Analysis of Transient Force Performances of Pump-Turbine during Stop Process in Pump Mode

Author:

Rao Yao,Huili Bi,Jun Wang,Tao Liu,Funan Chen,Honggang Fan,Zhengwei Wang,Jingshi Liu

Abstract

Abstract The stop process occurs frequently for pump turbine due to the requirement of switching from pump mode to turbine mode. During stop process, the operating parameters such as the axial thrust, radial thrust and torque of the runner change rapidly, causing vibration of runner. In some cases, the rotating part can be lifted. In this paper, the unbalanced force acting on a pump-turbine during stop process in pump mode was studied using numerical simulation method. The CFD analysis was based on Reynolds averaged equation and the SST model was used to predict the transient flow characteristics. The clearance flow was also taken into consideration. Results show that the axial thrust was in opposite direction of gravity and changed with the variation of the head and torque. The axial thrust reached the maximum value in no-load condition.

Publisher

IOP Publishing

Subject

General Engineering

Reference9 articles.

1. CFD research on runaway transient of pumped storage power station caused by pumping power failure;Zhang;IOP Conference Series: Materials Science and Engineering,2013

2. 3D unsteady turbulent simulations of transients of the Francis turbine;Li;IOP Conference Series: Earth and Environmental Science,2010

3. Influence of the clearance flow on the load rejection process in a pump-turbine;Fu;Renewable Energy,2018

4. Numerical Analysis of the Transient Behaviour of a Variable Speed Pump-Turbine during a Pumping Power Reduction Scenario;Pavesi;Energies,2016

5. Simulation of the Water Hammer in a Hydro Power Plant based on IB-LB;Ruprecht;Journal of Huazhong University of Science and Technology (Natural Science Edition),2003

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