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A fifth-order multiple-scale solution for Hopf bifurcations
Authors:D. Dessi   F. Mastroddi  L. Morino
Affiliation:aINSEAN Via di Vallerano, 139, 00128 Roma, Italy;bDipartimento di Ingegneria Aerospaziale e Astronautica, Università degli Studi di Roma ‘La Sapienza’, Via Eudossiana, 16, 00184 Roma, Italy;cDipartimento di Ingegneria Meccanica e Industriale, Università degli Studi di Roma ‘Roma Tre’, Via della Vasca Navale, 79, 00146 Roma, Italy
Abstract:The subject of this paper is the multiple-time-scale analysis of Hopf bifurcations up to fifth-order nonlinearities. It is shown how an asymptotic fifth-order expansion captures the change in the nature of the limit cycle from stable to unstable and viceversa. The formulation is validated by applying it to a simple mechanical system for which there exists an analytical limit-cycle solution. Applications include the pre- and post-flutter behavior of a typical section with nonlinear spring having a stable limit cycle (supercritical Hopf bifurcation) that turns into an unstable one, because of fifth-order nonlinearities.
Keywords:Asymptotic techniques for nonlinear dynamical systems   Bifurcation   Perturbation methods   Nonlinear aeroelasticity
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