DocumentCode
793772
Title
Lagrangian-Eulerian advection of noise and dye textures for unsteady flow visualization
Author
Jobard, Bruno ; Erlebacher, Gordon ; Hussaini, M. Yousuff
Author_Institution
Swiss Centerfor Sci. Comput., Mano, Switzerland
Volume
8
Issue
3
fYear
2002
Firstpage
211
Lastpage
222
Abstract
A new hybrid scheme, called Lagrangian-Eulerian advection (LEA), that combines the advantages of the Eulerian and Lagrangian frameworks is applied to the visualization of dense representations of time-dependent vector fields. The algorithm encodes the particles into a texture that is then advected. By treating every particle equally, we can handle texture advection and dye advection within a single framework. High temporal and spatial correlation is achieved through the blending of successive frames. A combination of particle and dye advection enables the simultaneous visualization of streamlines, particle paths and streak-lines. We demonstrate various experimental techniques on several physical flow fields. The simplicity of both the resulting data structures and the implementation suggest that LEA could become a useful component of any scientific visualization toolkit concerned with the display of unsteady flows.
Keywords
computational fluid dynamics; convection; data visualisation; dyes; flow visualisation; image texture; noise; spatial data structures; Lagrangian-Eulerian advection; data structures; dense representations; dye advection; dye textures; flow display; frame blending; noise textures; particle encoding; particle paths; scientific visualization; spatial correlation; streak-lines; streamlines; temporal correlation; texture advection; time-dependent vector fields; unsteady flow fields; unsteady flow visualization; Capacitive sensors; Data mining; Data structures; Data visualization; Displays; Facial animation; Laboratories; Lagrangian functions; Pixel; Tensile stress;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2002.1021575
Filename
1021575
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