Impact of Blade Flexibility on Wind Turbine Loads and Pitch Settings
Published 2018 View Full Article
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Title
Impact of Blade Flexibility on Wind Turbine Loads and Pitch Settings
Authors
Keywords
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Journal
JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME
Volume 141, Issue 4, Pages 041002
Publisher
ASME International
Online
2018-12-20
DOI
10.1115/1.4042315
References
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Related references
Note: Only part of the references are listed.- Fluid structure interaction modelling of horizontal-axis wind turbine blades based on CFD and FEA
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- Unknown
- (2016) WIND ENERGY
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- Investigation of Wake Effects on Aeroelastic Responses of Horizontal-Axis Wind-Turbines
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- Non-linear aeroelasticity: An approach to compute the response of three-blade large-scale horizontal-axis wind turbines
- (2014) C.G. Gebhardt et al. RENEWABLE ENERGY
- Predicting wind turbine blade loads and aeroelastic response using a coupled CFD–CSD method
- (2014) Dong Ok Yu et al. RENEWABLE ENERGY
- Aeroelastic investigation of a composite wind turbine blade
- (2014) Roham Rafiee et al. WIND AND STRUCTURES
- The impact of yaw error on aeroelastic characteristics of a horizontal axis wind turbine blade
- (2013) Min-Soo Jeong et al. RENEWABLE ENERGY
- Development of an anisotropic beam finite element for composite wind turbine blades in multibody system
- (2013) Taeseong Kim et al. RENEWABLE ENERGY
- Analysis of the Induction and Wake Evolution of an Offshore Floating Wind Turbine
- (2012) Thomas Sebastian et al. Energies
- Development of a free vortex wake method code for offshore floating wind turbines
- (2012) T. Sebastian et al. RENEWABLE ENERGY
- Numerical analysis on the aerodynamics of HAWTs using nonlinear vortex strength correction
- (2009) Hogeon Kim et al. CURRENT APPLIED PHYSICS
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