DocumentCode
3351180
Title
Buckling Analysis of Wind Turbine Blade Using Pressure Distributions Obtained from CFD
Author
Liu, Wei ; Ma, Yuli ; Su, Xianyue ; Huang, Kefu
Author_Institution
Dept. of Mech. & Aerosp. Eng., Peking Univ., Beijing
fYear
2009
fDate
27-31 March 2009
Firstpage
1
Lastpage
4
Abstract
Buckling analysis of a rotating wind turbine blade using FEM(finite element method) is presented here. This study is distinct from its counterparts in adopting the pressure distributions obtained from CFD(computational fluid dynamics) calculations to perform the buckling analysis. A code is developed to feed those pressure distributions into the FE(finite element) model of the blade. Through the analysis, load factors and buckling shapes of the first four buckling modes of the blade under six different wind speeds are computed. Buckling analysis of the blade with the reduced pressure distributions adopted in an open literature has also been performed in this paper and the results are compared with present analysis. It is concluded that CFD techniques can effectively predict the load characteristics of wind turbines and it is reasonable to employ pressure distributions obtained from CFD calculations as load conditions to perform buckling analysis or other structural analysis of wind turbine blades, while the reduced pressure distributions can not reflect the inherent stall phenomena because of its artificial assumptions and it should be abandoned in the design of future wind turbines.
Keywords
buckling; computational fluid dynamics; finite element analysis; wind turbines; CFD; FEM; buckling analysis; computational fluid dynamics; finite element method; load factors; pressure distributions; structural to analysis; wind turbine blade; Blades; Computational fluid dynamics; Finite element methods; Fluid dynamics; Performance analysis; Shape; Structural shells; Wind energy; Wind speed; Wind turbines;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Energy Engineering Conference, 2009. APPEEC 2009. Asia-Pacific
Conference_Location
Wuhan
Print_ISBN
978-1-4244-2486-3
Electronic_ISBN
978-1-4244-2487-0
Type
conf
DOI
10.1109/APPEEC.2009.4918208
Filename
4918208
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