Article (Scientific journals)
Bifurcation analysis and limit cycle oscillation amplitude prediction methods applied to the aeroelastic galloping problem
Vio, Gareth Arthur; Dimitriadis, Grigorios; Cooper, Jonathan E
2007In Journal of Fluids and Structures, 23 (7)
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Keywords :
galloping; aeroelasticity; harmonic balance; normal form; numerical continuation; cell mapping; centre manifold
Abstract :
[en] A global stability and bifurcation analysis of the transverse galloping of a square section beam in a normal steady flow has been implemented. The model is an ordinary differential equation with polynomial damping nonlinearity. Six methods are used to predict bifurcation, the amplitudes and periods of the ensuing Limit Cycle Oscillations: (i) Cell mapping, {ii} Harmonic Balance, (iii) Higher Order Harmonic Balance,(iv) Centre Manifold linearization, (v) Normal Form and (vi) Numerical Continuation. The resulting stability predictions are compared with each other and with results obtained from numerical integration. The advantages and disadvantages of each technique are discussed. It is shown that, despite the simplicity of the system, only two of the methods succeed in predicting its full response spectrum. These are Higher Order Harmonic Balance and Numerical Continuation.
Disciplines :
Civil engineering
Mechanical engineering
Aerospace & aeronautics engineering
Author, co-author :
Vio, Gareth Arthur;  University of Liverpool > Department of Engineering
Dimitriadis, Grigorios ;  Université de Liège - ULiège > Département d'aérospatiale et mécanique > Intéractions fluide structure et aérodynamique expérimentale
Cooper, Jonathan E;  University of Liverpool > Department of Engineering
Language :
English
Title :
Bifurcation analysis and limit cycle oscillation amplitude prediction methods applied to the aeroelastic galloping problem
Publication date :
2007
Journal title :
Journal of Fluids and Structures
ISSN :
0889-9746
eISSN :
1095-8622
Publisher :
Academic Press, London, United Kingdom
Volume :
23
Issue :
7
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 12 December 2008

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