DocumentCode :
76291
Title :
Image-Space Texture-Based Output-Coherent Surface Flow Visualization
Author :
Jin Huang ; Zherong Pan ; Guoning Chen ; Wei Chen ; Hujun Bao
Author_Institution :
State Key Lab. of CAD & CG, Zhejiang Univ., Hangzhou, China
Volume :
19
Issue :
9
fYear :
2013
fDate :
Sept. 2013
Firstpage :
1476
Lastpage :
1487
Abstract :
Image-space line integral convolution (LIC) is a popular scheme for visualizing surface vector fields due to its simplicity and high efficiency. To avoid inconsistencies or color blur during the user interactions, existing approaches employ surface parameterization or 3D volume texture schemes. However, they often require expensive computation or memory cost, and cannot achieve consistent results in terms of both the granularity and color distribution on different scales. This paper introduces a novel image-space surface flow visualization approach that preserves the coherence during user interactions. To make the noise texture under different viewpoints coherent, we propose to precompute a sequence of mipmap noise textures in a coarse-to-fine manner for consistent transition, and map the textures onto each triangle with randomly assigned and constant texture coordinates. Further, a standard image-space LIC is performed to generate the flow texture. The proposed approach is simple and GPU-friendly, and can be easily combined with various texture-based flow visualization techniques. By leveraging viewpoint-dependent backward tracing and mipmap noise phase, our method can be incorporated with the image-based flow visualization (IBFV) technique for coherent visualization of unsteady flows. We demonstrate consistent and highly efficient flow visualization on a variety of data sets.
Keywords :
computational fluid dynamics; convolution; flow visualisation; graphical user interfaces; human computer interaction; image sequences; image texture; GPU-friendly approach; IBFV technique; coherence preservation; color blur avoidance; consistent transition; constant texture coordinates; flow texture generation; image-based flow visualization technique; image-space line integral convolution; image-space surface flow visualization; image-space texture; inconsistency avoidance; mipmap noise phase; mipmap noise texture sequence; output-coherent surface flow visualization; randomly assigned coordinates; standard image-space LIC; surface vector field visualization; unsteady flows; user interactions; viewpoint-dependent backward tracing; Colored noise; Image color analysis; Image resolution; Surface texture; Vectors; Visualization; Flow visualization; IBFV; LIC; mipmap; surface flows; unsteady flows;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2013.62
Filename :
6472236
Link To Document :
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