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High-efficiency design of a mixed-flow pump 被引量:41

High-efficiency design of a mixed-flow pump
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摘要 High-efficiency design of a mixed-flow pump has been carried out based on numerical analysis of a three-dimensional viscous flow.For analysis,the Reynolds-averaged Navier-Stokes equations with a shear stress transport turbulence model were discretized by finite-volume approximations.Structured grid system was constructed in the computational domain,which has O-type grids near the blade surfaces and H/J-type grids in other regions.The numerical results were validated with experimental data for the heads and hydraulic efficiencies at different flow coefficients.The hydraulic efficiency at the design flow coefficient was evaluated with variation of the geometric variables,i.e.,the area of the discharge and length of the vane in the diffuser.The result has shown that the hydraulic efficiency of a mixed-flow pump at the design condition is improved by the modification of the geometry. High-efficiency design of a mixed-flow pump has been carried out based on numerical analysis of a three-dimensional viscous flow.For analysis,the Reynolds-averaged Navier-Stokes equations with a shear stress transport turbulence model were discretized by finite-volume approximations.Structured grid system was constructed in the computational domain,which has O-type grids near the blade surfaces and H/J-type grids in other regions.The numerical results were validated with experimental data for the heads and hydraulic efficiencies at different flow coefficients.The hydraulic efficiency at the design flow coefficient was evaluated with variation of the geometric variables,i.e.,the area of the discharge and length of the vane in the diffuser.The result has shown that the hydraulic efficiency of a mixed-flow pump at the design condition is improved by the modification of the geometry.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第1期24-27,共4页 中国科学(技术科学英文版)
基金 supported by the Korea Institute of Industrial Technology Evaluation and Planning (ITEP) grant funded by the Ministry of Knowledge Economy (Grant No.10031771)
关键词 mixed-flow PUMP numerical analysis IMPELLER VANE DIFFUSER HEAD HYDRAULIC efficiency mixed-flow pump numerical analysis impeller vane diffuser head hydraulic efficiency
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参考文献9

  • 1Goto A.Hydrodynamic design of pump diffuser using inverse design method and CFD. FEDSM 98-4854 . 1998
  • 2Gulich J F.Impact of three-dimensional phenomena on the design of rotodynamic pumps. Proc Inst Mech Eng,Part C,J Power Energy . 1998
  • 3Tamaki H,Nakao H,Saito M.The experimental study of matching between centrifugal compressor impeller and diffuser. ASME J Tur-bomach . 1999
  • 4Oh H W,Kim K Y.Conceptual design optimization of mixed-flow pump impellers using mean streamline analysis. Proc Inst Mech Eng, Part A,J Power Energy . 2000
  • 5Zangeneh M,Goto A,Harada H.On the role of three-dimensional inverse design methods in turbomachinery shape optimization. Proc Inst Mech Eng,Part A,J Power Energy . 1998
  • 6ANSYS CFX-11.0 Solver Theory. . 2006
  • 7MINER S M.CFD Analysis of the first-stage rotor and stator in a two-stage mixed flow pump. International Journal of Rotating Machinery . 2005
  • 8Zangeneh M,Goto A,Takemura T.Suppression of Secondary Flow in a Mixed Flow Pump Impeller by Application of 3D Inverse Design Method. Part 1. Ddesign and Numerical Validation. T. ASME, Journal of turbomachinery . 1996
  • 9F. R. Menter.Ten Years of Industrial Experience with theSST Turbulence Model. Proc of the 4th International Symposium on Turbulence, Heat and Mass Transfer . 2003

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