Vortex formation and drag on low aspect ratio, normal flat plates
暂无分享,去创建一个
[1] T. Daniel. Unsteady Aspects of Aquatic Locomotion , 1984 .
[2] Adrian L. R. Thomas,et al. Leading-edge vortices in insect flight , 1996, Nature.
[3] P. Koumoutsakos,et al. Simulations of the viscous flow normal to an impulsively started and uniformly accelerated flat plate , 1996, Journal of Fluid Mechanics.
[4] A. Roshko. On the Wake and Drag of Bluff Bodies , 1955 .
[5] R. Ramamurti,et al. A three-dimensional computational study of the aerodynamic mechanisms of insect flight. , 2002, The Journal of experimental biology.
[6] Wang Qiang,et al. Viscous flow normal to a flat plate at moderate Reynolds numbers , 1993, Journal of Fluid Mechanics.
[7] D. Lisoski,et al. Nominally 2-dimensional flow about a normal flat plate , 1993 .
[8] J. Gerrard,et al. An experimental investigation of the end effects on the wake of a circular cylinder towed through water at low Reynolds numbers , 1981, Journal of Fluid Mechanics.
[9] T. Sarpkaya,et al. Mechanics of wave forces on offshore structures , 1981 .
[10] T. Weis-Fogh. Quick estimates of flight fitness in hovering animals , 1973 .
[11] K. Chua,et al. A numerical and experimental investigation of separated flow past an oscillating flat plate , 1990 .
[12] Ellington,et al. A computational fluid dynamic study of hawkmoth hovering , 1998, The Journal of experimental biology.
[13] Turgut Sarpkaya,et al. Impulsively-Started Flow About Four Types of Bluff Body , 1982 .
[14] F. C. Johansen,et al. On the Flow of Air behind an Inclined Flat Plate of Infinite Span , 1927 .
[15] William H. Barnard,et al. Bird Flight , 1936, Nature.
[16] M. Dickinson,et al. Spanwise flow and the attachment of the leading-edge vortex on insect wings , 2001, Nature.
[17] Q. X. Lian,et al. Starting flow and structures of the starting vortex behind bluff bodies with sharp edges , 1989 .
[18] M. Gharib,et al. A universal time scale for vortex ring formation , 1998, Journal of Fluid Mechanics.
[19] Z. J. Wang,et al. Unsteady forces and flows in low Reynolds number hovering flight: two-dimensional computations vs robotic wing experiments , 2004, Journal of Experimental Biology.
[20] J. Westerweel,et al. The effect of a discrete window offset on the accuracy of cross-correlation analysis of digital PIV recordings , 1997 .
[21] M. Wernet. Digital Particle Image Velocimetry , 2003 .
[22] M. Dickinson,et al. Wing rotation and the aerodynamic basis of insect flight. , 1999, Science.
[23] A. Roshko. On the drag and shedding frequency of two-dimensional bluff bodies , 1954 .
[24] T. Maxworthy. Experiments on the Weis-Fogh mechanism of lift generation by insects in hovering flight. Part 1. Dynamics of the ‘fling’ , 1979, Journal of Fluid Mechanics.
[25] A. Roshko,et al. Vortex formation in the wake of an oscillating cylinder , 1988 .
[26] M. Dickinson,et al. UNSTEADY AERODYNAMIC PERFORMANCE OF MODEL WINGS AT LOW REYNOLDS NUMBERS , 1993 .
[27] R. Dudley. The Biomechanics of Insect Flight: Form, Function, Evolution , 1999 .