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Dynamic Simulation in Guide Vane Opening Process of a Pump-Turbine in Pump Mode

Publish Year: 1396
Type: Journal paper
Language: English
View: 253

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Document National Code:

JR_JAFM-10-5_019

Index date: 17 January 2022

Dynamic Simulation in Guide Vane Opening Process of a Pump-Turbine in Pump Mode abstract

During the process of switching conditions in pump-turbine, unstable flow would take place and seriously impact on the stability and safety. This paper deals with the guide vanes’ moving process in pump mode through unsteady numerical simulations. Dynamic mesh methodology is used for simulations in which GVO (Guide Vane Opening) from 9mm to 26mm. Simulation results approve that, there are many complex vortex structures and flow blockages phenomena under small GVO condition. Through the mathematical method of Fast Fourier Transform (FFT) and Short-Time Fourier Transform (STFT), the dominant pressure fluctuation frequencies are from runner blade passing frequency (BPF) and its harmonic frequency, as well as some other low frequencies are from unsteady flow states. Furthermore, the flow states are more unstable and complex under small guide vanes moving process. Compared with fixed GVO position, the flow states are more unstable and complex under guide vanes moving process, while the amplitude of main frequencies becomes higher.

Dynamic Simulation in Guide Vane Opening Process of a Pump-Turbine in Pump Mode Keywords:

Dynamic Simulation in Guide Vane Opening Process of a Pump-Turbine in Pump Mode authors

L. Han

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin ۱۵۰۰۰۱, China

H. J. Wang

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin ۱۵۰۰۰۱, China

Y. H. Gao

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin ۱۵۰۰۰۱, China

D. Y. Li

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin ۱۵۰۰۰۱, China

R. Z. Gong

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin ۱۵۰۰۰۱, China

X. Z. Wei

State Key Laboratory of Hydro-Power Equipment, Harbin Institute of Large Electrical Machinery, Harbin ۱۵۰۰۴۰, China