We describe procedures for the multi-disciplinary design optimization of wind turbines, where design parameters are optimized by maximizing a merit function, subjected to constraints that translate all relevant design requirements. Evaluation of merit function and constraints is performed by running simulations with a parametric high-fidelity aeroservo- elastic model; a detailed cross-sectional structural model is used for the minimum weight constrained sizing of the rotor blade. To reduce the computational cost, the multidisciplinary optimization is performed by a multi-stage process that first alternates between an aerodynamic shape optimization step and a structural blade optimization one, and then combines the two to yield the final opt...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
Within the last 20 years, wind turbines have reached matured and the growingworldwide wind energy ma...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
We describe procedures for the multi-disciplinary design optimization of wind turbines, where design...
We describe procedures for the multi-disciplinary design optimization of wind turbines using high-fi...
We describe procedures for the multi-disciplinary design optimization of wind turbines, where design...
The present work describes methods for the integrated aero-structural optimization of wind turbines....
Currently, the design approach in the wind industry is to perform sequential optimization of differe...
The present work describes a method for the structural optimization of wind turbine rotor blades for...
Efficient extraction of wind energy is a complex, multidisciplinary process. This paper examines com...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2003.In...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
Modern and larger horizontal-axis wind turbines with power capacity reaching 15 MW and rotors of mor...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
Within the last 20 years, wind turbines have reached matured and the growingworldwide wind energy ma...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
We describe procedures for the multi-disciplinary design optimization of wind turbines, where design...
We describe procedures for the multi-disciplinary design optimization of wind turbines using high-fi...
We describe procedures for the multi-disciplinary design optimization of wind turbines, where design...
The present work describes methods for the integrated aero-structural optimization of wind turbines....
Currently, the design approach in the wind industry is to perform sequential optimization of differe...
The present work describes a method for the structural optimization of wind turbine rotor blades for...
Efficient extraction of wind energy is a complex, multidisciplinary process. This paper examines com...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2003.In...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
Modern and larger horizontal-axis wind turbines with power capacity reaching 15 MW and rotors of mor...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
Within the last 20 years, wind turbines have reached matured and the growingworldwide wind energy ma...
Due to copyright restrictions, the access to the full text of this article is only available via sub...