In this paper, wake steering is applied to multirotor turbines to determine whether it has the potential to reduce wind plant wake losses. Through application of rotor yaw to multirotor turbines, a new degree of freedom is introduced to wind farm control such that wakes can be expanded, channelled or redirected to improve inflow conditions for downstream turbines. Five different yaw configurations are investigated (including a baseline case) by employing large‐eddy simulations (LES) to generate a detailed representation of the velocity field downwind of a multirotor wind turbine. Two lower‐fidelity models from single‐rotor yaw studies (curled‐wake model and analytical Gaussian wake model) are extended to the multirotor case, and their resul...
In the presentation, we propose engineering model extensions to take into account the coupling betwe...
The wake effect of yawing an upstream turbines is of interest in order to increase power production....
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
In this paper, wake steering is applied to multirotor turbines to determine whether it has the poten...
Abstract In this paper, wake steering is applied to multirotor turbines to determine whether it has ...
To fulfill the increasing need for large power generation by wind turbines, the concept of multiroto...
Wake steering is a form of wind farm control in which turbines use yaw offsets to affect wakes in or...
This paper presents, with a live field experiment, the potential of increasing wind farm power genera...
Yaw angle control is known nowadays as a promising and effective technique to mitigate wake effects ...
Counter-rotating vortices generated in wake steering not only deform the turbine wake, but also can ...
The object of this study is primarily to understand the behavior of the wake behind a yawed turbine,...
Aerodynamic wake interaction between commercial scale wind turbines can be a significant source of p...
In the light of the growing world-wide wind energy production, the optimization of wind farms has be...
Yaw controllers typically rely on measurements taken at the wind turbine, resulting in a slow reacti...
The wake and the lack of existing velocity behind the wind turbine affect the energy production and ...
In the presentation, we propose engineering model extensions to take into account the coupling betwe...
The wake effect of yawing an upstream turbines is of interest in order to increase power production....
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
In this paper, wake steering is applied to multirotor turbines to determine whether it has the poten...
Abstract In this paper, wake steering is applied to multirotor turbines to determine whether it has ...
To fulfill the increasing need for large power generation by wind turbines, the concept of multiroto...
Wake steering is a form of wind farm control in which turbines use yaw offsets to affect wakes in or...
This paper presents, with a live field experiment, the potential of increasing wind farm power genera...
Yaw angle control is known nowadays as a promising and effective technique to mitigate wake effects ...
Counter-rotating vortices generated in wake steering not only deform the turbine wake, but also can ...
The object of this study is primarily to understand the behavior of the wake behind a yawed turbine,...
Aerodynamic wake interaction between commercial scale wind turbines can be a significant source of p...
In the light of the growing world-wide wind energy production, the optimization of wind farms has be...
Yaw controllers typically rely on measurements taken at the wind turbine, resulting in a slow reacti...
The wake and the lack of existing velocity behind the wind turbine affect the energy production and ...
In the presentation, we propose engineering model extensions to take into account the coupling betwe...
The wake effect of yawing an upstream turbines is of interest in order to increase power production....
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...