The Function of the Alula in Avian Flight
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Hyungmin Park | Haecheon Choi | Jooha Kim | Haecheon Choi | P. Jablonski | Hyungmin Park | Sang-im Lee | Piotr G. Jabłoński | Jooha Kim | Sang-im Lee
[1] J. Sanz,et al. An Early Cretaceous bird from Spain and its implications for the evolution of avian flight , 1996, Nature.
[2] J. Fitzpatrick,et al. The Cornell Lab of Ornithology Handbook of Bird Biology , 2016 .
[3] Haecheon Choi,et al. Characteristics of the alula in relation to wing and body size in the Laridae and Sternidae , 2017, Animal cells and systems.
[4] John K. Eaton,et al. Experimental study of the development of longitudinal vortex pairs embedded in a turbulent boundary layer , 1987 .
[5] Brian G. Allan,et al. Flow-Field Measurement of Device-Induced Embedded Streamwise Vortex on a Flat Plate , 2002 .
[6] Werner Nachtigall,et al. Vergleichende Untersuchungen zur flugbiologischen Funktion des Daumenfittichs (Alula spuria) bei Vögeln , 2004, Zeitschrift für vergleichende Physiologie.
[7] J. L. Leeuwen,et al. How swifts control their glide performance with morphing wings , 2006, Nature.
[8] Brian G. Allan,et al. Numerical Simulations of Vortex Generator Vanes and Jets on a Flat Plate , 2002 .
[9] Adrian L. R. Thomas,et al. Automatic aeroelastic devices in the wings of a steppe eagle Aquila nipalensis , 2007, Journal of Experimental Biology.
[10] L. Jenni,et al. Moult and Ageing of European Passerines , 1994 .
[11] Haecheon Choi,et al. Hydrodynamic role of longitudinal dorsal ridges in a leatherback turtle swimming , 2016, Scientific Reports.
[12] C. Tropea,et al. The importance of leading edge vortices under simplified flapping flight conditions at the size scale of birds , 2010, Journal of Experimental Biology.
[13] John P. Sullivan,et al. High lift aerodynamics , 1994 .
[14] Isabel Pérez-Grande,et al. On the aerodynamics of leading-edge high-lift devices of avian wings , 2005 .
[15] O. Rauhut,et al. New specimen of Archaeopteryx provides insights into the evolution of pennaceous feathers , 2014, Nature.
[16] A. Anderson,et al. The Alula and Its Aerodynamic Effect on Avian Flight , 2007 .
[17] James P. Johnston,et al. Streamwise vortex production by pitched and skewed jets in a turbulent boundary layer , 1991 .
[18] John C. Lin,et al. Review of research on low-profile vortex generators to control boundary-layer separation , 2002 .
[19] James P. Johnston,et al. Vortex Generator Jets—Means for Flow Separation Control , 1990 .
[20] G D E Povel,et al. Leading-Edge Vortex Lifts Swifts , 2004, Science.
[21] Werner Nachtigall,et al. Vergleichende Untersuchungen zur flugbiologischen Funktion des Daumenfittichs (Alula spuria) bei Vgeln@@@Comparative studies on the function of the bastard wing (alula spuria) in the flight biology of birds: I. Der Daumenfittich als Hochauftriebserzeuger@@@I. The alula as a producer of high lift , 1971 .
[22] G. Korbutt,et al. A Primitive Enantiornithine Bird and the Origin of Feathers , 2012 .