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Article type: Research Article
Authors: Afendikov, Andrei; | Fiedler, Bernold | Liebscher, Stefan
Affiliations: Keldysh Institute of Applied Mathematics, Moscow, Russia. E-mail: [email protected] | Institute of Mathematics, Free University of Berlin, Arnimallee 3, D-14195 Berlin, Germany. E-mails: {fiedler, liebsch}@math.fu-berlin.de
Note: [] Corresponding author.
Abstract: We consider the Kolmogorov problem of viscous incompressible planar fluid flow under external spatially periodic forcing. Looking for time-independent bounded solutions near the critical Reynolds number, we obtain a dynamical system on a 6-dimensional center manifold. The dynamics is generated by translations in the unbounded spatial direction. Reduction by first integrals yields a 3-dimensional reversible system with a line of equilibria. This line of equilibria is neither induced by symmetries, nor by first integrals. At isolated points, normal hyperbolicity of the line fails due to a transverse double eigenvalue zero. We investigate such a “Takens–Bogdanov bifurcation without parameters” by blow-up and averaging techniques. In particular we describe the complete set ℬ of all small bounded solutions. In the case of a double symmetry of the external force, which leads to a bi-reversible problem, the authors have proved in Asymptot. Anal. 60(3,4) (2008), 185–211, that ℬ consists of periodic profiles, homoclinic pulses and a heteroclinic front–back pair. In the present article we study the more complicated case where only one symmetry is present. Then ℬ consist entirely of trivial equilibria and multipulse heteroclinic pairs. The latter form a very complicated, albeit non-recurrent, set. Graphics of simplest case scenarios for ℬ are included.
Keywords: planar fluid flow, bifurcation without parameters, Takens–Bogdanov bifurcation, spatial dynamics
DOI: 10.3233/ASY-2010-1026
Journal: Asymptotic Analysis, vol. 72, no. 1-2, pp. 31-76, 2011
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