Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A Novel Wake Control Approach for Power Generation Improvement of Three Wind Turbines in a Wind Farm

View through CrossRef
Abstract The total power generation of a wind farm is significantly affected by the adverse wake generation of upstream wind turbines on the aerodynamic performance of the downstream wind turbines. This paper aims to provide a novel hybrid wake control strategy to improve the power generation of horizontal-axis wind turbines in a wind-farm layout. A numerical simulation based on the actuator line method with large eddy simulation (ALM-LES) is performed to investigate the airflow around three-dimensional NREL 5MW turbines in a three-by-one layout. The yaw angle (θ) and tilt angle (ϕ) of the wind turbines are in the range of (−30° < θ < 30°) and (0 < ϕ < 35°), respectively. Firstly, the combined effects of yaw-control and tilt-control methods on the velocity profile, vorticity generation and turbulent kinetic energy in the wake region of the multiscale wind farm are investigated. Afterwards, the total power generation of the wind farm is compared with previous wake control methods of wind turbines. It was observed that the proposed hybrid wake control method could improve the total power generation by 9.94% compared to the previous wind turbine wake control techniques. The hybrid control strategy can deviate the wake much better than typical single-control methods. An optimization analysis is also provided to find the most appropriate yaw angles and tilt angles of the wind turbines subject to varying wind speeds.
Title: A Novel Wake Control Approach for Power Generation Improvement of Three Wind Turbines in a Wind Farm
Description:
Abstract The total power generation of a wind farm is significantly affected by the adverse wake generation of upstream wind turbines on the aerodynamic performance of the downstream wind turbines.
This paper aims to provide a novel hybrid wake control strategy to improve the power generation of horizontal-axis wind turbines in a wind-farm layout.
A numerical simulation based on the actuator line method with large eddy simulation (ALM-LES) is performed to investigate the airflow around three-dimensional NREL 5MW turbines in a three-by-one layout.
The yaw angle (θ) and tilt angle (ϕ) of the wind turbines are in the range of (−30° < θ < 30°) and (0 < ϕ < 35°), respectively.
Firstly, the combined effects of yaw-control and tilt-control methods on the velocity profile, vorticity generation and turbulent kinetic energy in the wake region of the multiscale wind farm are investigated.
Afterwards, the total power generation of the wind farm is compared with previous wake control methods of wind turbines.
It was observed that the proposed hybrid wake control method could improve the total power generation by 9.
94% compared to the previous wind turbine wake control techniques.
The hybrid control strategy can deviate the wake much better than typical single-control methods.
An optimization analysis is also provided to find the most appropriate yaw angles and tilt angles of the wind turbines subject to varying wind speeds.

Related Results

Analysis of Senegal Type Vertical Axis Wind Turbines Arrangement in Wind Farm
Analysis of Senegal Type Vertical Axis Wind Turbines Arrangement in Wind Farm
Background: In a wind farm, the wind speed of the downstream wind turbine will be lower than the wind speed of the upstream wind turbine due to the influence of the wake. Therefore...
Contributions of flywheel systems in wind power plants
Contributions of flywheel systems in wind power plants
The stepwise replacement of conventional power plants by renewable-based ones such as wind power plants could a ect the system behaviour and planning. First, the network stability ...
Sensitivity analysis of wake steering optimisation for wind farm power maximisation
Sensitivity analysis of wake steering optimisation for wind farm power maximisation
Abstract. Modern large–scale wind farms consist of multiple turbines clustered together, usually in well–structured formations. Clustering has a number of drawbacks during a wind f...
Aerodynamics of Clustered Wind Lens Turbines
Aerodynamics of Clustered Wind Lens Turbines
Wind lens turbines, developed by Kyushu University have increased performance due to the duct surrounding the rotor [1]. A Multi rotor system is a promising concept to upscale wind...
Wake Alleviating Devices for Offshore Wind Turbines
Wake Alleviating Devices for Offshore Wind Turbines
The wake behind an offshore wind turbine can persist for several turbine diameters, so decreasing the space between wind turbines in an array leads to strong wake-turbine interacti...
Recovery processes in coastal wind farms
Recovery processes in coastal wind farms
<p>Wind turbines in a wind farm extract energy from the atmospheric flow and convert it into electricity, resulting in a localized momentum deficit in the wake that r...
Calculation Method of Instantaneous Wind Speed Spatial Distribution of Wind Farm
Calculation Method of Instantaneous Wind Speed Spatial Distribution of Wind Farm
Instantaneous wind speed spatial distribution of wind farm is the basis of the optimal control for wind turbines. A calculation method was proposed for the instantaneous wind speed...
Optimization of the Offshore Wind Turbines Layout Using Cuckoo Search Algorithm
Optimization of the Offshore Wind Turbines Layout Using Cuckoo Search Algorithm
Wind turbines have gained popularity as one of the efficient micro grid energy generation sources over the years. However, wind energy yield has been greatly impacted by the wind f...

Back to Top