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On-Cam Operation of Counter-Rotating Type Hydroelectric Unit 被引量:1

On-Cam Operation of Counter-Rotating Type Hydroelectric Unit
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摘要 The counter-rotating type hydroelectric unit, which is composed of the axial flow type tandem runners and the peculiar generator with double rotational armatures, has been proposed. In the unit, the front and the rear runners counter-drive the inner and the outer armatures of the generator, respectively. Besides, the flow direction at the rear runner outlet must coincide with the direction at the front runner inlet, because the angular momentum change through the rear runner must coincides with that through the front runner. In this paper, the tandem runners work at on-cam conditions in keeping the induced frequency constant, to provide the hydroelectric unit for the power grid system. The output and the hydraulic efficiency are affected by the adjusting angles of the front and the rear blades. Both optimum angles giving the maximum output or efficiency were presented at the various discharge/head circumstances, accompanying with the turbine performances.
出处 《Journal of Energy and Power Engineering》 2013年第10期1966-1973,共8页 能源与动力工程(美国大卫英文)
关键词 Hydroelectric unit counter rotation tandem runners double rotational armatures on-cam. 水力发电机组 旋转式 机组运行 凸轮 流动方向 电网系统 水电机组 调整角度
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  • 1L. Losbichler, Bulb-type turbine generator units for the world's largest tidal power plant, in: Proceedings of 14th International Seminar on Hydropower Plants, Austria, 2006, pp. 455-464.
  • 2Y. Kyozuka, An experimental study on the darrieus-savonius turbine for the tidal current power generation, J. Fluid Science and Technology 3 (3) (2008) 439-449.
  • 3A. Furukawa, P.A. Gajanayake, K. Okuma, Application of darrieus-type turbine developed for low head hydro-power to tidal power generation system, in: Proceedings of the 8th International Offshore and Polar Engineering Conference, Montreal, 1998, pp. 155-161.
  • 4J. Fukutomi, Y. Nakase., Cross-flow turbine with axis-symmetric casing for wave power conversion, in:Proceedings of the 5th Asian International Conference on Fluid Machinery, Seoul, 1997, pp. 849-856.
  • 5T.K. Nielsen, J. Royrvik, J. Ramdai, O.G. Dahlhaug, Propeller turbine with two contra-rotating impellers and built in generator, in: Proceedings of the 23rd IAHR Symposium, Yokohama, 2006.
  • 6T. Kanemoto, D. Tanaka, T. Kashiwabara, M. Uno, M. Nemoto, Tidal current power generation system for boarding on a floating buoy, International Journal of Offshore and Polar Engineering 11 (1) (2001) 77-79.
  • 7D. Tanaka, T. Kanemoto, Experimental study on design materials for solidity of counter-rotating runners, in: Proceedings of the 23th IAHR Symposium, Yokohama, 2006.
  • 8B. Ignjatovic, The optimum cam characteristic and somecomplex measurements on bulb turbine at HPS "DJERDAP II", in: Proceedings of 15th IAHR Symposium, Belgrade, 1990, No. B5.
  • 9T.C. Vu, M. Koller, M. Gauthier, C. Desch~nes, Flow simulation and efficiency hill chart prediction for a propeller turbine, in: Proceedings of 25th IAHR Symposium, Romania, 2010, No. 10A4.
  • 10T. Kanemoto, K. Kubo, Intelligent wind power unit with tandem wind rotors, in: W. Tong (Ed.), Wind Power Generation and Wind Turbine Design, WIT Press, 2010, pp. 333-361 (Chapter 10).

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