We describe a probabilistic approach to design airfoils for wind energy applications. An analytical expression is derived for the probability of perturbations to the operational blade-section angle of attack. It includes the combined influence of wind shear, yaw-misalignment, and turbulence intensity. The theoretical fluctuations in angle of attack are validated against an aero-structural simulation of a 10 MW horizontal axis wind turbine, operating under different inflow conditions. Finally we incorporate the probabilistic approach into a multi-objective airfoil optimization problem, which is solved with a genetic algorithm. The results illustrate the compromise between airfoil performance for a specific angle of attack and robustness of a...
ii Two important criteria for wind turbine performance are the power coefficient, defined as the por...
Optimization of 10.6m diameter, constant speed and stall regulated horizontal axis wind turbine was ...
This paper presents different approaches to optimize wind turbine airfoils in an uncertain scenario....
This work follows the wind energy airfoil probabilistic design approach that allows to derive a prob...
This work presents an airfoil probabilistic design methodology for wind energy applications, using a...
Presented is a robust optimization strategy for the aerodynamic design of horizontal axis wind turbi...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
This study focuses on the robust aerodynamic design of the bladed rotor of small horizontal axis win...
The performance of wind turbines can be negatively affected by the presence of uncertainties. We intr...
Wind turbine design optimization is typically performed considering a given wind distribution. Howev...
Small wind turbines are gaining popularity due to their ability to meet community or domestic needs...
2016-06-23This dissertation is motivated by challenges involved in the design optimization under unc...
The primary goal of this work is to reflect the effectiveness of the aerodynamic characteristics of ...
ii Two important criteria for wind turbine performance are the power coefficient, defined as the por...
Optimization of 10.6m diameter, constant speed and stall regulated horizontal axis wind turbine was ...
This paper presents different approaches to optimize wind turbine airfoils in an uncertain scenario....
This work follows the wind energy airfoil probabilistic design approach that allows to derive a prob...
This work presents an airfoil probabilistic design methodology for wind energy applications, using a...
Presented is a robust optimization strategy for the aerodynamic design of horizontal axis wind turbi...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
The work reported in this paper deals with the development of a design system for the robust aerodyn...
This study focuses on the robust aerodynamic design of the bladed rotor of small horizontal axis win...
The performance of wind turbines can be negatively affected by the presence of uncertainties. We intr...
Wind turbine design optimization is typically performed considering a given wind distribution. Howev...
Small wind turbines are gaining popularity due to their ability to meet community or domestic needs...
2016-06-23This dissertation is motivated by challenges involved in the design optimization under unc...
The primary goal of this work is to reflect the effectiveness of the aerodynamic characteristics of ...
ii Two important criteria for wind turbine performance are the power coefficient, defined as the por...
Optimization of 10.6m diameter, constant speed and stall regulated horizontal axis wind turbine was ...
This paper presents different approaches to optimize wind turbine airfoils in an uncertain scenario....