DocumentCode
1158188
Title
Simulation model of wind turbine 3p torque oscillations due to wind shear and tower shadow
Author
Dolan, Dale S L ; Lehn, Peter W.
Author_Institution
Dept. of Electr. & Comput. Eng., Toronto Univ., Ont.
Volume
21
Issue
3
fYear
2006
Firstpage
717
Lastpage
724
Abstract
To determine the control structures and possible power quality issues, the dynamic torque generated by the blades of a wind turbine must be represented. This paper presents an analytical formulation of the generated aerodynamic torque of a three-bladed wind turbine including the effects of wind shear and tower shadow. The comprehensive model includes turbine-specific parameters such as radius, height, and tower dimensions, as well as the site-specific parameter, the wind shear exponent. The model proves the existence of a 3p pulsation due to wind shear and explains why it cannot be easily identified in field measurements. The proportionality constant between the torque and the wind speed is determined allowing direct aerodynamic torque calculation from an equivalent wind speed. It is shown that the tower shadow effect is more dominant than the wind shear effect in determining the dynamic torque, although there is a small dc reduction in the torque oscillation due to wind shear. The model is suitable for real-time wind turbine simulation or other time domain simulation of wind turbines in power systems
Keywords
aerodynamics; blades; oscillations; poles and towers; torque; wind turbines; 3p pulsation; 3p torque oscillations; aerodynamic torque; control structures; dynamic torque; equivalent wind speed; field measurement; power quality issues; three-bladed wind turbine; time domain simulation; torque oscillation reduction; tower shadow; wind shear; Aerodynamics; Poles and towers; Power quality; Power system dynamics; Power system modeling; Power system simulation; Torque control; Wind energy generation; Wind speed; Wind turbines; Real-time digital simulation; simulation model; torque oscillations; tower shadow; wind shear; wind turbine;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/TEC.2006.874211
Filename
1677662
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