Analysis of transient flow in a pump-turbine during the load rejection process

被引:1
|
作者
Xiaolong Fu
Deyou Li
Hongjie Wang
Guanghui Zhang
Zhenggui Li
Xianzhu Wei
机构
[1] Harbin Institute of Technology,School of Energy Science and Engineering
[2] Ministry of Education Sichuan,Key Laboratory of Fluid and Power Machinery (Xihua University)
[3] Harbin Institute of Large Electrical Machinery,State Key Laboratory of Hydro
关键词
Pump-turbine; Load rejection process; Numerical simulation; Flow analysis; Unsteady vortex flow;
D O I
暂无
中图分类号
学科分类号
摘要
The transient flow in pump-turbines during the load rejection process is very complex. However, few studies have been conducted on three-dimensional (3-D) numerical simulation. Hence, we simulated 3-D transient turbulent flow in a pump-turbine during the load rejection process using the calculation method of coupling the flow with the rotor motion of rigid body. To simulate the unsteady boundary conditions, the dynamic closing process of the guide vanes was simulated with the dynamic mesh technology. The boundary conditions at the spiral-casing inlet and the draft tube outlet were determined using the user defined functions (UDF) according to the experimental data. The numerical results of the rotational speeds show a good agreement with the experimental data. Then, the complex transient flow in the pump-turbine during the load rejection process was analyzed based on the numerical results. The results show that there are severe unsteady vortex flows in the vaneless space near the conditions under which the hydraulic torque on the runner equals to zero. When the pump-turbine operates into the maximum reverse discharge condition in the reverse pump operating process, the unsteady vortex flows in the vaneless space are instantaneously impacted into the region between the guide vanes and the stay vanes by the sudden reverse flows. The formation and development mechanism of the unsteady vortex flow in the vaneless space is associated with the distribution characteristic of the velocity field.
引用
收藏
页码:2069 / 2078
页数:9
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