Research on the Hydraulic Excitation Characteristics of the Top Cover Caused by the Radial Installation Deviation of the Seal of a 1GW Francis Turbine

Author:

Jin Kun1,Lu Yonggang23ORCID,Lin Peng1,Zhang Zequan23,Li Juan1,Zhao Yun23,Huang Xingxing24ORCID,Wang Zhengwei2ORCID

Affiliation:

1. China Three Gorges Construction Engineering Corporation, Chengdu 610041, China

2. Department of Energy and Power Engineering, Tsinghua University, Beijing 100084, China

3. School of Energy and Power Engineering, Jiangsu University, Zhenjiang 212013, China

4. S.C.I. Energy, Future Energy Research Institute, Seidengasse 17, 8706 Zurich, Switzerland

Abstract

The radial installation deviation of the turbine runner will change the gap flow between the upper crown and the lower ring seal, which will affect the radial force of the runner and the hydraulic excitation characteristics of the top cover. This research focuses on the 1GW Francis turbine on the right bank of the Baihetan hydropower station. The pressure distribution along the circumference of the top cover was analyzed, and the effects of deviations on the specific generation of hydraulic excitation forces were studied. This research shows that the increase in radial deviation will slightly reduce the output and efficiency, and the radial force on the runner increases parabolically. When the radial deviation is 1.5 mm, the radial force is 5.9 times higher compared to the case without any deviation, and the radius of the fitting circle of the radial force behavior trajectory increases with the increase in radial deviation. In addition, the radial deviation has little effect on the internal flow of the runner and the pressure distribution in the upper crown chamber. The dominant frequency components at the upstream monitoring points include fn, 15 fn, 24 fn, and 30 fn. The dominant frequency components at the downstream monitoring points include the blade passing frequencies of 15 fn and 30 fn. However, with the increase in radial deviation, the fluctuation amplitudes exhibit an asymmetric distribution, the uniformity of the pressure distribution in the circumferential direction of the labyrinth seal area becomes significantly worse, and the waveform of the downstream monitoring points changes significantly and presents a non-uniform distribution in one rotation cycle.

Funder

Three Gorges Construction Group Co., Ltd.

China Postdoctoral Science Foundation Funded Project

Natural Science Foundation of Jiangsu Province

Fund Program of State Key Laboratory of Hydroscience and Engineering

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference21 articles.

1. Zhang, Z.L., Liu, B., and Wang, F.Q. (2023). Innovation and Development of Conventional Hydropower and Pumped-storage Technology in China. Water Power, 1–7.

2. Analysis on Structure of Leakage-check Ring and Decompression Device of Upper Runner Crown;Zhang;Heilongjiang Hydraul. Sci. Technol.,2023

3. The influence of sealing clearance value of Francis runner on the unit stability;Ma;J. Hydroelectr. Eng.,2010

4. Overview and discussion on hydraulic axial thrust in Francis turbine research;Zhou;J. Hydraul. Eng.,2019

5. Numerical Simulation on the Francis Hydraulic Turbine Runner’s Sealing Device and Relief Pipes;Dong;J. Xi’an Univ. Technol.,2008

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