NASA NTRS · 19900042317
Finite element two-dimensional panel flutter at high supersonic speeds and elevated temperature
Abstract
A consistent finite element formulation for flutter of two-dimensional panels including effects of temperature variation along panel length is presented. The von Karman nonlinear strain-displacement relation is used to account for the large-deflections, and the quasi-steady first-order piston theory is employed for aerodynamic loading in the finite-element formulation. The panel flutter under combined thermal/aerodynamic loading can be separated into solving two problems in sequence. They are: (1) postbuckling deflection, stresses and buckling stability boundary, and (2) critical dynamic pressure and linear flutter boundary. The solution procedures in solving these problems are presented in detail. Finite element results of two-dimensional panels with uniform temperature change are compared with classic analytical solutions. Influence of nonuniform temperature distributions on critical buckling temperature, flutter deflection and stresses, and flutter boundary is also given.
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Xue, David Y., Mei, Chuh, Shore, Charles P.. 1990-01-01. Finite element two-dimensional panel flutter at high supersonic speeds and elevated temperature. https://ntrs.nasa.gov/citations/19900042317
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