Subject Keyword Abstract Author
 
 
An Overview of Flutter Prediction in Tests Based on Stability Criteria in Discrete-Time Domain

Yuji Matsuzaki
International Journal of Aeronautical and Space Sicences, vol. 12, no. 4, pp.305-317, 2011

Abstract : This paper presents an overview on flutter boundary prediction in tests which is principally based on a system stability measure, named Jury¡¯s stability criterion, defined in the discrete-time domain, accompanied with the use of autoregressive moving-average (AR-MA) representation of a sampled sequence of wing responses excited by continuous air turbulences. Stability parameters applicable to two-, three- and multi-mode systems, that is, the flutter margin for discrete-time systems derived from Jury¡¯s criterion are also described. Actual applications of these measures to flutter tests performed in subsonic, transonic and supersonic wind tunnels, not only stationary flutter tests but also a nonstationary one in which the dynamic pressure increased in a fixed rate, are presented. An extension of the concept of nonstationary process approach to an analysis of flutter prediction of a morphing wing for which the instability takes place during the process of structural morphing will also be mentioned. Another extension of analytical approach to a multi-mode aeroelastic system is presented, too. Comparisons between the prediction based on the digital techniques mentioned above and the traditional damping method are given. A future possible application of the system stability approach to flight test will be finally discussed.

Keyword : Flutter test, Flutter boundary prediction, Stability criterion, Discrete-time domain

 
 
   
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