Modification of k-ω Turbulence Model for Predicting Airfoil Aerodynamic Performance

Predicting wind turbine S825 airfoil's aerodynamic performance is crucial to improving its energy efficiency and reducing its environmental impact. In this paper, a numerical simulation on the wind turbine S825 airfoil is con- ducted with k-to turbulence model at different attack angles. By comparin...

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Veröffentlicht in:Journal of thermal science 2015-06, Vol.24 (3), p.221-228
Hauptverfasser: Peng, Bo, Yan, Hao, Fang, Hong, Wang, Ming
Format: Artikel
Sprache:eng
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Zusammenfassung:Predicting wind turbine S825 airfoil's aerodynamic performance is crucial to improving its energy efficiency and reducing its environmental impact. In this paper, a numerical simulation on the wind turbine S825 airfoil is con- ducted with k-to turbulence model at different attack angles. By comparing with experimental data, a new method of modifying k-to model is proposed. A modifying function is proposed to limit the production term in ω equation based on fluid rotation and deformation. This method improves turbulent viscosity and decreases separating re- gion when the airfoil works at large separating conditions. The predictive accuracy could be improved by using the modified k-to turbulence model.
ISSN:1003-2169
1993-033X
DOI:10.1007/s11630-015-0777-z