AbstractThe flow field over an accelerating rotating wing model at Reynolds numbers Re ranging from 250 to 2000 is investigated using particle image velocimetry, and compared with the flow obtained by three-dimensional time-dependent Navier-Stokes simulations. It is shown that the coherent leading-edge vortex that characterises the flow field at Re~200-300 transforms to a laminar separation bubble as Re is increased. It is further shown that the ratio of the instantaneous circulation of the leading-edge vortex in the accel-eration phase to that over a wing rotating steadily at the same Re decreases monotonically with increasing Re. We conclude that the traditional approach based on steady wing rotation is inadequate for the prediction of th...
This study focuses on the formation and detachment of a leading edge vortex (LEV) appearing on an ai...
Insect wing shapes are diverse and a renowned source of inspiration for the new generation of autono...
The present study is a prelude to applying different flow control devices on pitching and plunging a...
AbstractThe flow field over an accelerating rotating wing model at Reynolds numbers Re ranging from ...
The aerodynamic performance of hovering insects is largely explained by the presence of a stably att...
The elevated aerodynamic performance of insects has been attributed in part to the generation and ma...
A computational inquiry focuses on leading-edge vortex (LEV) growth and shedding during acceleration...
While a leading-edge vortex on an infinite translating wing is shed after a short distance of travel...
The vortex dynamics of leading-edge vortices on plunging high-Aspect-ratio (ARÂ =Â 10) wings and air...
In summary the tilting mechanism helps to explain the overall flow structure and the stability of th...
At high angles of attack, an aircraft wing stalls. This dreaded event is characterized by the develo...
Stable attachment of a leading-edge vortex (LEV) plays a key role in generating the high lift on rot...
This study explores the effects of rotational mechanisms on the characteristics of the leading edge ...
International audienceThe paper presents a numerical investigation of the leading-edge vortices gene...
Flapping-wing micro air vehicles, based on insect-like apping, could potentially ll a niche in the c...
This study focuses on the formation and detachment of a leading edge vortex (LEV) appearing on an ai...
Insect wing shapes are diverse and a renowned source of inspiration for the new generation of autono...
The present study is a prelude to applying different flow control devices on pitching and plunging a...
AbstractThe flow field over an accelerating rotating wing model at Reynolds numbers Re ranging from ...
The aerodynamic performance of hovering insects is largely explained by the presence of a stably att...
The elevated aerodynamic performance of insects has been attributed in part to the generation and ma...
A computational inquiry focuses on leading-edge vortex (LEV) growth and shedding during acceleration...
While a leading-edge vortex on an infinite translating wing is shed after a short distance of travel...
The vortex dynamics of leading-edge vortices on plunging high-Aspect-ratio (ARÂ =Â 10) wings and air...
In summary the tilting mechanism helps to explain the overall flow structure and the stability of th...
At high angles of attack, an aircraft wing stalls. This dreaded event is characterized by the develo...
Stable attachment of a leading-edge vortex (LEV) plays a key role in generating the high lift on rot...
This study explores the effects of rotational mechanisms on the characteristics of the leading edge ...
International audienceThe paper presents a numerical investigation of the leading-edge vortices gene...
Flapping-wing micro air vehicles, based on insect-like apping, could potentially ll a niche in the c...
This study focuses on the formation and detachment of a leading edge vortex (LEV) appearing on an ai...
Insect wing shapes are diverse and a renowned source of inspiration for the new generation of autono...
The present study is a prelude to applying different flow control devices on pitching and plunging a...