<p>This study investigates the performance of pumping-mode ground-generation airborne wind energy systems (AWESs) by determining cyclical, feasible, power-optimal flight trajectories based on realistic vertical wind velocity profiles. These 10 min profiles, derived from mesoscale weather simulations at an offshore and an onshore site in Europe, are incorporated into an optimal control model that maximizes average cycle power by optimizing the trajectory. To reduce the computational cost, representative wind conditions are determined based on k-means clustering. The results describe the influence of wind speed magnitude and profile shape on the power, tether tension, tether reeling speed, and kite trajectory during a pumping cycle. The...
This dissertation explores the interactions between the atmosphere and wind turbines from numerous p...
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
Airborne wind energy systems convert wind energy into electricity using tethered flying devices, typ...
This study investigates the performance of pumping-mode ground-generation airborne wind energy syste...
The goal of this study is to estimate an ensemble of annual energy production and dynamic tether loa...
Airborne Wind Energy (AWE) systems use tethered flying devices to access higher altitudes, typically...
The impact of atmospheric stability on vertical wind profiles is reviewed and the implications for p...
Large offshore wind farms are usually clustered around transmission grids to minimize the expense of...
Airborne wind energy (AWE) systems harness energy at heights beyond the reach of tower-based wind tu...
This thesis investigates crosswind Airborne Wind Energy Systems (AWESs) in terms of power production...
Airborne wind energy (AWE) is a wind power technology that harvests energy at high altitudes. The pe...
The objective of this research is to determine the impact of design variables on power output of the...
Traditional Danish concept wind turbines face many constraints when upscaling in order to access hig...
Global climate change as well as water and air pollution lead to a demand for a sustainable energy s...
Airborne wind energy systems convert wind energy into electricity using tethered flying devices, typ...
This dissertation explores the interactions between the atmosphere and wind turbines from numerous p...
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
Airborne wind energy systems convert wind energy into electricity using tethered flying devices, typ...
This study investigates the performance of pumping-mode ground-generation airborne wind energy syste...
The goal of this study is to estimate an ensemble of annual energy production and dynamic tether loa...
Airborne Wind Energy (AWE) systems use tethered flying devices to access higher altitudes, typically...
The impact of atmospheric stability on vertical wind profiles is reviewed and the implications for p...
Large offshore wind farms are usually clustered around transmission grids to minimize the expense of...
Airborne wind energy (AWE) systems harness energy at heights beyond the reach of tower-based wind tu...
This thesis investigates crosswind Airborne Wind Energy Systems (AWESs) in terms of power production...
Airborne wind energy (AWE) is a wind power technology that harvests energy at high altitudes. The pe...
The objective of this research is to determine the impact of design variables on power output of the...
Traditional Danish concept wind turbines face many constraints when upscaling in order to access hig...
Global climate change as well as water and air pollution lead to a demand for a sustainable energy s...
Airborne wind energy systems convert wind energy into electricity using tethered flying devices, typ...
This dissertation explores the interactions between the atmosphere and wind turbines from numerous p...
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
Airborne wind energy systems convert wind energy into electricity using tethered flying devices, typ...