DocumentCode
2184247
Title
A graphics hardware-based vortex detection and visualization system
Author
Stegmaier, Simon ; Ertl, Thomas
Author_Institution
Inst. of Visualization & Interactive Syst., Stuttgart Univ., Germany
fYear
2004
fDate
10-15 Oct. 2004
Firstpage
195
Lastpage
202
Abstract
Feature detection in flow fields is a well-researched area, but practical application is often difficult due to the numerical complexity of the algorithms preventing interactive use and due to noise in experimental or high-resolution simulation data sets. We present an integrated system that provides interactive denoising, vortex detection, and visualisation of vector data on Cartesian grids. All three major phases are implemented in such a way that the system runs completely on a modern GPU once the vector field is downloaded into graphics memory. The application aspect of our paper is twofold. First, we show how recently presented, prototypical GPU-based algorithms for filtering, numerical computation, and volume rendering can be combined into one productive system by handling all idiosyncrasies of a chosen graphics card. Second, we demonstrate that the significant speedup achieved compared to an optimized software implementation now allows interactive exploration of characteristic structures in turbulent flow fields.
Keywords
computational fluid dynamics; data visualisation; feature extraction; flow simulation; flow visualisation; image denoising; interactive systems; rendering (computer graphics); turbulence; vortices; 3D vector field visualization; Cartesian grids; feature detection; flow visualization system; graphics hardware-based vortex detection; interactive denoising; numerical flow simulation; turbulent flow fields; volume rendering; Analytical models; Band pass filters; Computational modeling; Computer graphics; Computer vision; Data mining; Data visualization; Filtering; Noise reduction; Numerical simulation;
fLanguage
English
Publisher
ieee
Conference_Titel
Visualization, 2004. IEEE
Print_ISBN
0-7803-8788-0
Type
conf
DOI
10.1109/VISUAL.2004.3
Filename
1372197
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