DocumentCode :
2606572
Title :
Effect of the coupling between hydraulic turbine set and power grid on power grid dynamic stability
Author :
Jianbo, Xin ; Zhiyong, Han ; Renmu, He
Author_Institution :
Jiangxi Provincial Electr. Power Res. Inst., Nanchang, China
fYear :
2009
fDate :
6-7 April 2009
Firstpage :
1
Lastpage :
5
Abstract :
With the proportion of hydroelectric power station in power grid and the single-turbine capacity larger and larger, the effect of hydraulic turbine set on power system dynamic stability will be more significant. The power oscillation phenomenon, which affects the safe and stable operation of power system, occurred many times in China. For example, on October 29th, 2005, low frequency oscillation occurred in Central China Power Grid. The most of researches on the hydraulic turbine system and power system were carried out independently in the past. First, according to the physical characteristics of the draft tube hydraulic system, the hydraulic turbine set model considering the draft tube hydraulic pressure dynamic was established in this paper. Secondly, based on the single machine infinite bus system, the effect of draft tube hydraulic pressure pulsation on the power grid dynamic security and stability was studied and the coupling between the hydraulic turbine set and power grid was investigated. Thirdly, taking Zhelin Hydropower Plant in Jiangxi Power Grid as an example, the influence of the draft tube hydraulic pressure pulsation to power grid stability was illustrated in this paper. The loads of unit 5, 6 at Zhelin hydropower station have a wide range of vortex operating conditions, about 20~100 MW. In this case, the vortex frequency will enhance as the loads of vortex operation conditions increase.
Keywords :
hydraulic turbines; hydroelectric power stations; power grids; power system security; power system stability; Central China Power Grid; Jiangxi Power Grid; Zhelin Hydropower Plant; Zhelin hydropower station; draft tube hydraulic pressure; hydraulic turbine set; hydraulic turbine system; hydroelectric power station; infinite bus system; power 20 MW to 100 MW; power grid dynamic stability; Frequency; Hydraulic systems; Hydraulic turbines; Hydroelectric power generation; Power generation; Power grids; Power system dynamics; Power system modeling; Power system security; Power system stability; Hydraulic Turbine Set; Low Frequency Oscillation; Power Grid; Resonance Mechanism;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sustainable Power Generation and Supply, 2009. SUPERGEN '09. International Conference on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-4934-7
Type :
conf
DOI :
10.1109/SUPERGEN.2009.5348381
Filename :
5348381
Link To Document :
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