Title of article
Stall Flutter Control of a Smart Blade Section Undergoing Asymmetric Limit Oscillations
Author/Authors
Li,Nailu School of Hydraulic - Energy and Power Engineering - Yangzhou University, China , Balas, Mark J. Aerospace Engineering Department - Embry-Riddle Aeronautical University, USA , Nikoueeyan, Pourya Wind Energy Center - University of Wyoming, Laramie, USA , Yang,Hua School of Hydraulic - Energy and Power Engineering - Yangzhou University, China , Naughton, Jonathan W. Wind Energy Center - University of Wyoming, Laramie, USA
Pages
15
From page
1
To page
15
Abstract
Stall flutter is an aeroelastic phenomenon resulting in unwanted oscillatory loads on the blade, such as wind turbine blade, helicopter rotor blade, and other flexible wing blades. Although the stall flutter and related aeroelastic control have been studied theoretically and experimentally, microtab control of asymmetric limit cycle oscillations (LCOs) in stall flutter cases has not been generally investigated. This paper presents an aeroservoelastic model to study the microtab control of the blade section undergoing moderate stall flutter and deep stall flutter separately. The effects of different dynamic stall conditions and the consequent asymmetric LCOs for both stall cases are simulated and analyzed. Then, for the design of the stall flutter controller, the potential sensor signal for the stall flutter, the microtab control capability of the stall flutter, and the control algorithm for the stall flutter are studied. The improvement and the superiority of the proposed adaptive stall flutter controller are shown by comparison with a simple stall flutter controller.
Keywords
Stall Flutter Control , Smart Blade Section , Undergoing Asymmetric Limit Oscillations
Journal title
Shock and Vibration
Serial Year
2016
Full Text URL
Record number
2616372
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