Please use this identifier to cite or link to this item: https://repository.cihe.edu.hk/jspui/handle/cihe/3416
Title: Linear flutter prediction using symbolic programming
Author(s): Leung, Andrew Yee Tak 
Author(s): Sedaghat, A.
Cooper, J. E.
Wright, J. R.
Issue Date: 1999
Publisher: A.A. Balkema
Related Publication(s): Integrating dynamics, condition monitoring and control for the 21st century: DYMAC 99 - Proceedings of the First International Conference on the Integration of Dynamics, Monitoring and Control
Start page: 37
End page: 42
Abstract: 
A procedure is developed to predict the speed and frequency at which flutter occurs, based upon the use of symbolic programming. The approach performs the computation in a single step and does not require the repeated calculations at various speeds required when using the classical v.g. method. By curvefitting aeroelastic response data it is possible to find a polynomial representation of the unsteady aerodynamics. Making use of this approximation eliminates the need for iterative frequency matching schemes. The procedure is validated upon a number of simulated aeroelastic systems.
URI: https://repository.cihe.edu.hk/jspui/handle/cihe/3416
CIHE Affiliated Publication: No
Appears in Collections:CIS Publication

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