DocumentCode
1102559
Title
Visualization of vector fields using seed LIC and volume rendering
Author
Helgeland, Anders ; Andreassen, Oyvind
Author_Institution
Univ. Graduate Center, Kjeller, Norway
Volume
10
Issue
6
fYear
2004
Firstpage
673
Lastpage
682
Abstract
Line integral convolution (LIC) is a powerful texture-based technique for visualizing vector fields. Due to the high computational expense of generating 3D textures and the difficulties of effectively displaying the result, LIC has most commonly been used to depict vector fields in 2D or over a surface in 3D. We propose new methods for more effective volume visualization of three-dimensional vector fields using LIC: 1) we present a fast method for computing volume LIC textures that exploits the sparsity of the input texture. 2) We propose the use of a shading technique, called limb darkening, to reveal the depth relations among the field lines. The shading effect is obtained simply by using appropriate transfer functions and, therefore, avoids using expensive shading techniques. 3) We demonstrate how two-field visualization techniques can be used to enhance the visual information describing a vector field. The volume LIC textures are rendered using texture-based rendering techniques, which allows interactive exploration of a vector field.
Keywords
convolution; data visualisation; image texture; rendering (computer graphics); transfer functions; 3D textures; limb darkening; multifield visualization; seed line integral convolution; shading technique; transfer functions; vector field visualization; visual information; volume rendering; Computer displays; Convolution; Data visualization; Electromagnetic fields; Fluid flow; Image generation; Numerical simulation; Streaming media; Surface texture; Transfer functions; 65; Index Terms- Vector field visualization; direct volume rendering; line integral convolution; multifield visualization.;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2004.49
Filename
1333665
Link To Document