DOI QR코드

DOI QR Code

Numerical And Experimental Study Of Single stage And Multistage Centrifugal Mixed Flow Submersible Borewell Pumps

  • Murugesan, C. (Aquasub Engineering) ;
  • Rudramoorthy, R. (PSG College of Technology)
  • 투고 : 2015.03.16
  • 심사 : 2015.12.20
  • 발행 : 2016.06.30

초록

This paper focuses on the single stage and multistage performance characteristics of centrifugal mixed flow submersible borewell pump. This study reveals that the performance of single stage pump is higher than that of multistage pumps. The head, input power and efficiency of single stage pump are higher than the per stage head, per stage input power and efficiency of multistage pumps. This study is divided into three parts. In the first part, five prototype pumps were made in single stage and multistage construction and the performance tests were conducted. In the second part, numerical validation has been done for different turbulence models and grid sizes. k-Omega SST model has been selected for the performance simulation and was validated with the performance of the test pump with static pressure tappings. In the third part, single and three stage pump performance were simulated numerically and compared with experimental results. The detailed analysis of pressure and velocity distributions reveals the difference in performance of single and three stage pump, due to non-uniform flow and difference in averaged flow velocities at the subsequent impeller inlets except the 1st stage impeller inlet.

키워드

참고문헌

  1. Franklin Pump Systems (FPS) , USA Catalogue website: www.franklinwater.com.
  2. IS8034:2002 Indian Standard Submersible Pumpsets - Specification (Second Revision), Bureau of Indian Standards, Manak Bhavan New Delhi November 2002.
  3. Jose G, Joaquin F, Eduardo B & Carlos S, "Numerical Simulation of the Dynamic Effects Due to Impeller - Volute Interaction in a Centrifugal Pump," J Fluids Eng,Trans ASME,124 (2002) 348-355. https://doi.org/10.1115/1.1457452
  4. Peter H, Stephan M & Bernd S,"The Flow and Head Distribution within the Volute of a Centrifugal Pump in Comparison with the Characteristics of the Impeller Without Casing," J Comput Appl Mech , Miskolc University Press, Hungary, 5 (2004), 275-285.
  5. Akhras A, El Hajem E, Morel R & Champagne J Y, "The Flow Rate Influence on the Interaction of a Radial Pump Impeller and the Diffuser," Int J Rotating Mach, Taylor & Francis,10(2004), 309-317. https://doi.org/10.1155/S1023621X04000326
  6. Jianjun F, Friedrich-Karl B & Hans J D, "Numerical Investigation on Pressure Fluctuations for Different Configurations of Vaned Diffuser Pumps," IJRM, Hindawi ,2007.
  7. Zhang S, Zhu B,Hu Qo & Li X, "Virtual Performance Experiment of a Centrifugal Pump," Proc 16th Int Conf on Artificial Reality and Teleexistence ( ICAT 06), IEEE,2006.
  8. Anderson M R, Gu, Fahua, MacLeod P D ,"Application & Validation of CFD in a Turbo Machinery Design System," Int Mech Engg Congress and R & D Expo,ASME.
  9. Barrio R, Fernandez J, Blanco E & Parrondo J,"Estimation of radial load in centrifugal pumps using computational fluid dynamics," Eur J Mech B-Fluid 30(2011)316-324.
  10. Perez J, Chiva S, Segala W,Morales R,Negrao C, Julia E & Hernandez L,"Performance Analysis of Flow in a Impeller-Diffuser Centrifugal Pumps using CFD: Simulation and Experimental Data Comparisons," EECMV,ECCOMAS CFD 2010.
  11. Jafarzadeh B,Hajari A,Alishahi M M & Akbari M H, "The flow simulation of a low - specific- speed high- speed cent rifugal pump," Appl Math Model, Elsevier, 35,( 2011), 242-249. https://doi.org/10.1016/j.apm.2010.05.021
  12. Paul C, Edward G & Timothy L, "Computational Fluid Dynamics Analysis of Complex Integral Flows in Centrifugal Pumps," Proc Int Pump Users Sym, (Turbomachinery Laboratory, Texas A & M University System), 1994.
  13. Stefania D G, Simone S, Paolo A & Laura B, "CFD Study For Assessment of Axial Thrust Balance in Centrifugal Multi stage Pumps," Proc Int Conf Fluid Flow Tech, CMFF06.
  14. Milan S, "Numerical Investigation of Flow in Mixed-Flow Pump with Volute," Task'u, 5 (2001), 595-602.
  15. Masahiro Miyabe, "A Behavior of the Diffuser Rotating Stall in a Low Specific Speed Mixed-Flow Pump," Internation al Journal of Fluid Machinery and Systems Vol. 2, No. 1, January-March 2009.
  16. Li Yi-bin," The Numerical Simulation of Unsteady Flow in a Mixed flow Pump Guide Vane," International Journal of Fluid Machinery and Systems, Vo l . 6, No. 4, October-December 2013.
  17. Milan Sedlar, "CFD Analysis of Cavitation Phenomena in Mixed-Flow Pump," International Journal of Fluid Machinery and Systems, Vol. 5, No. 1, January-March 2012
  18. Jin-Hyuk Kim, "Optimization of Vane Diffuser in a Mixed-Flow Pump for High Efficiency Design," International Journal of Fluid Machinery and Systems, Vol. 4, No. 1, January-March 2011.