会议论文详细信息
28th IAHR symposium on Hydraulic Machinery and Systems
Analysis on regulation strategies for extending service life of hydropower turbines
Yang, W.^1,2 ; Norrlund, P.^1,3 ; Yang, J.^2
Department of Engineering Sciences, Uppsala University, Uppsala
SE-751 21, Sweden^1
State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan
430072, China^2
Vattenfall RandD, Älvkarleby
SE-814 26, Sweden^3
关键词: Frequency deviation;    Frequency quality;    Hydropower plants;    On-site measurement;    Proportional integral;    Theoretical formula;    Turbine governors;    Turbine operation;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/49/5/052013/pdf
DOI  :  10.1088/1755-1315/49/5/052013
来源: IOP
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【 摘 要 】

Since a few years, there has been a tendency that hydropower turbines experience fatigue to a greater extent, due to increasingly more regulation movements of governor actuators. The aim of this paper is to extend the service life of hydropower turbines, by reasonably decreasing the guide vane (GV) movements with appropriate regulation strategies, e.g. settings of PI (proportional-integral) governor parameters and controller filters. The accumulated distance and number of GV movements are the two main indicators of this study. The core method is to simulate the long-term GV opening of Francis turbines with MATLAB/Simulink, based on a sequence of one-month measurements of the Nordic grid frequency. Basic theoretical formulas are also discussed and compared to the simulation results, showing reasonable correspondence. Firstly, a model of a turbine governor is discussed and verified, based on on-site measurements of a Swedish hydropower plant. Then, the influence of governor parameters is discussed. Effects of different settings of controller filters (e.g. dead zone, floating dead zone and linear filter) are also examined. Moreover, a change in GV movement might affect the quality of the frequency control. This is also monitored via frequency deviation characteristics, determined by elementary simulations of the Nordic power system. The results show how the regulation settings affect the GV movements and frequency quality, supplying suggestions for optimizing the hydropower turbine operation for decreasing the wear and tear.

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