Meandering describes the large-scale, low frequency motions of wind turbine wakes, which could determine wake recovery rates, impact the loads exerted on turbine structures, and play a critical role in the design and optimal control of wind farms. This paper presents a comprehensive review of previous work related to wake meandering. Emphasis is placed on the origin and characteristics of wake meandering and computational models, including both the dynamic wake meandering models and large-eddy simulation approaches. Future research directions in the field are also discussed
AbstractWind turbine wakes are one of the most important aspects in wind power meteorology because t...
International audienceLarge eddy simulations (LES) with the solver Meso-NH are performed to analyse ...
Abstract Current global analysis tools for floating wind turbines (FWTs) do not account for the comb...
Meandering describes the large-scale, low frequency motions of wind turbine wakes, which could deter...
Wind tunnel measurements in the wake of an axial flow miniature wind turbine provide evidence of lar...
This work focuses on the validation of the dynamic wake meandering (DWM) model against large eddy si...
Wake meandering, a phenomenon of large-scale lateral oscillation of the wake, has significant effect...
The wake meandering characteristics of four different wind turbine designs with diameters ranging fr...
Most of the global dynamic response models used today for the design of wind turbines are based on t...
The wake dynamics of a wind turbine are influenced by the atmospheric turbulence and the wake of its...
We investigate several algorithms to detect the centerline of a wind turbine wake. First, we apply t...
The flow behind a model wind turbine under two different turbine operating regimes (region 2 for tur...
The aim of this paper is to verify that a modeling approach affordable at wind farm scale, inthis ca...
Measurements of the instantaneous wake flow from a model wind turbine placed in a turbulent boundary...
This paper aims at the better understanding of the correlations between rotor loads and the wake mea...
AbstractWind turbine wakes are one of the most important aspects in wind power meteorology because t...
International audienceLarge eddy simulations (LES) with the solver Meso-NH are performed to analyse ...
Abstract Current global analysis tools for floating wind turbines (FWTs) do not account for the comb...
Meandering describes the large-scale, low frequency motions of wind turbine wakes, which could deter...
Wind tunnel measurements in the wake of an axial flow miniature wind turbine provide evidence of lar...
This work focuses on the validation of the dynamic wake meandering (DWM) model against large eddy si...
Wake meandering, a phenomenon of large-scale lateral oscillation of the wake, has significant effect...
The wake meandering characteristics of four different wind turbine designs with diameters ranging fr...
Most of the global dynamic response models used today for the design of wind turbines are based on t...
The wake dynamics of a wind turbine are influenced by the atmospheric turbulence and the wake of its...
We investigate several algorithms to detect the centerline of a wind turbine wake. First, we apply t...
The flow behind a model wind turbine under two different turbine operating regimes (region 2 for tur...
The aim of this paper is to verify that a modeling approach affordable at wind farm scale, inthis ca...
Measurements of the instantaneous wake flow from a model wind turbine placed in a turbulent boundary...
This paper aims at the better understanding of the correlations between rotor loads and the wake mea...
AbstractWind turbine wakes are one of the most important aspects in wind power meteorology because t...
International audienceLarge eddy simulations (LES) with the solver Meso-NH are performed to analyse ...
Abstract Current global analysis tools for floating wind turbines (FWTs) do not account for the comb...