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Optimization Design of Stainless Steel Stamping Multistage Pump Based on Orthogonal Test

  • Weidong, Shi (Research Center of Fluid Machinery Engineering and Technology, Jiangsu University) ;
  • Chuan, Wang (Research Center of Fluid Machinery Engineering and Technology, Jiangsu University) ;
  • Weigang, Lu (Research Center of Fluid Machinery Engineering and Technology, Jiangsu University) ;
  • Ling, Zhou (Research Center of Fluid Machinery Engineering and Technology, Jiangsu University) ;
  • Li, Zhang (Research Center of Fluid Machinery Engineering and Technology, Jiangsu University)
  • Accepted : 2010.12.04
  • Published : 2010.12.31

Abstract

Stainless steel stamping multistage pump has become the mainstream of civil multi-stage pump. Combined with the technological features of stamping and welding pump, the studies of design for hydraulic parts of pump were come out. An $L_{18}$$3^7$)orthogonal experiment was designed with seven factors and three values including blade inlet angle, impeller outer diameter, guide vane blade number, etc. 18 plans were designed. The two stage of whole flow field on stainless steel stamping multistage pump at design point for design was simulated by CFD. According to the test result and optimization design with experimental research, the trends of main parameters which affect hydraulic performance were got. After being manufactured and tested, the efficiency of the optimal model pump reaches 61.36% and the single head is more than 4.8 m. Compared with the standard efficiency of 53%, the design of the stainless steel stamping pump is successful. The result would be instructive to the design of Stainless steel stamping multistage pump designed by the impeller head maximum approach.

Keywords

References

  1. Yao Chunling, Wang Chunhua, Liu Kun et al, 2006, “Characters and Current Developments of Stamping and Welding Centrifugal Pump,” Manufacturing Automation (in Chinese), Vol. 28, pp. 214-215.
  2. Cong Xiaoqing, Yuan Shouqi, Yuan Danqing, 2005, “Research of Latin Square Test on Non-overload Sewage Pumps,” Journal of Agricultural Machinery (in Chinese), Vol. 36, No. 10, pp. 66-69.
  3. Liu Yuanyi, Wang Guangye, 2007, “Computer-Aided Analysis on Inner flow in Stamping and Welding Multistage Centrifugal Pump’s Impellers,” Chinese Journal of Mechanical Engineering(in Chinese), Vol. 43, No. 8, pp. 207-211.
  4. Liu Yuanyi, Wang Guangye, 2006, “Numerical Simulation of 3D Flow in Low specific Speed Stamping Multistage Pump’s Impellers,” Journal of Agricultural Machinery (in Chinese), Vol. 37, No. 11, pp. 60-62.
  5. Huang Si Sang Dike, Peng Shaohua et al, 2009, “Numerical Simulation and Experimental Verification of Hydraulic Performance of Stamping Multi-Pump,” Water-saving Irrigation (in Chinese), Vol. 12, pp. 48-51.
  6. Shi Weidong, Zhang Qihua, Lu Weigang, 2008, “Research on the Internal Flow of Impeller on New-type Deep Well Pump,” Fluid Machinery(in Chinese), Vol. 36, No. 5, pp. 21-22.

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  2. Regression Test of Stainless Steel Stamping Well-Pump Based on Numerical Simulation vol.354-355, pp.1662-8985, 2011, https://doi.org/10.4028/www.scientific.net/AMR.354-355.847
  3. Design Method of Controllable Blade Angle and Orthogonal Optimization of Pressure Rise for a Multiphase Pump vol.11, pp.5, 2018, https://doi.org/10.3390/en11051048