DocumentCode
3593033
Title
Hydraulic transient process research technologyand engineering application on the complex water tunnel conveyance system of hydropower station
Author
Taoping Zheng ; Ziqin Tian ; Shaobo Gui ; Jing Li ; Haiqing Zou
Author_Institution
Changjiang Surveying, Planning, Design & Res. Co., Ltd., Wuhan, China
fYear
2014
Firstpage
1
Lastpage
5
Abstract
Based on Three Gorges underground power station, a numerical prediction model with pressure & free-surface mixed flow and a complete simulation model test stand with model hydro-turbine generator unit for hydraulic transient process have been set up. By means of numerical simulation calculation, complete simulation model test with model hydro-turbine generator unit, prototype hydrogenerator unit field monitoring and inverse calculation, a new structure pattern with tailrace tunnel of slopping ceiling and damping tank for Three Gorges underground station giant hydro-turbine generator unit has been proposed and verified, which resolves effectively the complex technology problem that the giant surge chamber cannot be built as the poor geological conditions. Therefore, the successful construction of hydropower station and stable operation of hydro-turbine generator units have been guaranteed. The research results provide reliable method and basis for improving and optimizing the numerical simulation model for unsteady flow in the tailrace tunnel of slopping ceiling and Three Gorges giant hydro-turbine generator unit commissioning and steady operation control strategy. Moreover, it can provide reference for hydraulic transient process research of other hydropower station with complex water conveyance system.
Keywords
flow instability; flow simulation; hydraulic turbines; hydroelectric power stations; numerical analysis; turbogenerators; Three Gorges underground power station; complete simulation model test; complex water tunnel conveyance system; damping tank; engineering application; free-surface mixed flow; geological condition; hydraulic transient process research technology; hydropower station; hydroturbine generator unit operation stability; inverse calculation; numerical prediction model; numerical simulation calculation; numerical simulation model; prototype hydrogenerator unit field monitoring; slopping ceiling; steady operation control strategy; surge chamber; tailrace tunnel; unsteady flow; Complete Simulation Model Test with Model Hydro-Turbine Generator Unit; Giant Hydro-Turbine Generator Unit; Hydraulic Transient Process Calculation; Inverse Calculation and Prediction; Prototype Hydro-Turbine Generator Unit Field Monitoring;
fLanguage
English
Publisher
iet
Conference_Titel
Fluid Machinery and Fluid Engineering, 2014 ISFMFE - 6th International Symposium on
Print_ISBN
978-1-84919-907-0
Type
conf
DOI
10.1049/cp.2014.1135
Filename
7124056
Link To Document