DocumentCode
1263890
Title
Study of hydraulic transients in hydropower plants through simulation of nonlinear model of penstock and hydraulic turbine model
Author
Souza, O.H., Jr. ; Barbieri, N. ; Santos, A.H.M.
Author_Institution
Power Co., Centro Politecnico da UFPR, Parana, Brazil
Volume
14
Issue
4
fYear
1999
fDate
11/1/1999 12:00:00 AM
Firstpage
1269
Lastpage
1272
Abstract
Study of hydraulic transients in hydropower plants specifically in hydraulic turbine units, with penstock, spiral case and draft tube-is necessary due to power and frequency oscillations which normally occur in generator units, mainly during load rejections. In turn, this causes large pressure and subpressure oscillations in turbine hydraulic systems and must be evaluated to avoid mechanical failures. In this context, this work analyses discrete hydraulic systems with emphasis on hydraulic parameter analysis. The simulation used was developed based on analog mathematical models of transient phenomenon equations and on a hydro turbine model. The results were obtained by using a nonlinear analog-digital simulation method. Comparisons between results of a theoretical simulation of a literature example using the characteristics method and the results obtained with the present method are presented. Theoretical simulation results obtained from a 360 MW turbine and experimental results are also confronted
Keywords
discrete systems; fluid oscillations; hydraulic systems; hydraulic turbines; hydroelectric power stations; transients; 360 MW; discrete hydraulic systems; frequency oscillations; generator units; hydraulic parameter analysis; hydraulic transients; hydraulic turbine units; hydropower plants; nonlinear analog-digital simulation method; power oscillations; pressure oscillations; subpressure oscillations; transient phenomenon equations; Circuit simulation; Context modeling; Differential equations; Educational technology; Hydraulic systems; Hydraulic turbines; Hydroelectric power generation; Nonlinear equations; Power engineering education; Power system transients;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/59.801883
Filename
801883
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