AbstractThis paper presents the development process of an active yaw mechanism for small wind turbine with a power of 5kw or more, which contributes to avoid wind turbines turning frequently. In this mechanism, roller bearings make a revolute joint, a DC-motor provides power for yawing and combines a self-locking worm and a reducer to give system a big transmission ratio, which give this mechanism a low yaw angular velocity and make it yaw steady and accurately. This paper is of guiding significant to improve yaw stability and accuracy, extend the working life and enhance the wind power generation efficiency
This paper discusses increasing energy capture of wind turbines by improved yaw control
This paper addresses the yawing systems of Horizontal Axis Wind Turbines (HAWT’s). HAWT’s represents...
International audienceThe characterization of wind turbines in yawed conditions is one of the most i...
AbstractThis paper presents the development process of an active yaw mechanism for small wind turbin...
Looking at the upscaling of the rotor diameter not only the loss in power production but the aerodyn...
This article first describes the yaw control method of the wind turbine, then analyzes the yaw contr...
This work proposes a cascaded braking mechanism. It consists of dynamic braking and yaw control sche...
Variability of behavior within very short time periods is typical of a wind flow. Thus, the upwind h...
Yaw angle control is known nowadays as a promising and effective technique to mitigate wake effects ...
The focus of the current paper is on a hydraulic soft yaw system, designed to reduce the loading of ...
This article qualitatively shows the yaw stability of a free-yawing downwind turbine and the ability...
A Simulink model of a 20MW multi rotor system (MRS) is built containing all the necessary detail to ...
As wind turbines increase in size, combined with increased lifetime demands, new methods for load re...
At present, using structural dynamics models is the most commonly used and effective method to simul...
In this paper, wake steering is applied to multirotor turbines to determine whether it has the poten...
This paper discusses increasing energy capture of wind turbines by improved yaw control
This paper addresses the yawing systems of Horizontal Axis Wind Turbines (HAWT’s). HAWT’s represents...
International audienceThe characterization of wind turbines in yawed conditions is one of the most i...
AbstractThis paper presents the development process of an active yaw mechanism for small wind turbin...
Looking at the upscaling of the rotor diameter not only the loss in power production but the aerodyn...
This article first describes the yaw control method of the wind turbine, then analyzes the yaw contr...
This work proposes a cascaded braking mechanism. It consists of dynamic braking and yaw control sche...
Variability of behavior within very short time periods is typical of a wind flow. Thus, the upwind h...
Yaw angle control is known nowadays as a promising and effective technique to mitigate wake effects ...
The focus of the current paper is on a hydraulic soft yaw system, designed to reduce the loading of ...
This article qualitatively shows the yaw stability of a free-yawing downwind turbine and the ability...
A Simulink model of a 20MW multi rotor system (MRS) is built containing all the necessary detail to ...
As wind turbines increase in size, combined with increased lifetime demands, new methods for load re...
At present, using structural dynamics models is the most commonly used and effective method to simul...
In this paper, wake steering is applied to multirotor turbines to determine whether it has the poten...
This paper discusses increasing energy capture of wind turbines by improved yaw control
This paper addresses the yawing systems of Horizontal Axis Wind Turbines (HAWT’s). HAWT’s represents...
International audienceThe characterization of wind turbines in yawed conditions is one of the most i...