1. 毕业设计(论文)的内容和要求
GallopingFlutter(1) (2) (3) (4) MatlabNewton-RaphsonRunge-Kutta(5) (1) (2) (3) (4) MatlabNewton-RaphsonRunge-Kutta(5) (6) 1
2. 参考文献
[1] M.P. Pa飀oussis, S.J. Price, E. De Langre, Fluid-Structure Interactions: Cross-Flow-Induced Instabilities, Cambridge University Press, 2010.[2] E. Dowell, J. Edwards, T. Strganac, Nonlinear aeroelasticity, J. Aircraft 40 (5) (2003) 857-874.[3] L. Librescu, P. Marzocca, Advances in the linear/nonlinear control of aeroelastic structural systems, Acta. Mech. 178 (3-4) (2005) 147-186.[4] E. Livne, Aircraft active flutter suppression: State of the art and technology maturation needs, J. Aircraft 55 (1) (2017) 410-452.[5] A. Barrero-Gil, A. Sanz-Andres, M. Roura, Transverse galloping at low Reynolds numbers, J. Fluid. Struct. 25 (7) (2009) 1236-1242.[6] M.L. Lu, N. Popplewell, A.H. Shah, J.K. Chan, Hybrid nutation damper for controlling galloping power lines, IEEE T. Power Deliver. 22 (1) (2006) 450-456.[7] H. Guo, B. Liu, Y. Yu, S. Cao, Y. Chen, Galloping suppression of a suspended cable with wind loading by a nonlinear energy sink, Arch. Appl. Mech. 87 (6) (2017) 1007-1018.[8] H.L. Dai, A. Abdelkefi, L. Wang, W.B. Liu, Control of cross-flow-induced vibrations of square cylinders using linear and nonlinear delayed feedbacks, Nonlinear Dynam. 78 (2) (2014) 907-919.[9] H. Shukla, M.J. Patil, Nonlinear state feedback control design to eliminate subcritical limit cycle oscillations in aeroelastic systems, Nonlinear Dynam. 88 (3) (2017) 1599-1614.[10] L. Wang, W.B. Liu, H.L. Dai, Aeroelastic galloping response of square prisms: The role of time-delayed feedbacks, Int. J. Eng. Sci. 75 (2014) 79-84.[11] Y.H. Zhao, Stability of a time-delayed aeroelastic system with a control surface, Aerosp. Sci. Technol. 15 (1) (2011) 72-77.
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