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Intermittency in pitch-plunge aeroelastic systems explained through stochastic bifurcations
Published in Springer Netherlands
2018
Volume: 92
   
Issue: 3
Pages: 1225 - 1241
Abstract
Aeroelastic systems with hardening nonlinearity exhibit supercritical Hopf bifurcation when the flow velocity exceeds a critical velocity leading to self-sustaining large amplitude limit cycle oscillations known as flutter. This study investigates the effects of irregular fluctuations in the flow on the dynamical stability characteristics of a two-degree-of-freedom pitch-plunge aeroelastic system with hardening nonlinearity. Dynamical or D-bifurcations are investigated through the computation of the largest Lyapunov exponent, while phenomenological or P-bifurcation analysis is carried out by examining the structure of the joint probability density function of the response quantities and their instantaneous time derivatives. The qualitative nature of P-bifurcation analysis makes it difficult to pinpoint the regimes of different response dynamics. In the light of this difficulty, a quantitative analysis using the Shannon entropy measure has been undertaken to quantify the P-bifurcation regime. This regime is shown to be coincident with the intermittency regime observed in the response time histories prior to flutter oscillations in fluctuating flows. © 2018, Springer Science+Business Media B.V., part of Springer Nature.
About the journal
JournalData powered by TypesetNonlinear Dynamics
PublisherData powered by TypesetSpringer Netherlands
ISSN0924090X
Open AccessNo
Concepts (19)
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    Aeroelasticity
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    Bifurcation (mathematics)
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    Degrees of freedom (mechanics)
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    Flow velocity
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    Flutter (aerodynamics)
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    Hardening
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    Lyapunov methods
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    Probability density function
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    Stability
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    Stochastic systems
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    AEROELASTIC FLUTTER
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    Intermittency
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    JOINT PROBABILITY DENSITY FUNCTION
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    LARGEST LYAPUNOV EXPONENT
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    Limit cycle oscillation (lco)
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    P-BIFURCATION
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    RANDOM FLOWS
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    Supercritical hopf bifurcation
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    Hopf bifurcation