Pressure Oscillations with Ultra-Low Frequency Induced by Vortical Flow Inside Francis Turbine Draft Tubes

22 Pages Posted: 10 Jul 2021

See all articles by Chen Geng

Chen Geng

Tsinghua University

Ying Li

Chinergy Co., Ltd.

Yoshinobu Tsujimoto

Osaka University

Michihiro Nishi

Kyushu Institute of Technology

Xianwu Luo

Tsinghua University

Abstract

The present paper investigates the pressure oscillations with ultra-low frequency induced by the precessing vortex rope (PVR) whose frequency f PVR is one-fifth of runner frequency for a model Francis turbine operated at part-load condition. Numerical simulations based on the MSST PANS model are conducted to reveal the vortical flow and the DMD method is applied to analyze the modes for unstable flow inside the draft tubes. To make out the effect of draft tube structure on the PVR and pressure oscillation, both conventional elbow draft tube (EDT) and conical draft tube (CDT) are treated in the study. Two pressure oscillation components with ultra-low frequencies (near one third and two third of f PVR ) are captured in the EDT. The internal flow analysis depicts that the pressure oscillations with ultra-low frequency occur due to the strong interaction between the PVR and the backflow in the draft tube, and the elbow structure promotes the interaction and the swirling flow. It is noted that cavitation changes the dynamic characteristics of the vortex rope significantly. Cavitation alleviates the strong interaction between vortex rope and backflow, and suppresses the pressure oscillations with ultra-low frequency in the draft tube.

Suggested Citation

Geng, Chen and Li, Ying and Tsujimoto, Yoshinobu and Nishi, Michihiro and Luo, Xianwu, Pressure Oscillations with Ultra-Low Frequency Induced by Vortical Flow Inside Francis Turbine Draft Tubes. Available at SSRN: https://ssrn.com/abstract=3883870 or http://dx.doi.org/10.2139/ssrn.3883870

Chen Geng (Contact Author)

Tsinghua University ( email )

Beijing, 100084
China

Ying Li

Chinergy Co., Ltd. ( email )

Yoshinobu Tsujimoto

Osaka University ( email )

1-1 Yamadaoka
Suita
Osaka, 565-0871
Japan

Michihiro Nishi

Kyushu Institute of Technology ( email )

Kitakyushu
Japan

Xianwu Luo

Tsinghua University ( email )

Beijing, 100084
China

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