Bio-inspired flapping wing has potential application to micro air vehicles (MAV). Due to the nature of lightweight and flexibility of micro flapping wing structures, elastic deformation as a result of aeroelastic coupling is inevitable in flapping motion. This effect can be significant and beneficial to the aerodynamic performance as revealed in the present investigation for a flexible flapping wing of variable camber versus a rigid one. Firstly a two dimensional (2D) unsteady aerodynamic model (UAM) based on potential flow theory has been extended from previous study. Both leading and trailing edge discrete vortices are included in the model with unsteady Kutta condition satisfied to fully characterize the unsteady flow around a flapping w...
Motivated by micro air vehicle applications, a fluid-structure coupling procedure between a Navier- ...
The motivation for this research is the importance that the modeling of aerodynamics and aeroelastic...
The essence of this two-part paper is the analytical, aerodynamic modelling of insect-like flapping...
Due to their potential to expand our sensing and mission capabilities in both military and civilian ...
An analytical model of flapping wing structures for bio-inspired micro air vehicles is presented in ...
A range of quasi-steady and unsteady aerodynamic models are used to predict the aerodynamic forces e...
AbstractTo evaluate the propulsion system capabilities of a Flapping Micro Air Vehicle (FMAV), a new...
To implement the insects" flapping flight for developing flapping MAVs(micro air vehicles), the unst...
Experiments were systematically executed with a coupled computational fluid/structural dynamics aero...
To gain some more understanding of the flapping wing aerodynamics and aeroelasticity associated with...
Flapping flight has gained much attention in the past decade driven by the desire to understand capa...
The interest in Micro Air Vehicles (MAVs) has stimulated continuous research activities, in view of ...
The interest in Micro Air Vehicles (MAVs) has stimulated continuous research activities, in view of ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77149/1/AIAA-2008-615-169.pd
Advancements in aerospace technologies which rely on unsteady fluid dynamics are being hindered by a...
Motivated by micro air vehicle applications, a fluid-structure coupling procedure between a Navier- ...
The motivation for this research is the importance that the modeling of aerodynamics and aeroelastic...
The essence of this two-part paper is the analytical, aerodynamic modelling of insect-like flapping...
Due to their potential to expand our sensing and mission capabilities in both military and civilian ...
An analytical model of flapping wing structures for bio-inspired micro air vehicles is presented in ...
A range of quasi-steady and unsteady aerodynamic models are used to predict the aerodynamic forces e...
AbstractTo evaluate the propulsion system capabilities of a Flapping Micro Air Vehicle (FMAV), a new...
To implement the insects" flapping flight for developing flapping MAVs(micro air vehicles), the unst...
Experiments were systematically executed with a coupled computational fluid/structural dynamics aero...
To gain some more understanding of the flapping wing aerodynamics and aeroelasticity associated with...
Flapping flight has gained much attention in the past decade driven by the desire to understand capa...
The interest in Micro Air Vehicles (MAVs) has stimulated continuous research activities, in view of ...
The interest in Micro Air Vehicles (MAVs) has stimulated continuous research activities, in view of ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77149/1/AIAA-2008-615-169.pd
Advancements in aerospace technologies which rely on unsteady fluid dynamics are being hindered by a...
Motivated by micro air vehicle applications, a fluid-structure coupling procedure between a Navier- ...
The motivation for this research is the importance that the modeling of aerodynamics and aeroelastic...
The essence of this two-part paper is the analytical, aerodynamic modelling of insect-like flapping...