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This research focuses on modeling the interactions between the dynamics of inflatable airborne wind energy systems. It aims to develop numerical tools to optimize the performance of these systems, which can harness wind energy at higher altitudes more efficiently than traditional turbines.
The proposed research aims to numerically model the mutual interactions between the aero- and structural- dynamics of inflatable airborne wind energy systems.
Such systems offer several advantages over conventional wind turbines.
For example, they harness stronger and steadier winds by flying at moderate to high altitudes, they are cheap to manufacture, and they can be rapidly deployed.Airborne wind energy (AWE) is a novel area of research, where conventional wind turbines cannot be used.
At inc…
TECHNISCHE UNIVERSITEIT DELFT
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