Despite intense study by physicists and biologists, we do not fully understand the unsteady aerodynamics that relate insect wing morphology and kinematics to lift generation. Here, we formulate a force partitioning method (FPM) and implement it within a computational fluid dynamic model to provide an unambiguous and physically insightful division of aerodynamic force into components associated with wing kinematics, vorticity, and viscosity. Application of the FPM to hawkmoth and fruit fly flight shows that the leading-edge vortex is the dominant mechanism for lift generation for both these insects and contributes between 72–85% of the net lift. However, there is another, previously unidentified mechanism, the centripetal acceleration reacti...
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 employed a dynamically scaled mechanical model of the small fruit fly Drosophila melanog...
Despite intense study by physicists and biologists, we do not fully understand the unsteady aerodyna...
The motivation of the current study is to explore two major aspects of flapping flight in insects: t...
<p>Components of the instantaneous lift coefficient over one flapping cycle for the (a) hovering haw...
<p>Stroke-averaged lift coefficients </p><p></p><p></p><p></p><p></p><p><mi>C</mi><mi>F</mi></p><mo>...
<p>(a) Typical non-uniform Cartesian mesh employed in the simulations. (b) Schematic of the control ...
Summary: The flight of insects has fascinated physicists and biologists for more than a century. Yet...
The aerodynamic performance of hovering insects is largely explained by the presence of a stably att...
An Unsteady force generation mechanisms (delayed stall, wake capture and rotational lift) during ide...
To generate aerodynamic forces required for flight, two-winged insects (Diptera) move their wings ba...
Flying insects impress by their versatility and have been a recurrent source of inspiration for engi...
The aerodynamic forces on a flat plate accelerating from rest at fixed incidence in two-dimensional ...
The aerodynamics of flapping flight for the smallest insects such as thrips is often characterized b...
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 employed a dynamically scaled mechanical model of the small fruit fly Drosophila melanog...
Despite intense study by physicists and biologists, we do not fully understand the unsteady aerodyna...
The motivation of the current study is to explore two major aspects of flapping flight in insects: t...
<p>Components of the instantaneous lift coefficient over one flapping cycle for the (a) hovering haw...
<p>Stroke-averaged lift coefficients </p><p></p><p></p><p></p><p></p><p><mi>C</mi><mi>F</mi></p><mo>...
<p>(a) Typical non-uniform Cartesian mesh employed in the simulations. (b) Schematic of the control ...
Summary: The flight of insects has fascinated physicists and biologists for more than a century. Yet...
The aerodynamic performance of hovering insects is largely explained by the presence of a stably att...
An Unsteady force generation mechanisms (delayed stall, wake capture and rotational lift) during ide...
To generate aerodynamic forces required for flight, two-winged insects (Diptera) move their wings ba...
Flying insects impress by their versatility and have been a recurrent source of inspiration for engi...
The aerodynamic forces on a flat plate accelerating from rest at fixed incidence in two-dimensional ...
The aerodynamics of flapping flight for the smallest insects such as thrips is often characterized b...
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 employed a dynamically scaled mechanical model of the small fruit fly Drosophila melanog...