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Unstable flow characteristics in a pump-turbine simulated by a modified Partially-Averaged Navier-Stokes method 被引量:7

Unstable flow characteristics in a pump-turbine simulated by a modified Partially-Averaged Navier-Stokes method
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摘要 Positive slope characteristics are very important for the safe and stable operation of a pump-turbine. In this study, the unsteady flows in a pump-turbine at pump mode are investigated numerically. To predict the positive slope characteristics with an improved accuracy, a modified Partially-Averaged Navier-Stokes(MPANS) model is employed to capture the unstable physics in a pump-turbine. It is confirmed that the present numerical method predicts the positive slope characteristics in the pumpturbine fairly well compared with the experimental data. It is noted that at the drooping point of the performance curve(positive slope), there are three sets of rotating stall cells in the flow passages of both the guide vanes and stay vanes. In the guide vane region, the flow is completely shut off by the rotating stall, whereas in the stay vane region, the flow passage is partly blocked at the drooping point. The numerical results also reveal that the remarkable variation and high angle of attack(AOA) values upstream the leading edge of the guide vane contribute to the flow separation at the vane suction side and induce rotating stall in the flow passage within the positive slope region. Furthermore, the propagation of the rotating stall is depicted by both Eulerian and Lagrangian viewpoints: the rotating stall blocks the flow passage between two neighboring guide vanes and pushes the flow toward the leading edge of the subsequent guide vane. The rotating stall cell shifts along the rotational direction with a much lower frequency(0.146 f_n) compared with the runner rotational frequency, f_n. Positive slope characteristics are very important for the safe and stable operation of a pump-turbine. In this study, the unsteady flows in a pump-turbine at pump mode are investigated numerically. To predict the positive slope characteristics with an improved accuracy, a modified Partially-Averaged Navier-Stokes(MPANS) model is employed to capture the unstable physics in a pump-turbine. It is confirmed that the present numerical method predicts the positive slope characteristics in the pumpturbine fairly well compared with the experimental data. It is noted that at the drooping point of the performance curve(positive slope), there are three sets of rotating stall cells in the flow passages of both the guide vanes and stay vanes. In the guide vane region, the flow is completely shut off by the rotating stall, whereas in the stay vane region, the flow passage is partly blocked at the drooping point. The numerical results also reveal that the remarkable variation and high angle of attack(AOA) values upstream the leading edge of the guide vane contribute to the flow separation at the vane suction side and induce rotating stall in the flow passage within the positive slope region. Furthermore, the propagation of the rotating stall is depicted by both Eulerian and Lagrangian viewpoints: the rotating stall blocks the flow passage between two neighboring guide vanes and pushes the flow toward the leading edge of the subsequent guide vane. The rotating stall cell shifts along the rotational direction with a much lower frequency(0.146 f_n) compared with the runner rotational frequency, f_n.
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第3期406-416,共11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.51536008) Beijing Natural Science Foundation(Grant No.3182014) Science and Technology on Water Jet Propulsion Laboratory(Grant No.61422230103162223004) State Key Laboratory for Hydroscience and Engineering(Grant No.sklhse-2017-E-02)
关键词 PUMP-TURBINE positive slope MODIFIED Partially-Averaged Navier-Stokes(MPANS) model angle of attack(AOA) Lagrangian coherent structure(LCS) pump-turbine positive slope modified Partially-Averaged Navier-Stokes(MPANS) model angle of attack(AOA) Lagrangian coherent structure(LCS)
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  • 1Liu, Feng, Cui, WeiCheng, Li, XiangYang.China’s first deep manned submersible,JIAOLONG[J].Science China Earth Sciences,2010,53(10):1407-1410. 被引量:28
  • 2MURAl H. Observations of cavitation and flow patterns in an axial flow pump at low flow rates[J]. Mem. lnst. High Speed Mech., 1968, 24(246): 315-333. (in Japanese). 被引量:1
  • 3BRAUN O. Part-load flow in radial centrifugal pumps[D]. Lausanne: lcole Polytechnique F6d6rale de Lausanne, 2009. 被引量:1
  • 4RIBI B. Instability phenomena in centrifugal compressors, flow in radial turbomachines[R]. Von Karman Institute Lectures Series, 1996, No. 1966-01. 被引量:1
  • 5TSUJIMOTO . Vaneless diffuser rotating stall and its control, flow in radial turbomachines[R]. Von Karman Institute Lectures Series, 1996, No. 1996-01. 被引量:1
  • 6MIYAKE Y, NAGATA T. Full simulation of a flow in a single stage axial-rotor in rotating stall[C]//Proceedings of the 3rd ASME/JSME Joint Fluids Engineering Conference, San Francisco, USA, July 18-23, 1999:2 969-2 975. 被引量:1
  • 7TSURUSAKI H, KINOSHITA T. Flow control of rotating stall in a radial vaneless diffuser[J]. Journal of Fluids Engineering, 2001, 123(2): 281-288. 被引量:1
  • 8CAO S, GOULAS A, WU Y, et al. Three-dimensional turbulent flow in a centrifugal pump impeller under design and off-design operating conditions[C]//Proceedings of the 3rd ASME/JSME Joint Fluids Engineering Conference, San Francisco, USA, July 18-23, 1999: 1 081-1 089. 被引量:1
  • 9LONGATTE F, KUENY J L. Analysis of rotor stator circuit interactions in a centrifugal pump[C]//Proceedings of the 3rd ASME/JSME Joint Fluids Engineering Conference, San Francisco, USA, July 18-23, 1999:1 039-1 045. 被引量:1
  • 10HASMATUCHI V, FARHAT M, ROTH S, et al. Experimental evidence of rotating stall in a pump-turbine at off-design conditions in generating mode [J]. Journal of Fluids Engineering, 2011, 133(5): 051104-1-8. 被引量:1

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