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A three-dimensional fully coupled numerical model for vortex-induced vibration of flexible tube is proposed.
In the present study, a lumped parameter model for vortex-induced vibrations is analysed.
A model for vortex-induced vibration analysis of long-span bridge is presented in this paper.
A mathematical model for vortex-induced vibration of circular, cylindrical structures that is presented in this paper is based on the unsteady flow theory.
A van der Pol-type equation is used in the Ehsan Scanlan's model, which for practical reasons seems to be the more suitable model for vortex-induced vibration of bridge decks.
To analyze a simple model for a vortex, Rankine's combined vortex was utilized.
We continue the work on backstepping controllers previously designed for the Ginzburg-Landau model of vortex shedding developed for the 2D case by adding another dimension.
To validate the model for the vortex structures of volcanic plumes, we applied it to plumes generated in 3-D numerical simulations.
The current study examines the performance of TLCBD for a harmonic excitation which is a simplified model for the vortex shedding forces on structures in the cross wind direction.
This study derives a model for the vortex-induced vibration and the stochastic response of a tall building in strong non-synoptic wind regimes.
This paper presents a novel Wake Oscillator Model for predicting Vortex-Induced Vibration (VIV) of a circular cylinder close to a plane boundary.
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