Influence of runner blade on hydraulic performance of siphon turbine based on CFD
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    Abstract:

    In order to efficiently utilize the ultra-low head water resources, an axial flow turbine with a siphon outlet conduit was designed, and three-dimensional CFD numerical simulations were conducted with the design head and rated runner speed. The hydraulic loss of each flow passage component was calculated to study the hydraulic performance of the siphon turbine. The relationship between the flow regime at the runner outlet and the head loss of the outlet conduit was analyzed by changing the runner blade airfoil, and the influence of different runner blades on the hydraulic performance of the siphon turbine was studied. The results show that, with a constant water head, runner speed, and guide vane opening, the head loss in the outlet conduit of the turbine in the modified scheme with the third blade is at a minimal value of 0. 135 m, the corresponding average swirl angle is 13. 26o, and the turbine efficiency is at the maximum(89. 33%). In addition, the influence of the number of blades on the hydraulic performance of the siphon turbine was analyzed through selection of the blade with the maximum efficiency.

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俞芸芸,秦战生,周大庆,等.基于CFD的转轮叶片对虹吸式水轮机水力性能的影响分析[J].河海大学学报(自然科学版),2017,45(4):298-303.(YU Yunyun, QIN Zhansheng, ZHOU Daqing, et al. Influence of runner blade on hydraulic performance of siphon turbine based on CFD[J]. Journal of Hohai University (Natural Sciences),2017,45(4):298-303.(in Chinese))

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History
  • Received:July 22,2016
  • Revised:
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  • Online: July 06,2017
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