Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by Crossref.
Phlips, P. J.
East, R. A.
and
Pratt, N. H.
1981.
An unsteady lifting line theory of flapping wings with application to the forward flight of birds.
Journal of Fluid Mechanics,
Vol. 112,
Issue. -1,
p.
97.
AHMADI, A.
and
WIDNALL, S.
1983.
Energetics and optimum motion of oscillating lifting surfaces.
1984.
The aerodynamics of hovering insect flight. V. A vortex theory.
Philosophical Transactions of the Royal Society of London. B, Biological Sciences,
Vol. 305,
Issue. 1122,
p.
115.
Spedding, G. R.
1992.
Mechanics of Animal Locomotion.
Vol. 11,
Issue. ,
p.
51.
Smith, Michael
1995.
The effects of flexibility on the aerodynamics of moth wings - Towards the development of flapping-wing technology.
Smith, Michael J. C.
1996.
Simulating moth wing aerodynamics - Towards the development of flapping-wing technology.
AIAA Journal,
Vol. 34,
Issue. 7,
p.
1348.
Smith, Michael J. C.
Wilkin, Peter J.
and
Williams, Marc H.
1996.
The Advantages of an Unsteady Panel Method in Modelling the Aerodynamic Forces on Rigid Flapping Wings.
Journal of Experimental Biology,
Vol. 199,
Issue. 5,
p.
1073.
Smith, Michael
and
Zenieh, Salah
1996.
Trajectory control of flapping wings - Towards the development of flapping-wing technology.
Smith, Michael
1996.
Leading-edge effects with moth wing aerodynamics - Towards the development of flapping-wing technology.
Smith, Michael
and
Smith, Michael
1997.
Reinstating inquiry into mechanized flapping-wing flight - Realizing the integrity of the ornithopter.
Vest, Michael
and
Katz, Joseph
1999.
Aerodynamic study of a flapping-wing micro-UAV.
Rayner, Jeremy M. V.
1999.
Estimating power curves of flying vertebrates.
Journal of Experimental Biology,
Vol. 202,
Issue. 23,
p.
3449.
Templin, R.J.
2000.
The spectrum of animal flight: insects to pterosaurs.
Progress in Aerospace Sciences,
Vol. 36,
Issue. 5-6,
p.
393.
Rayner, Jeremy M. V.
2001.
Mathematical modelling of the avian flight power curve.
Mathematical Methods in the Applied Sciences,
Vol. 24,
Issue. 17-18,
p.
1485.
2001.
Fixed and Flapping Wing Aerodynamics for Micro Air Vehicle Applications.
p.
217.
Craparo, Emily
and
Ingram, Benjamin
2003.
A Micro-Sized Ornithopter Wing Design.
Mueller, Thomas J.
and
DeLaurier, James D.
2003.
AERODYNAMICS OFSMALLVEHICLES.
Annual Review of Fluid Mechanics,
Vol. 35,
Issue. 1,
p.
89.
Ho, Steven
Nassef, Hany
Pornsinsirirak, Nick
Tai, Yu-Chong
and
Ho, Chih-Ming
2003.
Unsteady aerodynamics and flow control for flapping wing flyers.
Progress in Aerospace Sciences,
Vol. 39,
Issue. 8,
p.
635.
Lin, San-Yih
and
Hu, J.
2003.
Numerical Study of Flapping Wing.
Rozhdestvensky, Kirill V.
and
Ryzhov, Vladimir A.
2003.
Aerohydrodynamics of flapping-wing propulsors.
Progress in Aerospace Sciences,
Vol. 39,
Issue. 8,
p.
585.