Modelling of wind farms using computational fluid dynamics (CFD) resolving the flow field around each wind turbine's blades on a moving computational grid is still too costly and time consuming in terms of computational capacity and effort. One strategy is to use sub-models for the wind turbines, and sub-grid models for turbulence production and dissipation to model the turbulent viscosity accurately enough to handle interaction of wakes in wind farms. A wind turbine sub-model, based on the Blade Momentum Theory, see Hansen (2008), has been implemented in an in-house CFD code, see Hallanger et al. (2002). The tangential and normal reaction forces from the wind turbine blades are distributed on the control volumes (CVs) at the wind turbine r...
Turbulence-resolving simulations of wind turbine wakes are presented using a high-order flow solver ...
Simulations of wind turbine wakes are presented in this paper using the three-dimensional Reynolds-A...
Nowadays the demands for floating offshore wind (FOWT) have exceeded 5MW with the rapidly growing wi...
Modelling of wind farms using computational fluid dynamics (CFD) resolving the flow field around eac...
In recent years, the size and capacity of wind farms have increased significantly, as larger turbine...
This article reviews the state of the art of the numerical calculation of wind-turbine wake aerodyna...
In this paper computational fluid dynamics (CFD) simulations are performed using ANSYSCFX to compare...
Although much employed, wind energy systems still present an open, contemporary topic of many resear...
This article reviews the state-of-the-art numerical calculation of wind turbine wake aerodynamics. D...
Wind energy is one of the most common and preferred renewable energy sources. Accurate predictions o...
With the shortage of fossil fuel and the increasing environmental awareness, wind energy is becoming...
A recently-developed large-eddy simulation framework is validated and used to investigate turbulent ...
A recently-developed large-eddy simulation framework is validated and used to investigate turbulent ...
This paper investigates the accuracy of three aerodynamic models to compute loads on wind turbine ro...
Use of computational fluid dynamic (CFD) methods to predict the power production from wind entire wi...
Turbulence-resolving simulations of wind turbine wakes are presented using a high-order flow solver ...
Simulations of wind turbine wakes are presented in this paper using the three-dimensional Reynolds-A...
Nowadays the demands for floating offshore wind (FOWT) have exceeded 5MW with the rapidly growing wi...
Modelling of wind farms using computational fluid dynamics (CFD) resolving the flow field around eac...
In recent years, the size and capacity of wind farms have increased significantly, as larger turbine...
This article reviews the state of the art of the numerical calculation of wind-turbine wake aerodyna...
In this paper computational fluid dynamics (CFD) simulations are performed using ANSYSCFX to compare...
Although much employed, wind energy systems still present an open, contemporary topic of many resear...
This article reviews the state-of-the-art numerical calculation of wind turbine wake aerodynamics. D...
Wind energy is one of the most common and preferred renewable energy sources. Accurate predictions o...
With the shortage of fossil fuel and the increasing environmental awareness, wind energy is becoming...
A recently-developed large-eddy simulation framework is validated and used to investigate turbulent ...
A recently-developed large-eddy simulation framework is validated and used to investigate turbulent ...
This paper investigates the accuracy of three aerodynamic models to compute loads on wind turbine ro...
Use of computational fluid dynamic (CFD) methods to predict the power production from wind entire wi...
Turbulence-resolving simulations of wind turbine wakes are presented using a high-order flow solver ...
Simulations of wind turbine wakes are presented in this paper using the three-dimensional Reynolds-A...
Nowadays the demands for floating offshore wind (FOWT) have exceeded 5MW with the rapidly growing wi...