Applied Mathematics and Mechanics (English Edition) ›› 2014, Vol. 35 ›› Issue (6): 675-688.doi: https://doi.org/10.1007/s10483-014-1821-6

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Flow patterns and boundary conditions for inlet and outlet conduits of large pump system with low head

徐磊, 陆伟刚, 陆林广, 董雷, 王兆飞   

  1. College of Hydraulic Science and Engineering, Yangzhou University, Yangzhou 225009, Jiangsu Province, P. R. China
  • 收稿日期:2013-06-16 修回日期:2013-11-15 出版日期:2014-06-01 发布日期:2014-06-01
  • 通讯作者: Wei-gang LU, Professor, Ph.D., E-mail: wglu@yzu.edu.cn E-mail:wglu@yzu.edu.cn
  • 基金资助:
    Project supported by the Natural Science Foundation of Jiangsu Higher Education Institutions of China (No. 12KJD570001)

Flow patterns and boundary conditions for inlet and outlet conduits of large pump system with low head

Lei XU, Wei-gang LU, Lin-guang LU, Lei DONG, Zhao-fei WANG   

  1. College of Hydraulic Science and Engineering, Yangzhou University, Yangzhou 225009, Jiangsu Province, P. R. China
  • Received:2013-06-16 Revised:2013-11-15 Online:2014-06-01 Published:2014-06-01
  • Supported by:
    Project supported by the Natural Science Foundation of Jiangsu Higher Education Institutions of China (No. 12KJD570001)

摘要: The flow patterns in the inlet and outlet conduits have a decisive effect on the safe, stable, and highly efficient operation of the pump in a large pumping station with low head. The numerical simulation of three-dimensional (3D) turbulence flow in conduits is an important method to study the hydraulic performance and conduct an optimum hydraulic design for the conduits. With the analyses of the flow patterns in the inlet and outlet conduits, the boundary conditions of the numerical simulation for them can be determined. The main obtained conclusions are as follows: (i) Under normal operation conditions, there is essentially no pre-swirl flow at the impeller chamber inlet of an axial-flow pump system, based on which the boundary condition at the inlet conduit may be defined. (ii) The circulation at the guide vane outlet of an axial-flow pump system has a great effect on the hydraulic performance of the outlet conduit, and there is optimum circulation for the performance. Therefore, it is strongly suggested to design the guide vane according to the optimum circulation. (iii) The residual circulation at the guide vane outlet needs to be considered for the inlet boundary condition of the outlet conduit, and the value of the circulation may be measured in a specially designed test model.

关键词: Lekhnitskii method, eigenvalue, stress intensity factor, flow pattern, boundary condition, inlet conduit, outlet conduit, pump system, low head

Abstract: The flow patterns in the inlet and outlet conduits have a decisive effect on the safe, stable, and highly efficient operation of the pump in a large pumping station with low head. The numerical simulation of three-dimensional (3D) turbulence flow in conduits is an important method to study the hydraulic performance and conduct an optimum hydraulic design for the conduits. With the analyses of the flow patterns in the inlet and outlet conduits, the boundary conditions of the numerical simulation for them can be determined. The main obtained conclusions are as follows: (i) Under normal operation conditions, there is essentially no pre-swirl flow at the impeller chamber inlet of an axial-flow pump system, based on which the boundary condition at the inlet conduit may be defined. (ii) The circulation at the guide vane outlet of an axial-flow pump system has a great effect on the hydraulic performance of the outlet conduit, and there is optimum circulation for the performance. Therefore, it is strongly suggested to design the guide vane according to the optimum circulation. (iii) The residual circulation at the guide vane outlet needs to be considered for the inlet boundary condition of the outlet conduit, and the value of the circulation may be measured in a specially designed test model.

Key words: Lekhnitskii method, eigenvalue, stress intensity factor, flow pattern, boundary condition, inlet conduit, outlet conduit, pump system, low head

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