We describe a generalization of the coupled wake boundary layer (CWBL) model for wind farms that can be used to evaluate the performance of wind farms under arbitrary wind inflow directions, whereas the original CWBL model (Stevens et al., J. Renewable and Sustainable Energy 7, 023115 (2015)) focused on aligned or staggered wind farms. The generalized CWBL approach combines an analytical Jensen wake model with a ‘top-down’ boundary layer model coupled through an iterative determination of the wake expansion coefficient and an effective wake coverage area for which the velocity at hub-height obtained using both models converges in the ‘deep-array’ portion (fully developed region) of the wind farm. The approach accounts for the effect of the ...
Extensive power losses of wind farm have been witnessed due to the wake interactions between wind tu...
The wind field and, more importantly, the power production change when downstream wind turbines are ...
Wake effects in wind farms can cause significant power losses. In order to reduce these losses layou...
We describe a generalization of the coupled wake boundary layer (CWBL) model for wind farms that can...
The Coupled Wake Boundary Layer (CWBL) model combines a classical wake model with a ``top-down'' bou...
We present and test a coupled wake boundary layer (CWBL) model that describes the distribution of th...
We use the recently introduced coupled wake boundary layer (CWBL) model to predict the e ect of turb...
We study wind farm wakes with large eddy simulations (LES) and use these results for the evaluation ...
To increase the total wind farm power output, the wind farm layout needs to be optimized. The power ...
The effects of turbine aerodynamics and response characteristics of the atmospheric boundary layer o...
The aim of the present paper is to obtain a better understanding of long distance wakes generated by...
Modern, very large wind farms require large-scale effects to be taken into account when evaluating w...
Wind farm power production is known to be strongly affected by turbine wake effects. The purpose of ...
Simulating turbine wakes offshore presents significant challenges. Experiments suggest that the stan...
Abstact: In order to address the wind-industry's need for a new generation of more advanced wake mod...
Extensive power losses of wind farm have been witnessed due to the wake interactions between wind tu...
The wind field and, more importantly, the power production change when downstream wind turbines are ...
Wake effects in wind farms can cause significant power losses. In order to reduce these losses layou...
We describe a generalization of the coupled wake boundary layer (CWBL) model for wind farms that can...
The Coupled Wake Boundary Layer (CWBL) model combines a classical wake model with a ``top-down'' bou...
We present and test a coupled wake boundary layer (CWBL) model that describes the distribution of th...
We use the recently introduced coupled wake boundary layer (CWBL) model to predict the e ect of turb...
We study wind farm wakes with large eddy simulations (LES) and use these results for the evaluation ...
To increase the total wind farm power output, the wind farm layout needs to be optimized. The power ...
The effects of turbine aerodynamics and response characteristics of the atmospheric boundary layer o...
The aim of the present paper is to obtain a better understanding of long distance wakes generated by...
Modern, very large wind farms require large-scale effects to be taken into account when evaluating w...
Wind farm power production is known to be strongly affected by turbine wake effects. The purpose of ...
Simulating turbine wakes offshore presents significant challenges. Experiments suggest that the stan...
Abstact: In order to address the wind-industry's need for a new generation of more advanced wake mod...
Extensive power losses of wind farm have been witnessed due to the wake interactions between wind tu...
The wind field and, more importantly, the power production change when downstream wind turbines are ...
Wake effects in wind farms can cause significant power losses. In order to reduce these losses layou...