓扑表示比原始数据集小得多,但可以完全保留与流拓扑有关的信息。 。该表示可以显示为一组点和切线曲线或图形。讨论了分析(包括算法),显示,交互和实现方面。

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