Experimental investigation on diffuser rotating stall in a three-stage centrifugal pump

Taiki Takamine, Satoshi Watanabe, Daichi Furukawa, Hiroyoshi Watanabe, Kazuyoshi Miyagawa

    研究成果: Conference contribution

    3 被引用数 (Scopus)

    抄録

    Rotating stall phenomenon frequently causes the troubles such as vibrations acting on the shaft system and reduces the reliability of turbomachines. In the present study, the diffuser rotating stall in a three-stage centrifugal pump was experimentally studied. Special emphasises were placed on the geometrical conditions; an axial offset of rotor against the stationary part, which might be unavoidable due to accumulation of geometrical tolerances and assembling errors., and the radial clearances of annular leakage paths which increases the thru-flow rate at the impellers and the first and second stage diffusers. As a result, with the rotor axial offset to the suction side, the rotating stall appeared only at the third stage diffuser, while with that to the discharge side, the rotating stall was more significant. By enlarging the leakage flow passages at the inter-stage bush and the balancing flow channel, the onset range of rotating stall became narrower in the first and second stage diffusers, which was well explained by the increase of the thru-flow rate. On the other hand, with the enlarged leakage passage at the liner ring, the onset range

    本文言語English
    ホスト出版物のタイトルSymposia
    ホスト出版物のサブタイトルKeynotes; Advances in Numerical Modeling for Turbomachinery Flow Optimization; Fluid Machinery; Industrial and Environmental Applications of Fluid Mechanics; Pumping Machinery
    出版社American Society of Mechanical Engineers (ASME)
    1A-2017
    ISBN(電子版)9780791858042
    DOI
    出版ステータスPublished - 2017 1月 1
    イベントASME 2017 Fluids Engineering Division Summer Meeting, FEDSM 2017 - Waikoloa, United States
    継続期間: 2017 7月 302017 8月 3

    Other

    OtherASME 2017 Fluids Engineering Division Summer Meeting, FEDSM 2017
    国/地域United States
    CityWaikoloa
    Period17/7/3017/8/3

    ASJC Scopus subject areas

    • 機械工学

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