DocumentCode :
2184190
Title :
Vorticity based flow analysis and visualization for Pelton turbine design optimization
Author :
Sadlo, Filip ; Peikert, Ronald ; Parkinson, Etienne
Author_Institution :
Comput. Sci. Dept., Eidgenossische Tech. Hochschule, Zurich, Switzerland
fYear :
2004
fDate :
10-15 Oct. 2004
Firstpage :
179
Lastpage :
186
Abstract :
Vorticity is the quantity used to describe the creation, transformation and extinction of vortices. It is present not only in vortices but also in shear flow. Especially in ducted flows, most of the overall vorticity is usually contained in the boundary layer. When a vortex develops from the boundary layer, this can be described by transport of vorticity. For a better understanding of a flow it is therefore of interest to examine vorticity in all of its different roles. The goal of this application study was not primarily the visualization of vortices but of vorticity distribution and its role in vortex phenomena. The underlying industrial case is a design optimization for a Pelton turbine. An important industrial objective is to improve the quality of the water jets driving the runner. Jet quality is affected mostly by vortices originating in the distributor ring. For a better understanding of this interrelation, it is crucial to not only visualize these vortices but also to analyze the mechanisms of their creation. We used various techniques for the visualization of vorticity, including field lines and modified isosurfaces. For field line based visualization, we extended the image-guided streamline placement algorithm of Turk and Banks to data-guided field line placement on three-dimensional unstructured grids.
Keywords :
computational fluid dynamics; data visualisation; feature extraction; flow visualisation; hydraulic turbines; jets; mechanical engineering computing; vortices; Pelton turbine design optimization; boundary layer; feature extraction; field line based visualization; flow visualization; image-guided streamline placement algorithm; vorticity based flow analysis; water jets; Application software; Chromium; Computer graphics; Design optimization; Hydraulic turbines; Image processing; Isosurfaces; Shape; Streaming media; Visualization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Visualization, 2004. IEEE
Print_ISBN :
0-7803-8788-0
Type :
conf
DOI :
10.1109/VISUAL.2004.128
Filename :
1372195
Link To Document :
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