流图:用于流场勘探的复合分层图

Jun Ma, Chaoli Wang, Ching-Kuang Shene
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引用次数: 20

摘要

大型和复杂的三维流场的视觉探索对于理解许多主导世界上各种物理和自然现象的空气和水动力系统至关重要。在本文中,我们介绍了一种新的复合图表示形式FlowGraph,它将流线簇和空间区域分层组织,用于无遮挡和可控的视觉探索。我们的方法适用于任何播种策略,只要领域被很好地覆盖并且重要的流特征被捕获。通过将流场转换为图形表示,我们可以观察和探索转换空间中流线集群,空间区域及其相互联系之间的关系。FlowGraph不仅提供了一个可视化的映射,抽象了流线集群和空间区域的各种细节,而且还作为一个导航工具,指导流场的探索和理解。通过与空间流线视图相结合的涂刷和链接,我们展示了FlowGraph在几个视觉探索和比较任务中的有效性,这些任务不能单独使用流线视图很好地完成。由于遮挡和杂波在3D流中几乎无处不在,FlowGraph代表了一个有希望的方向,可以提高我们理解大型复杂流场数据的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FlowGraph: A compound hierarchical graph for flow field exploration
Visual exploration of large and complex 3D flow fields is critically important for understanding many aero- and hydro-dynamical systems that dominate various physical and natural phenomena in the world. In this paper, we introduce the FlowGraph, a novel compound graph representation that organizes streamline clusters and spatial regions hierarchically for occlusion-free and controllable visual exploration. Our approach works with any seeding strategies as long as the domain is well covered and important flow features are captured. By transforming a flow field to a graph representation, we enable observation and exploration of the relationships among streamline clusters, spatial regions and their interconnection in the transformed space. The FlowGraph not only provides a visual mapping that abstracts streamline clusters and spatial regions in various levels of detail, but also serves as a navigation tool that guides flow field exploration and understanding. Through brushing and linking in conjunction with the spatial streamline view, we demonstrate the effectiveness of FlowGraph with several visual exploration and comparison tasks that can not be well accomplished using the streamline view alone. As occlusion and clutter are almost ubiquitous in 3D flows, the FlowGraph represents a promising direction for enhancing our ability to understand large and complex flow field data.
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