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Numerical simulation of pressure fluctuation in Kaplan turbine 被引量:9

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摘要 As it is almost impossible to carry out the prototype hydro-turbine experiment be- fore the power plant is built up, rational prediction of pressure fluctuations in the prototype turbine is very important at the design stage. From this viewpoint, we at first treated the unsteady turbulent flow computation based on the modified RNG k-ε turbulence model through the whole flow passage to simulate the pressure fluctuation in a model turbine. Since fair agreement was recognized between the numerical results and the experimental data, this numerical method was applied to simulate the pressure fluctuations in the prototype turbine. From the comparison of them with the model turbine results, it is seen that their qualitative trend of pres- sure fluctuations are similar, but an appreciable difference is observed between the amplitudes of pressure fluctuation of the prototype turbine and that of the model turbine. Though the present findings may be explained by the effect of Reynolds number, further studies are expected for quantitative interpretation. We paid atten- tion to the interaction between the fluid and turbine structure. Adopting a weak fluid-solid coupling method, we studied the pressure fluctuation in the prototype turbine to clarify how the elastic behavior of runner blades influenced the charac- teristics of pressure fluctuation. As it is almost impossible to carry out the prototype hydro-turbine experiment before the power plant is built up, rational prediction of pressure fluctuations in the prototype turbine is very important at the design stage. From this viewpoint, we at first treated the unsteady turbulent flow computation based on the modified RNG k-? turbulence model through the whole flow passage to simulate the pressure fluctuation in a model turbine. Since fair agreement was recognized between the numerical results and the experimental data, this numerical method was applied to simulate the pressure fluctuations in the prototype turbine. From the comparison of them with the model turbine results, it is seen that their qualitative trend of pressure fluctuations are similar, but an appreciable difference is observed between the amplitudes of pressure fluctuation of the prototype turbine and that of the model turbine. Though the present findings may be explained by the effect of Reynolds number, further studies are expected for quantitative interpretation. We paid attention to the interaction between the fluid and turbine structure. Adopting a weak fluid-solid coupling method, we studied the pressure fluctuation in the prototype turbine to clarify how the elastic behavior of runner blades influenced the characteristics of pressure fluctuation.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2008年第8期1137-1148,共12页 中国科学(技术科学英文版)
基金 Supported by the National Natural Science Foundation of China(Grant No.90410019)
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参考文献19

  • 1杨建明,吴玉林,曹树良.流体机械中高雷诺数流动的大涡模拟[J].工程热物理学报,1998,19(2):184-188. 被引量:5
  • 2Victor Yakhot,Steven A. Orszag.Renormalization group analysis of turbulence. I. Basic theory[J]. Journal of Scientific Computing . 1986 (1)
  • 3Vu T C,Nennemann B.Modern trend of CFD application for hydraulic design procedure. Proceedings of 23rd IAHR Sym- posium Hydraulic Machinery and Systems . 2006
  • 4Gehrer A,Schmidl R,Sadnik D.Kaplan turbine runner optimization by numerical flow simulation (CFD) and an evolu- tionary algorithm. Proceedings of 23rd IAHR Symposium on Hydraulic Machinery and Systems . 2006
  • 5Jaeger E U,Seidel U.Pressure fluctuations in francis turbines. Voith Hydro Internal Report . 1999
  • 6Ruprecht A,,Heitele M.Numerical simulation of a complete francis turbine including unsteady rotor/stator interactions. Proceedings of the 20th IAHR Symposium on Hydraulic Machinery and Systems . 2000
  • 7Chen X,Song C C.Simulation of pressure fluctuations in pump-turbines induced by runner-guide vane in- teractions. Proceedings of the 20th IAHR Symposium on Hydraulic Machinery and Systems . 2000
  • 8Wang Z W,Zhou L J.Simulations and measurements of pressure oscillations caused by vortex ropes. Journal of Fluids Engineering Transactions of the ASME . 2006
  • 9Nilsson H,Davidson L.A numerical comparison of operation in a Kaplan water turbine, focusing on tip clearance flow. Proceedings of the 20th IAHR Symposium on Hydraulic Machinery and Systems . 2000
  • 10Nilsson H,Davidson L.Validations and investigations of the computed flow in the GAMM Francis runner and the H?lle- forsen Kaplan runner. Proceedings of the XXIst IAHR Symposium on Hydraulic Machinery and Systems . 2002

二级参考文献5

  • 1吴玉林,Proc 2th Int Conf on Pumps and Fans,1995年
  • 2周恒,湍流,1990年,71页
  • 3金忠青,N-S方程数值解和紊流模型,1989年
  • 4陈景仁,湍流模型及有限分析法,1989年
  • 5Charles C S,XVIII IAHR Symp,935页

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