DocumentCode
832228
Title
Analyzing Vortex Breakdown Flow Structures by Assignment of Colors to Tensor Invariants
Author
Rutten, M. ; Chong, M.S.
Author_Institution
German Aerosp. Center
Volume
12
Issue
5
fYear
2006
Firstpage
1189
Lastpage
1196
Abstract
Topological methods are often used to describe flow structures in fluid dynamics and topological flow field analysis usually relies on the invariants of the associated tensor fields. A visual impression of the local properties of tensor fields is often complex and the search of a suitable technique for achieving this is an ongoing topic in visualization. This paper introduces and assesses a method of representing the topological properties of tensor fields and their respective flow patterns with the use of colors. First, a tensor norm is introduced, which preserves the properties of the tensor and assigns the tensor invariants to values of the RGB color space. Secondly, the RGB colors of the tensor invariants are transferred to corresponding hue values as an alternative color representation. The vectorial tensor invariants field is reduced to a scalar hue field and visualization of iso-surfaces of this hue value field allows us to identify locations with equivalent flow topology. Additionally highlighting by the maximum of the eigenvalue difference field reflects the magnitude of the structural change of the flow. The method is applied on a vortex breakdown flow structure inside a cylinder with a rotating lid
Keywords
flow visualisation; pattern formation; vortices; associated tensor fields; equivalent flow topology; flow patterns; flow visualization; fluid dynamics; red-green-blue color space; rotating lid; tensor norm; topological flow field analysis; vectorial tensor invariants field; vortex breakdown flow structures; Aerodynamics; Australia; Color; Data visualization; Eigenvalues and eigenfunctions; Electric breakdown; Fluid dynamics; Information analysis; Tensile stress; Topology; Flow visualization; Invariants; Tensor field Topology;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2006.119
Filename
4015481
Link To Document