Aeroelastic instability of cantilevered flexible plates in uniform flow

Author:

ELOY CHRISTOPHE,LAGRANGE ROMAIN,SOUILLIEZ CLAIRE,SCHOUVEILER LIONEL

Abstract

We address the flutter instability of a flexible plate immersed in an axial flow. This instability is similar to flag flutter and results from the competition between destabilizing pressure forces and stabilizing bending stiffness. In previous experimental studies, the plates have always appeared much more stable than the predictions of two-dimensional models. This discrepancy is discussed and clarified in this paper by examining experimentally and theoretically the effect of the plate aspect ratio on the instability threshold. We show that the two-dimensional limit cannot be achieved experimentally because hysteretical behaviour and three-dimensional effects appear for plates of large aspect ratio. The nature of the instability bifurcation (sub- or supercritical) is also discussed in the light of recent numerical results.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference24 articles.

1. Flutter of a rectangular plate

2. The Kutta Condition in Unsteady Flow

3. Stability of Rectangular Plates With Free Side-Edges in Two-Dimensional Inviscid Channel Flow

4. Theodorsen T. 1935 General theory of aerodynamic instability and the mechanism of flutter. Tech. Rep. TR-496. NACA.

5. On the instability of jets;Rayleigh;Proc. Lond. Math. Soc.,1879

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