Wind tunnel testing of large deformable soft kites for wind energy conversion is expensive and in many cases practically not feasible. Computational simulation of the coupled fluid–structure interaction problem is scientifically challenging and of limited practical use for aerodynamic characterization. In this paper we present a novel experimental method for aerodynamic characterization of flexible membrane kites by in situ measurement of the relative flow, while performing complex flight maneuvers. We find that the measured aerodynamic coefficients agree well with the values that are currently used for flight simulation of soft kites. For flight operation in crosswind maneuvers during which the traction force is kept constant, the angle of...
Kite Aerodynamics Airborne Wind Energy (AWE) systems operate at high altitudes, where wind velocitie...
A soft-wing airborne-wind energy kite, here the Kitepower B.V. system, consists of a kite control un...
The leading edge inflated (LEI) surf-kite is a suitable wing design for airborne wind energy (AWE) p...
Wind tunnel testing of large deformable soft kites for wind energy conversion is expensive and in ma...
Airborne wind energy is an evolving renewable energy technology with the potential to reduce materia...
The aerodynamic characteristics of a leading edge inflatable (LEI) kite and a rigid-framed delta (RF...
Thorough understanding of flexible wing structural and aerodynamic properties is crucial to reduce u...
When designing an airborne wind energy system, it is necessary to be able to estimate the traction f...
We have developed a tow test setup for the reproducible measurement of the dynamic properties of dif...
The climate actions defined by United Nations require a rapid transition to low environmental footpr...
Kitesurf is a sport of surfing while holding on to a specially designed kite, using the wind for pro...
The development of Airborne Wind Energy (AWE) systems can benefit from computational aerodynamic mod...
The kite power group at TU Delft is currently researching the use of leading edge inflatable (LEI) k...
International audienceDesigning new large kite wings requires engineering tools that can account for...
Soft-wing kites for airborne wind-energy harvesting function as flying tensile membrane structures, ...
Kite Aerodynamics Airborne Wind Energy (AWE) systems operate at high altitudes, where wind velocitie...
A soft-wing airborne-wind energy kite, here the Kitepower B.V. system, consists of a kite control un...
The leading edge inflated (LEI) surf-kite is a suitable wing design for airborne wind energy (AWE) p...
Wind tunnel testing of large deformable soft kites for wind energy conversion is expensive and in ma...
Airborne wind energy is an evolving renewable energy technology with the potential to reduce materia...
The aerodynamic characteristics of a leading edge inflatable (LEI) kite and a rigid-framed delta (RF...
Thorough understanding of flexible wing structural and aerodynamic properties is crucial to reduce u...
When designing an airborne wind energy system, it is necessary to be able to estimate the traction f...
We have developed a tow test setup for the reproducible measurement of the dynamic properties of dif...
The climate actions defined by United Nations require a rapid transition to low environmental footpr...
Kitesurf is a sport of surfing while holding on to a specially designed kite, using the wind for pro...
The development of Airborne Wind Energy (AWE) systems can benefit from computational aerodynamic mod...
The kite power group at TU Delft is currently researching the use of leading edge inflatable (LEI) k...
International audienceDesigning new large kite wings requires engineering tools that can account for...
Soft-wing kites for airborne wind-energy harvesting function as flying tensile membrane structures, ...
Kite Aerodynamics Airborne Wind Energy (AWE) systems operate at high altitudes, where wind velocitie...
A soft-wing airborne-wind energy kite, here the Kitepower B.V. system, consists of a kite control un...
The leading edge inflated (LEI) surf-kite is a suitable wing design for airborne wind energy (AWE) p...