The downstroke-to-upstroke transition of many insects is characterized by rapid wing rotation. The aerodynamic consequences of these rapid changes in angle of attack have been investigated using a mechanical model dynamically scaled to the Reynolds number appropriate for the flight of small insects such as Drosophila. Several kinematic parameters of the wing flip were examined, including the speed and axis of rotation, as well as the duration and angle of attack during the wing stroke preceding rotation. Alteration of these kinematic parameters altered force generation during the subsequent stroke in a variety of ways. 1. When the rotational axis was close to the trailing edge, the model wing could capture vorticity generated during rotatio...
The aerodynamic force and the flow structure of a wing performing hovering motion at small Reynolds ...
This paper investigates the temporal control of a fast wing rotation in flies, the ventral flip, whi...
Summary: We employed a dynamically scaled mechanical model of the small fruit fly Drosophila melanog...
The downstroke-to-upstroke transition of many insects is characterized by rapid wing rotation. The a...
The downstroke-to-upstroke transition of many insects is characterized by rapid wing rotation. The a...
Summary: We used a dynamically scaled mechanical model of the fruit fly Drosophila melanogaster to s...
The synthesis of a comprehensive theory of force production in insect flight is hindered in part by ...
Summary: We used a dynamically scaled model insect to measure the rotational forces produced by a fl...
The synthesis of a comprehensive theory of force production in insect flight is hindered in part by ...
Micro air vehicles (MAVs) are small, unmanned aircraft useful for reconnaissance. The small size of ...
Most flying animals produce aerodynamic forces by flapping their wings back and forth with a complex...
An Unsteady force generation mechanisms (delayed stall, wake capture and rotational lift) during ide...
This paper addresses the question, do the rotational forces in the hovering fruit fly Drosophila mel...
The enhanced aerodynamic performance of insects results from an interaction of three distinct yet in...
The enhanced aerodynamic performance of insects results from an interaction of three distinct yet in...
The aerodynamic force and the flow structure of a wing performing hovering motion at small Reynolds ...
This paper investigates the temporal control of a fast wing rotation in flies, the ventral flip, whi...
Summary: We employed a dynamically scaled mechanical model of the small fruit fly Drosophila melanog...
The downstroke-to-upstroke transition of many insects is characterized by rapid wing rotation. The a...
The downstroke-to-upstroke transition of many insects is characterized by rapid wing rotation. The a...
Summary: We used a dynamically scaled mechanical model of the fruit fly Drosophila melanogaster to s...
The synthesis of a comprehensive theory of force production in insect flight is hindered in part by ...
Summary: We used a dynamically scaled model insect to measure the rotational forces produced by a fl...
The synthesis of a comprehensive theory of force production in insect flight is hindered in part by ...
Micro air vehicles (MAVs) are small, unmanned aircraft useful for reconnaissance. The small size of ...
Most flying animals produce aerodynamic forces by flapping their wings back and forth with a complex...
An Unsteady force generation mechanisms (delayed stall, wake capture and rotational lift) during ide...
This paper addresses the question, do the rotational forces in the hovering fruit fly Drosophila mel...
The enhanced aerodynamic performance of insects results from an interaction of three distinct yet in...
The enhanced aerodynamic performance of insects results from an interaction of three distinct yet in...
The aerodynamic force and the flow structure of a wing performing hovering motion at small Reynolds ...
This paper investigates the temporal control of a fast wing rotation in flies, the ventral flip, whi...
Summary: We employed a dynamically scaled mechanical model of the small fruit fly Drosophila melanog...