Numerical simulation of pressure fluctuation of a pump-turbine with MGV at no-load condition

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Abstract

In order to analyse the pressure fluctuation caused by misaligned guide vanes (MGV) during starting period at no-load condition, 3-D (three dimensional), unsteady flows in a pump-turbine were numerically studied. Pressure fluctuations of different points at no-load condition are obtained. Fast Fourier Transform(FFT) was used to analyse the frequency spectrum of pressure fluctuations. The amplitude and dominant frequency of pressure fluctuation at vaneless space between the runner and guide vane, as well as the inlet of draft tube, was investigated. The amplitude of pressure fluctuation of the pump-turbine with MGV device is twice that of synchronous vanes. This might be caused by the non-uniform flow in the pump-turbine due to the pre-opened guide vanes. The pump-turbine with synchronous vanes has a low frequency which is 0.33fn, while the low frequency changes into 0.63fn when the MGV device is used. The vortex rope in the draft tube is large than that of synchronize vanes. Resultsof pressure fluctuations with synchronous vanes agree with each other between computational and testing results. The numerical study of pressure fluctuations with MGV can provide a basic understanding for the improvement of the instability of a pump-turbine. © Published under licence by IOP Publishing Ltd.

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Liu, J. T., Liu, S. H., Sun, Y. K., Wu, Y. L., & Wang, L. Q. (2012). Numerical simulation of pressure fluctuation of a pump-turbine with MGV at no-load condition. In IOP Conference Series: Earth and Environmental Science (Vol. 15). https://doi.org/10.1088/1755-1315/15/6/062036

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