The objective of this paper is to numerically investigate the effects of the atmospheric boundary layer on the aerodynamic performance and loads of a novel dual-rotor wind turbine (DRWT). Large eddy simulations are carried out with the turbines operating in the atmospheric boundary layer (ABL) and in a uniform inflow. Two stability conditions corresponding to neutral and slightly stable atmospheres are investigated. The turbines are modeled using the actuator line method where the rotor blades are modeled as body forces. Comparisons are drawn between the DRWT and a comparable conventional single-rotor wind turbine (SRWT) to assess changes in aerodynamic efficiency and loads, as well as wake mixing and momentum and kinetic energy entrainment...
A modern horizontal axis wind turbine was simulated by means of computational fluid dynamics (CFD) s...
Large-eddy simulations are conducted with the geophysical flow solver EULAG for the flow through a w...
Abstract. Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root reg...
The objective of this paper is to numerically investigate the effects of the atmospheric boundary la...
An experimental study was performed to examine the wake characteristics and aeromechanic performance...
An experimental study was conducted to investigate the aeromechanic performance and near wake charac...
Improving power output and reducing costs are crucial to the sustainable development of offshore win...
In this work, a closely spaced dual turbine concept is studied. The distance between the two side-by...
To analyze the interaction between wind turbines and the atmospheric boundary layer, we integrated a...
In this study, the interaction of horizontal axis wind turbine (HAWT) with neutrally stratified atmo...
To analyze the interaction between wind turbines and the atmospheric boundary layer, we integrated a...
Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root region (near ...
We present a numerical study of two utility-scale 5-MW turbines separated by seven rotor diameters. ...
In this study, Reynolds-averaged Navier–Stokes (RANS) simulations are performed using the k-e and k-...
The wake characteristics of a wind turbine in a turbulent boundary layer under neutral stratificatio...
A modern horizontal axis wind turbine was simulated by means of computational fluid dynamics (CFD) s...
Large-eddy simulations are conducted with the geophysical flow solver EULAG for the flow through a w...
Abstract. Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root reg...
The objective of this paper is to numerically investigate the effects of the atmospheric boundary la...
An experimental study was performed to examine the wake characteristics and aeromechanic performance...
An experimental study was conducted to investigate the aeromechanic performance and near wake charac...
Improving power output and reducing costs are crucial to the sustainable development of offshore win...
In this work, a closely spaced dual turbine concept is studied. The distance between the two side-by...
To analyze the interaction between wind turbines and the atmospheric boundary layer, we integrated a...
In this study, the interaction of horizontal axis wind turbine (HAWT) with neutrally stratified atmo...
To analyze the interaction between wind turbines and the atmospheric boundary layer, we integrated a...
Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root region (near ...
We present a numerical study of two utility-scale 5-MW turbines separated by seven rotor diameters. ...
In this study, Reynolds-averaged Navier–Stokes (RANS) simulations are performed using the k-e and k-...
The wake characteristics of a wind turbine in a turbulent boundary layer under neutral stratificatio...
A modern horizontal axis wind turbine was simulated by means of computational fluid dynamics (CFD) s...
Large-eddy simulations are conducted with the geophysical flow solver EULAG for the flow through a w...
Abstract. Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root reg...