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2014 Nonlinear Dynamical Analysis of Hydraulic Turbine Governing Systems with Nonelastic Water Hammer Effect
Junyi Li, Qijuan Chen
J. Appl. Math. 2014(SI23): 1-11 (2014). DOI: 10.1155/2014/412578

Abstract

A nonlinear mathematical model for hydroturbine governing system (HTGS) has been proposed. All essential components of HTGS, that is, conduit system, turbine, generator, and hydraulic servo system, are considered in the model. Using the proposed model, the existence and stability of Hopf bifurcation of an example HTGS are investigated. In addition, chaotic characteristics of the system with different system parameters are studied extensively and presented in the form of bifurcation diagrams, time waveforms, phase space trajectories, Lyapunov exponent, chaotic attractors, and Poincare maps. Good correlation can be found between the model predictions and theoretical analysis. The simulation results provide a reasonable explanation for the sustained oscillation phenomenon commonly seen in operation of hydroelectric generating set.

Citation

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Junyi Li. Qijuan Chen. "Nonlinear Dynamical Analysis of Hydraulic Turbine Governing Systems with Nonelastic Water Hammer Effect." J. Appl. Math. 2014 (SI23) 1 - 11, 2014. https://doi.org/10.1155/2014/412578

Information

Published: 2014
First available in Project Euclid: 27 February 2015

zbMATH: 07131579
Digital Object Identifier: 10.1155/2014/412578

Rights: Copyright © 2014 Hindawi

Vol.2014 • No. SI23 • 2014
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