DocumentCode :
1497703
Title :
Geometric Quantification of Features in Large Flow Fields
Author :
Kendall, Wesley ; Huang, Jian ; Peterka, Tom
Author_Institution :
University of Tennessee, Knoxville
Volume :
32
Issue :
4
fYear :
2012
Firstpage :
46
Lastpage :
54
Abstract :
Interactive exploration of flow features in large-scale 3D unsteady-flow data is one of the most challenging visualization problems today. To comprehensively explore the complex feature spaces in these datasets, a proposed system employs a scalable framework for investigating a multitude of characteristics from traced field lines. This capability supports the examination of various neighborhood-based geometric attributes in concert with other scalar quantities. Such an analysis wasn´t previously possible because of the large computational overhead and I/O requirements. The system integrates visual analytics methods by letting users procedurally and interactively describe and extract high-level flow features. An exploration of various phenomena in a large global ocean-modeling simulation demonstrates the approach´s generality and expressiveness as well as its efficacy.
Keywords :
Feature extraction; Geometry; Large-scale systems; Three dimensional displays; Visual analytics; Visualization; Feature extraction; Geometry; Large-scale systems; Ocean temperature; Pipelines; Three dimensional displays; Tornadoes; Visual analytics; Visualization; computer graphics; feature extraction; geometric flow analysis; large-scale data analysis; parallel I/O; particle tracing;
fLanguage :
English
Journal_Title :
Computer Graphics and Applications, IEEE
Publisher :
ieee
ISSN :
0272-1716
Type :
jour
DOI :
10.1109/MCG.2012.49
Filename :
6185526
Link To Document :
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