Modern wind farms comprised of horizontal-axis wind turbines (HAWTs) require significant land resources to separate each wind turbine from the adjacent turbine wakes. This aerodynamic constraint limits the amount of power that can be extracted from a given wind farm footprint. The resulting inefficiency of HAWT farms is currently compensated by using taller wind turbines to access greater wind resources at high altitudes, but this solution comes at the expense of higher engineering costs and greater visual, acoustic, radar, and environmental impacts. We investigated the use of counter-rotating vertical-axis wind turbines (VAWTs) in order to achieve higher power output per unit land area than existing wind farms consisting of HAWTs. Full-sca...
The application of wind energy in power generation is increasing day by day. Horizontal axis wind tu...
Systematic dependence on fossil fuels has led to high levels of carbon emissions. These emissions pl...
Designing an optimal wind farm layout requires fundamental knowledge of the interaction of wind turb...
Vertical-axis wind turbines (VAWTs) are being reconsidered as a complementary technology to the more...
Increased power production is observed in downstream vertical-axis wind turbines (VAWTs) when positi...
Most wind farms consist of horizontal axis wind turbines (HAWTs) due to the high power coefficient (...
Modern wind farms are composed of arrays of wind turbines with a propeller design. However, the roto...
The potential for significant increases in VAWT farm performance compared to isolated turbines is we...
Experimental results from three different full scale arrays of vertical-axis wind turbines (VAWTs) u...
Abstract. Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root reg...
Vertical axis wind turbines (VAWTs) have demonstrated a potential to significantly enhance the effic...
Vertical staggering of wind turbines can lead to an increased power production in the entrance regio...
Enclosing vertical axis wind turbines (VAWTs) could increase the efficiency of the turbines; In addi...
We analyze the flow field within an array of 18 counter-rotating, vertical-axis wind turbines (VAWTs...
Large eddy simulations are used to investigate mechanisms to enhance power harvesting in wind farms....
The application of wind energy in power generation is increasing day by day. Horizontal axis wind tu...
Systematic dependence on fossil fuels has led to high levels of carbon emissions. These emissions pl...
Designing an optimal wind farm layout requires fundamental knowledge of the interaction of wind turb...
Vertical-axis wind turbines (VAWTs) are being reconsidered as a complementary technology to the more...
Increased power production is observed in downstream vertical-axis wind turbines (VAWTs) when positi...
Most wind farms consist of horizontal axis wind turbines (HAWTs) due to the high power coefficient (...
Modern wind farms are composed of arrays of wind turbines with a propeller design. However, the roto...
The potential for significant increases in VAWT farm performance compared to isolated turbines is we...
Experimental results from three different full scale arrays of vertical-axis wind turbines (VAWTs) u...
Abstract. Horizontal axis wind turbines suffer from aerodynamic inefficiencies in the blade root reg...
Vertical axis wind turbines (VAWTs) have demonstrated a potential to significantly enhance the effic...
Vertical staggering of wind turbines can lead to an increased power production in the entrance regio...
Enclosing vertical axis wind turbines (VAWTs) could increase the efficiency of the turbines; In addi...
We analyze the flow field within an array of 18 counter-rotating, vertical-axis wind turbines (VAWTs...
Large eddy simulations are used to investigate mechanisms to enhance power harvesting in wind farms....
The application of wind energy in power generation is increasing day by day. Horizontal axis wind tu...
Systematic dependence on fossil fuels has led to high levels of carbon emissions. These emissions pl...
Designing an optimal wind farm layout requires fundamental knowledge of the interaction of wind turb...