DocumentCode
1365134
Title
Visualizing Flow Trajectories Using Locality-based Rendering and Warped Curve Plots
Author
Jones, Chad ; Ma, Kwan-Liu
Author_Institution
Univ. of California, Davis, CA, USA
Volume
16
Issue
6
fYear
2010
Firstpage
1587
Lastpage
1594
Abstract
In flow simulations the behavior and properties of particle trajectories often depend on the physical geometry contained in the simulated environment. Understanding the flow in and around the geometry itself is an important part of analyzing the data. Previous work has often utilized focus+context rendering techniques, with an emphasis on showing trajectories while simplifying or illustratively rendering the physical areas. Our research instead emphasizes the local relationship between particle paths and geometry by using a projected multi-field visualization technique. The correlation between a particle path and its surrounding area is calculated on-the-fly and displayed in a non-intrusive manner. In addition, we support visual exploration and comparative analysis through the use of linked information visualization, such as manipulatable curve plots and one-on-one similarity plots. Our technique is demonstrated on particle trajectories from a groundwater simulation and a computer room airflow simulation, where the flow of particles is highly influenced by the dense geometry.
Keywords
computational geometry; curve fitting; data visualisation; flow simulation; rendering (computer graphics); computer room airflow simulation; data analysis; dense geometry; flow trajectory visualization; groundwater simulation; linked information visualization; locality-based rendering; manipulatable curve plot; multifield visualization; particle path; particle trajectory; similarity plot; visual exploration; warped curve plot; Context; Data visualization; Geometry; Image color analysis; Rendering (computer graphics); Solids; Trajectory; coordinated linked views; flow visualization; focus+context visualization; multi-field visualization;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2010.218
Filename
5613501
Link To Document