Aeroelastic flutter of continuous systems: a generalized Laplace Transform Method
Journal article, 2016

This paper presents a generalization of the Laplace transform method (LTM) for determining the flutter points of a linear ordinary-differential aeroelastic system-a linear system involving a spatial derivative as well as a time-eigenvalue parameter. Current implementations of the LTM have two major problems: they are unable to solve systems of arbitrary size, order, and boundary conditions, and they require certain key operations to be performed by hand or with symbolic manipulation libraries. Our generalized method overcomes both these problems. We also devise a new method for solving and visualizing the algebraic system that arises from the LTM procedure. We validate our generalized LTM and novel solution method against both the Goland wing model and a large system of high differential order, as a demonstration of their effectiveness for solving such systems

Author

Arion Pons

University of Cambridge

Stefanie Gutschmidt

University of Canterbury

Journal of Applied Mechanics, Transactions ASME

0021-8936 (ISSN)

Vol. 83 8 081005

Subject Categories

Aerospace Engineering

Applied Mechanics

DOI

10.1115/1.4033597

More information

Latest update

10/3/2023