DocumentCode :
57248
Title :
Visualization and Analysis of Vortex-Turbine Intersections in Wind Farms
Author :
Shafii, S. ; Obermaier, Henriette ; Linn, R. ; Eunmo Koo ; Hlawitschka, M. ; Garth, Christoph ; Hamann, Bernd ; Joy, Kenneth I.
Author_Institution :
Dept. of Comput. Sci., Univ. of California, Davis, Davis, CA, USA
Volume :
19
Issue :
9
fYear :
2013
fDate :
Sept. 2013
Firstpage :
1579
Lastpage :
1591
Abstract :
Characterizing the interplay between the vortices and forces acting on a wind turbine´s blades in a qualitative and quantitative way holds the potential for significantly improving large wind turbine design. This paper introduces an integrated pipeline for highly effective wind and force field analysis and visualization. We extract vortices induced by a turbine´s rotation in a wind field, and characterize vortices in conjunction with numerically simulated forces on the blade surfaces as these vortices strike another turbine´s blades downstream. The scientifically relevant issue to be studied is the relationship between the extracted, approximate locations on the blades where vortices strike the blades and the forces that exist in those locations. This integrated approach is used to detect and analyze turbulent flow that causes local impact on the wind turbine blade structure. The results that we present are based on analyzing the wind and force field data sets generated by numerical simulations, and allow domain scientists to relate vortex-blade interactions with power output loss in turbines and turbine life expectancy. Our methods have the potential to improve turbine design to save costs related to turbine operation and maintenance.
Keywords :
blades; flow simulation; flow visualisation; numerical analysis; turbulence; vortices; wind turbines; blade surface; force field analysis; force field visualization; numerical simulation; turbine rotation; turbulent flow; vortex-turbine intersection analysis; vortex-turbine intersection visualization; wind farms; wind field analysis; wind field visualization; wind turbine blade structure; Blades; Data visualization; Feature extraction; Force; Geometry; Wind turbines; Flow visualization; applications; turbulence; vortices; wind energy;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2013.18
Filename :
6461884
Link To Document :
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