会议论文详细信息
Francis-99 Workshop 2: transient operation of Francis turbines
CFD simulations of transient load change on a high head Francis turbine
Jakobsen, Ken-Robert G.^1 ; Holst, Martin Aasved^2,3
Senior Technical Consultant, EDRMedeso AS, Norway^1
Manager - Technical Services, EDRMedeso AS, Norway^2
EDRMedeso AS, Leif Tronstads plass 4, Sandvika
1337, Norway^3
关键词: Best efficiency point;    Different operating conditions;    Immersed boundary technique;    Memory requirements;    Numerical approaches;    Steady state and transients;    Steady-state simulations;    Transient simulation;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/782/1/012002/pdf
DOI  :  10.1088/1742-6596/782/1/012002
来源: IOP
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【 摘 要 】

Motivated by the importance of better understanding the structural integrity of high-head hydraulic turbines operating at intermittent conditions, complete 360 steady-state and transient simulations of a Francis turbine are presented in this paper. The main target of the work has been to investigate different numerical approaches such as mesh deformation for different operating conditions. Steady-state simulations were performed at the best efficiency point (BEP) and used as initial conditions for the transient simulations considering load rejection from BEP to part load (BEP2PL) and during load acceptance from BEP to high load (BEP2HL). Simulation results were compared with experimental data available for the Francis-99 project where close agreement was found for the mesh independent solution. The transient load analyses showed general trends in accordance with the measurement reports, especially for the pressure in vaneless space that is of high importance regarding RSI effects. Some deviations were identified for the net head at load rejection for which further investigations will be conducted. All CFD simulations were performed at model scale with ANSYS CFX v. 17 at either 96 or 120 cores (2.60 GHz). The immersed boundary technique was tested during the initial stages of the project, but had to be abandoned due to severe memory requirements. Pressure amplitudes and other instantaneous results were not considered.

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