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- W2045308943 abstract "A class of low-order models for vortex-induced vibrations is analyzed. A classical van der Pol equation models the near wake dynamics describing the fluctuating nature of vortex shedding. This wake oscillator interacts with the equation of motion of a one degree-of-freedom structural oscillator and several types of linear coupling terms modelling the fluid–structure interaction are considered. The model dynamics is investigated analytically and discussed with regard to the choice of the coupling terms and the values of model parameters. Closed-form relations of the model response are derived and compared to experimental results on forced and free vortex-induced vibrations. This allows us to set the values of all model parameters, then leads to the choice of the most appropriate coupling model. A linear inertia force acting on the fluid is thus found to describe most of the features of vortex-induced vibration phenomenology, such as Griffin plots and lock-in domains." @default.
- W2045308943 created "2016-06-24" @default.
- W2045308943 creator A5019766212 @default.
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- W2045308943 date "2004-02-01" @default.
- W2045308943 modified "2023-10-15" @default.
- W2045308943 title "Coupling of structure and wake oscillators in vortex-induced vibrations" @default.
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- W2045308943 doi "https://doi.org/10.1016/j.jfluidstructs.2003.12.004" @default.
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