期刊文献+

TWO-DIMENSIONAL PARTICLE IMAGE VELOCIMETRY(PIV) MEASUREMENTS IN A TRANSPARENT CENTRIFUGAL PUMP 被引量:5

TWO-DIMENSIONAL PARTICLE IMAGE VELOCIMETRY(PIV) MEASUREMENTS IN A TRANSPARENT CENTRIFUGAL PUMP
下载PDF
导出
摘要 A special transparent centrifugal pump is designed. Detailed opticalmeasurements of the flow inside the rotating passages of a five-bladed shroud centrifugal pumpimpeller have been performed by using two-dimensional particle image velocimetry (PIV). The flow issurveyed at three load conditions q_V/q_(Vd) = 0.4, q_V/q_(Vd) = 1.0, q_V/q_(Vd) = 1.5,respectively. As a result, phase averaged PIV velocity vector maps on three planes between hub andshroud of the impeller are presented. At design load, the mean field of relative velocity ispredominantly vane congruent, showing well-behaved flow without separation. The distributions of therelative velocity on different plane along the pump shaft are very different and there is always alow velocity zone near the pressure-side of the blade at both low and design flow rate, but thelow-velocity-zone at the low flow rate is much larger than that at the design one. The studydemonstrates that the PIV technique is efficient in providing reliable and detailed velocity dataover a full impeller passage. A special transparent centrifugal pump is designed. Detailed opticalmeasurements of the flow inside the rotating passages of a five-bladed shroud centrifugal pumpimpeller have been performed by using two-dimensional particle image velocimetry (PIV). The flow issurveyed at three load conditions q_V/q_(Vd) = 0.4, q_V/q_(Vd) = 1.0, q_V/q_(Vd) = 1.5,respectively. As a result, phase averaged PIV velocity vector maps on three planes between hub andshroud of the impeller are presented. At design load, the mean field of relative velocity ispredominantly vane congruent, showing well-behaved flow without separation. The distributions of therelative velocity on different plane along the pump shaft are very different and there is always alow velocity zone near the pressure-side of the blade at both low and design flow rate, but thelow-velocity-zone at the low flow rate is much larger than that at the design one. The studydemonstrates that the PIV technique is efficient in providing reliable and detailed velocity dataover a full impeller passage.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第1期98-102,共5页 中国机械工程学报(英文版)
基金 This project is supported by National Natural Science Foundation of China(No.50136030) Opening Research Work from Key Laboratory of Jiangsu Province on Hydro-Dynamics Engineering in Yangzhou University, China.
关键词 Particle image velocimetry (PIV) Centrifugal pump MEASUREMENTS Particle image velocimetry (PIV) Centrifugal pump Measurements
  • 相关文献

参考文献2

二级参考文献3

  • 1刘正先,1997年
  • 2Jiang Y,AIAA paper 94-0305,1994年
  • 3张谋进,1993年

共引文献14

同被引文献29

  • 1杨华,谷传纲,王彤.时间推进法求解离心泵内部不可压流场[J].工程热物理学报,2005,26(1):61-65. 被引量:7
  • 2汪建华.离心泵叶轮参数的优化设计[J].排灌机械,1994,12(2):13-17. 被引量:14
  • 3席光,卢金铃,祁大同.混流泵叶轮内部流动的PIV实验[J].农业机械学报,2006,37(10):53-57. 被引量:12
  • 4孙建平,张克危,刘龙珍.离心泵叶片形状的优化[J].华中理工大学学报,1997,25(2):60-62. 被引量:4
  • 5Feng Jianjun, Friedrich-Karl Benra, Hans Josef Dohmen. Investigation of periodically unsteady flow in a radial pump by CFD simulations and LDV measurements[ J]. ASME Journal of Turbomachinery, 2011, 133 ( 1 ) : 011004 - 1 - 011004 - 11.
  • 6Westra R W, Broersma L, van Andel K, et al. PIV measurements and CFD computations of secondary flow in a centrifugal pump impeller[ J ]. ASME Journal of Fluids Engineering, 2010, 132 (6) : 0611004 - 1 - 0611004 - 8.
  • 7Pedersen N, Larsen P S, Jacobsen C B. 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 ]. ASME Journal of Fluids Engineering, 2003, 125 ( 1 ) : 61 - 72.
  • 8Jianjun F, Friedrieh K B, Hans J D. Time-resolved particle image velocimitry (PIV) measurements in a radial diffuser pump [ C ]////Proceedings of ASME 2009 Fluids Engineering Division Summer Meeting, FEDSM2009- 78297, 2009.
  • 9GOTO A, ZANGENEH M. Hydrodynamic of pump diffuser using inverse design method and CFD [J]. ASME J Fluids Engin, 2002, 124: 319-328.
  • 10GOTO A, ZANGENEH M. Hydrodynamic design system for pumps based on 3-D CAD, CFD and inverse design method [j]. ASME J Fluids Engin, 2002, 124: 329-335.

引证文献5

二级引证文献46

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部