Vortex‐Induced Vibration of Circular Cylinders. II: New Model
This article is a reply.
VIEW THE ORIGINAL ARTICLEPublication: Journal of Engineering Mechanics
Volume 119, Issue 11
Abstract
The analytical work presented in this paper closely follows the data obtained from new experiments on vortex‐induced vibration of circular cylinders in air. The experimental data are presented in the companion paper preceding in the journal. The vortex‐induced vibration of a flexibly supported circular cylinder is modeled by a new single‐degree‐of‐freedom model with velocity‐dependent coefficients. The model is of the ordinary differential equation type with a self‐excited, self‐limiting van der Pol‐type aeroelastic damping pair and an aeroelastic parametric excitation term. The latter term is the innovative addition in the current model. The development of the model equations is outlined, following which it is analyzed and its parameters estimated in conjunction with the data from experiments reported in the companion paper. The model and its parameters have been rendered dimensionless in the analysis, to facilitate universal applicability.
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Copyright © 1993 American Society of Civil Engineers.
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Received: Aug 26, 1992
Published online: Nov 1, 1993
Published in print: Nov 1993
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