In the past years, the consumption of energy produced by wind turbines had an exponential growth. This requirement gave momentum to the development of larger turbines with the goal of producing more energy at the same site, reducing the initial investment, and the operation and maintenance costs. In order to achieve this objective, longer, lighter, maintenance-free blades are required so that smaller loads are transferred to the other, more expensive, wind turbine components. The resulting larger flexibility, imposes new challenges to the blade and controller designs; henceforth, new concepts are being developed to add more intelligence into these systems. During the last few years, the electronics industry had invested resources into the r...
The mechanics of aeroelastic instabilities is particularly important in relation to the next generat...
This paper investigates the dynamic load alleviation in large and flexible horizontal axis wind turb...
Active distributed aerodynamic control for load reduction on wind turbine blades is an innovative co...
This thesis investigates particular concepts and technologies that can alleviate fatigue loads on wi...
This study aims to design several types of aerodynamic control devices using smart material actuator...
Wind turbines suffer heavily from fatigue loads but current load control concepts are not effective ...
This paper presents an aeroservoelastic modeling approach to investigate dynamic load alleviation in...
A smart active vibration control (AVC) system containing piezoelectric (PZT) actuators, jointly with...
Future horizontal axial wind turbines that approach the 10MW capacity will have a rotor diameter som...
Exploiting the properties of piezoelectric materials to minimize vibration in rotor-blade actuators,...
In times when aircraft are becoming lighter and faster, the problem areas of aeroelasticity are also...
ABSTRACT: The applicability and effectiveness of three novel piezoelectric coiled bender actuators t...
The load reduction of the wind turbine through the use of flaps actuated through novel mechanical ne...
With the increasing size and complexity of wind turbines, also the risk of failure of a crucial comp...
The largest commercial wind turbines today are rated at powers between 12 MW to 16 MW, with rotor di...
The mechanics of aeroelastic instabilities is particularly important in relation to the next generat...
This paper investigates the dynamic load alleviation in large and flexible horizontal axis wind turb...
Active distributed aerodynamic control for load reduction on wind turbine blades is an innovative co...
This thesis investigates particular concepts and technologies that can alleviate fatigue loads on wi...
This study aims to design several types of aerodynamic control devices using smart material actuator...
Wind turbines suffer heavily from fatigue loads but current load control concepts are not effective ...
This paper presents an aeroservoelastic modeling approach to investigate dynamic load alleviation in...
A smart active vibration control (AVC) system containing piezoelectric (PZT) actuators, jointly with...
Future horizontal axial wind turbines that approach the 10MW capacity will have a rotor diameter som...
Exploiting the properties of piezoelectric materials to minimize vibration in rotor-blade actuators,...
In times when aircraft are becoming lighter and faster, the problem areas of aeroelasticity are also...
ABSTRACT: The applicability and effectiveness of three novel piezoelectric coiled bender actuators t...
The load reduction of the wind turbine through the use of flaps actuated through novel mechanical ne...
With the increasing size and complexity of wind turbines, also the risk of failure of a crucial comp...
The largest commercial wind turbines today are rated at powers between 12 MW to 16 MW, with rotor di...
The mechanics of aeroelastic instabilities is particularly important in relation to the next generat...
This paper investigates the dynamic load alleviation in large and flexible horizontal axis wind turb...
Active distributed aerodynamic control for load reduction on wind turbine blades is an innovative co...