DocumentCode
1944353
Title
Using potential theory and dense texture-based visualization for external motion applications
Author
Taponecco, Francesca
Author_Institution
Dept. of Comput. Sci., Darmstadt Univ. of Technol.
Volume
2
fYear
2005
fDate
28-30 Nov. 2005
Firstpage
426
Lastpage
431
Abstract
We propose a novel methodology that uses potential theory and a texture-based algorithm to produce dense smooth visualization of steady and unsteady flow fields. Given a chosen pattern, the flow field expression $potentially varying over time - determines how it has to be adapted and controlled locally to generate a dense visualization. We use this methodology for the visualization of external motion, and give a practical solution for special application cases. External motion is intended to describe the motion of a fluid around an object, or, similarly, the motion of an object immersed in a still fluid. This approach is general and produces flow visualization in an intuitive and straightforward way. User intervention and degrees of freedom are offered as well. Significant applications can be found in many scientific areas, including engineering in general, physics, magnetisms, aero- and fluid dynamics, medical visualization and meteorology. Relevant examples are the study of wind interaction against buildings, air about airfoils, water around bridge piers
Keywords
computational fluid dynamics; data visualisation; flow visualisation; image texture; dense texture-based visualization; external motion application; flow field expression; flow visualization; potential theory; Application software; Automotive components; Bridges; Computational modeling; Fluid dynamics; Fluid flow control; Motion analysis; Physics; Vehicles; Visualization;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence for Modelling, Control and Automation, 2005 and International Conference on Intelligent Agents, Web Technologies and Internet Commerce, International Conference on
Conference_Location
Vienna
Print_ISBN
0-7695-2504-0
Type
conf
DOI
10.1109/CIMCA.2005.1631506
Filename
1631506
Link To Document