DocumentCode
1365440
Title
Two-Dimensional Time-Dependent Vortex Regions Based on the Acceleration Magnitude
Author
Kasten, Jens ; Reininghaus, Jan ; Hotz, Ingrid ; Hege, Hans-Christian
Author_Institution
Zuse Inst. Berlin, Berlin, Germany
Volume
17
Issue
12
fYear
2011
Firstpage
2080
Lastpage
2087
Abstract
Acceleration is a fundamental quantity of flow fields that captures Galilean invariant properties of particle motion. Considering the magnitude of this field, minima represent characteristic structures of the flow that can be classified as saddle- or vortex-like. We made the interesting observation that vortex-like minima are enclosed by particularly pronounced ridges. This makes it possible to define boundaries of vortex regions in a parameter-free way. Utilizing scalar field topology, a robust algorithm can be designed to extract such boundaries. They can be arbitrarily shaped. An efficient tracking algorithm allows us to display the temporal evolution of vortices. Various vortex models are used to evaluate the method. We apply our method to two-dimensional model systems from computational fluid dynamics and compare the results to those arising from existing definitions.
Keywords
computational fluid dynamics; vortices; Galilean invariant property; acceleration magnitude; computational fluid dynamics; flow field; particle motion; scalar field topology; two-dimensional model system; two-dimensional time-dependent vortex region; vortex model; vortex-like minima; vortices temporal evolution; Feature extraction; Flow visualization; Navier-Stokes equations; Shape analysis; Topology; Vortex regions; feature extraction.; time-dependent flow fields;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2011.249
Filename
6064972
Link To Document