A low aspect ratio, low Reynolds number membrane wing has been identified as a viable platform for micro air vehicle applications. Desirable flying qualities include high lift and larger stability margins. Several challenges are associated with the numerical modeling of such a wing, including highly three-dimensional flows, separation bubbles, and nonlinear membrane behavior. A thorough model validation and system identification effort is therefore required. A novel experimental setup integrates a wind tunnel with a visual image correlation system, for simultaneous measurement of wing displacements, strains, and aerodynamic loads. These three metrics are used for a direct comparison of numerical and experimental data for both pre- and post-...
A class of micro air vehicles (MAVs), developed at the University of Florida, implements a flexible-...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76807/1/AIAA-2006-440-519.pd
Fixed wing micro air vehicles (wingspan between 10 and 15 cm) are aerodynamically challenging due to...
A low aspect ratio, low Reynolds number membrane wing has been identified as a viable platform for m...
A low-aspect-ratio, low-Reynolds-number membrane wing has been identified as a viable platform for m...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76557/1/AIAA-30003-730.pd
This work is concerned with wind tunnel testing of an elastic membrane wing intended for micro air v...
A modern class of Micro Aerial Vehicles (MAVs) uses Deformable Membrane Wings (DMWs), wing comprisin...
The limited size of micro air vehicles (MAVs) requires small power sources, leading to a need for hi...
The aerodynamic performance of a wing deteriorates considerably as the Reynolds number decreases fro...
Micro air vehicles (MAVs) with a wingspan of 15 cm or shorter, and flight speed around 10 m/s have a...
A model for the interaction between a membrane wing and its surroundings for application in micro ai...
The work presented in this paper undertakes a series of experiments to evaluate the basic structural...
A study concerning the aerodynamics of a micro-air vehicle wing is presented using both, numerical s...
To lessen the deterioration of fixed-wing aerodynamic performance associated with chord Reynolds num...
A class of micro air vehicles (MAVs), developed at the University of Florida, implements a flexible-...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76807/1/AIAA-2006-440-519.pd
Fixed wing micro air vehicles (wingspan between 10 and 15 cm) are aerodynamically challenging due to...
A low aspect ratio, low Reynolds number membrane wing has been identified as a viable platform for m...
A low-aspect-ratio, low-Reynolds-number membrane wing has been identified as a viable platform for m...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76557/1/AIAA-30003-730.pd
This work is concerned with wind tunnel testing of an elastic membrane wing intended for micro air v...
A modern class of Micro Aerial Vehicles (MAVs) uses Deformable Membrane Wings (DMWs), wing comprisin...
The limited size of micro air vehicles (MAVs) requires small power sources, leading to a need for hi...
The aerodynamic performance of a wing deteriorates considerably as the Reynolds number decreases fro...
Micro air vehicles (MAVs) with a wingspan of 15 cm or shorter, and flight speed around 10 m/s have a...
A model for the interaction between a membrane wing and its surroundings for application in micro ai...
The work presented in this paper undertakes a series of experiments to evaluate the basic structural...
A study concerning the aerodynamics of a micro-air vehicle wing is presented using both, numerical s...
To lessen the deterioration of fixed-wing aerodynamic performance associated with chord Reynolds num...
A class of micro air vehicles (MAVs), developed at the University of Florida, implements a flexible-...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76807/1/AIAA-2006-440-519.pd
Fixed wing micro air vehicles (wingspan between 10 and 15 cm) are aerodynamically challenging due to...