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Investigation of CFD Calculation Method of a Centrifugal Pump with Unshrouded Impeller 被引量:7

Investigation of CFD Calculation Method of a Centrifugal Pump with Unshrouded Impeller
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摘要 Currently, relatively large errors are found in numerical results in some low-specific-speed centrifugal pumps with unshrouded impeller because the effect of clearances and holes are not accurately modeled. Establishing an accurate analytical model to improve performance prediction accuracy is therefore necessary. In this paper, a three-dimensional numerical simulation is conducted to predict the performance of a low-specific-speed centrifugal pump, and the modeling, numerical scheme, and turbulent selection methods are discussed. The pump performance is tested in a model pump test bench, and flow rate, head, power and efficiency of the pump are obtained. The effect of taking into consideration the back-out vane passage, clearance, and balance holes is analyzed by comparing it with experimental results, and the performance prediction methods are validated by experiments. The analysis results show that the pump performance can be accurately predicted by the improved method. Ignoring the back-out vane passage in the calculation model of unshrouded impeller is found to generate better numerical results. Further, the calculation model with the clearances and balance holes can obviously enhance the numerical accuracy. The application of disconnect interface can reduce meshing difficulty but increase the calculation error at the off-design operating point at the same time. Compared with the standard k-ε, renormalization group k-ε, and Spalart-Allmars models, the Realizable k-ε model demonstrates the fastest convergent speed and the highest precision for the unshrouded impeller flow simulation. The proposed modeling and numerical simulation methods can improve the performance prediction accuracy of the low-specific-speed centrifugal pumps, and the modeling method is especially suitable for the centrifugal pump with unshrouded impeller. Currently, relatively large errors are found in numerical results in some low-specific-speed centrifugal pumps with unshrouded impeller because the effect of clearances and holes are not accurately modeled. Establishing an accurate analytical model to improve performance prediction accuracy is therefore necessary. In this paper, a three-dimensional numerical simulation is conducted to predict the performance of a low-specific-speed centrifugal pump, and the modeling, numerical scheme, and turbulent selection methods are discussed. The pump performance is tested in a model pump test bench, and flow rate, head, power and efficiency of the pump are obtained. The effect of taking into consideration the back-out vane passage, clearance, and balance holes is analyzed by comparing it with experimental results, and the performance prediction methods are validated by experiments. The analysis results show that the pump performance can be accurately predicted by the improved method. Ignoring the back-out vane passage in the calculation model of unshrouded impeller is found to generate better numerical results. Further, the calculation model with the clearances and balance holes can obviously enhance the numerical accuracy. The application of disconnect interface can reduce meshing difficulty but increase the calculation error at the off-design operating point at the same time. Compared with the standard k-ε, renormalization group k-ε, and Spalart-Allmars models, the Realizable k-ε model demonstrates the fastest convergent speed and the highest precision for the unshrouded impeller flow simulation. The proposed modeling and numerical simulation methods can improve the performance prediction accuracy of the low-specific-speed centrifugal pumps, and the modeling method is especially suitable for the centrifugal pump with unshrouded impeller.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第2期376-384,共9页 中国机械工程学报(英文版)
基金 supported by National Natural Science Foundation of China(Grant No.51276213) Zhejiang Provincial Science and Technology Project of China(Grant No.2012R10001-07)
关键词 centrifugal pump unshrouded impeller numerical simulation CLEARANCE turbulence model centrifugal pump, unshrouded impeller, numerical simulation, clearance, turbulence model
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  • 1Akin O, Rockwell D. Flow structure in a radial flow pumping system using high-image-density Particle Image Velocimetry. J Fluids Eng, 1994, 116:538-544.
  • 2Eisele K, Zhang Z, Casey M. Flow analysis in a pump diffuser-Part 1 LDA and PTV measurements of the unsteady flow. J Turbomach, 1997, 119:968-977.
  • 3Dong R, Chu S, Katz J. Quantitative visualization of the flow within the volute of a centrifugal pump. Part B: Results and analysis. J Fluids Eng, 1992, 114:396-403.
  • 4Yang H, Liu C, Tang F P, et al. Experimental study on the flow field in the blade to blade of a centrifugal pump by PIV. J Hydrodynamics Ser A, 2002, 17(5): 547-551.
  • 5Pedersen N, Larsen P S. Flow in a centrifugal pump impeller at design and off-design conditions-Part I: Particle Image Velocimetry (PIV) and Laser Doppler Velocimetry (LDV) measurements. J Fluids Eng, 2003, 125:61-72.
  • 6Choi Y D, Kurokawa J, Nishino K, et al. Internal flow measurement of a very low specific speed centrifugal pump by PIV. In: Proc Int Svm Fluid Visualization. Kyoto, Japan, 2002. F0221.
  • 7Kosyn G, Friedrichs J. Unsteady PIV flow field analysis of a centrifugal pump impeller under rotating cavitation. In: 5th Int Symp Caitation (Cav2003). Osaka, Japan, 2003. Cav03-OS-6-005.
  • 8Guleren K M, Pinarbasi A. Numerical simulation of the stalled flow within a vaned centrifugal pump. J Mech Eng Sci, 2004, 218(C): 425-435.
  • 9Budwig R. Refractive index matching methods for liquid flow investigations. Exp Fluids, 1994, 17:350-355.
  • 10Uzol U, Chow Y C, Katz J, et al. Unobstructed PIV measurements within an axial turbo-pump using liquid and blades with matched refractive indices. In: 4th Int Symposium Particle Image Velocimetry. Gottingen, Germany, 2001. PIV'01 Paper 1085.

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