期刊文献+

Experimental Analysis of Flow Structure in Contra-Rotating Axial Flow Pump Designed with Different Rotational Speed Concept 被引量:3

Experimental Analysis of Flow Structure in Contra-Rotating Axial Flow Pump Designed with Different Rotational Speed Concept
原文传递
导出
摘要 As a high specific speed pump, the contra-rotating axial flow pump distinguishes itself in a rear rotor rotating in the opposite direction of the front rotor, which remarkably contributes to the energy conversion, the reduction of the pump size, better hydraulic and cavitation performances. However, with two rotors rotating reversely, the significant interaction between blade rows was observed in our prototype contra-rotating rotors, which highly affected the pump performance compared with the conventional axial flow pumps. Consequently, a new type of rear rotor was designed by the rotational speed optimization methodology with some additional considerations, aiming at better cavitation performance, the reduction of blade rows interaction and the secondary flow suppression. The new rear rotor showed a satisfactory performance at the design flow rate but an unfavorable positive slope of the head-flow rate curve in the partial flow rate range less than 40% of the design flow rate, which should be avoided for the reliability of pump-pipe systems. In the present research, to understand the internal flow field of new rear rotor and its relation to the performances at the partial flow rates, the velocity distributions at the inlets and outlets of the rotors are firstly investigated. Then, the boundary layer flows on rotor surfaces, which clearly reflect the secondary flow inside the rotors, are analyzed through the limiting streamline observations using the multi-color oil-film method. Finally, the unsteady numerical simulations are carried out to understand the complicated internal flow structures in the rotors. As a high specific speed pump, the contra-rotating axial flow pump distinguishes itself in a rear rotor rotating in the opposite direction of the front rotor, which remarkably contributes to the energy conversion, the reduction of the pump size, better hydraulic and cavitation performances. However, with two rotors rotating reversely, the significant interaction between blade rows was observed in our prototype contra-rotating rotors, which highly affected the pump performance compared with the conventional axial flow pumps. Consequently, a new type of rear rotor was designed by the rotational speed optimization methodology with some additional considerations, aiming at better cavitation performance, the reduction of blade rows interaction and the secondary flow suppression. The new rear rotor showed a satisfactory performance at the design flow rate but an unfavorable positive slope of the head - flow rate curve in the partial flow rate range less than 40% of the design flow rate, which should be avoided for the reliability of pump-pipe systems. In the present research, to understand the internal flow field of new rear rotor and its relation to the performances at the partial flow rates, the velocity distributions at the inlets and outlets of the rotors are firstly investigated. Then, the boundary layer flows on rotor surfaces, which clearly reflect the secondary flow inside the rotors, are analyzed through the limiting streamline observations using the multi-color oil-film method. Finally, the unsteady numerical simulations are carded out to understand the complicated internal flow structures in the rotors.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第4期345-351,共7页 热科学学报(英文版)
关键词 旋转速度 设计流量 轴流泵 实验分析 流动结构 转子结构 非定常数值模拟 汽蚀性能 Contra-rotating rotors, Internal flow, Limiting streamlines, Tip leakage vortex, Corner separation
  • 相关文献

参考文献2

二级参考文献6

  • 1Toru SHIGEMITSU,Tomoya TAKANO,Akinori FURUKAWA,Kusuo OKUMA,Satoshi WATANABE.Pressure Measurement on Casing Wall and Blade Rows Interaction of Contra-Rotating Axial Flow Pump[J].Journal of Thermal Science,2005,14(2):142-149. 被引量:2
  • 2Furukawa,A,et al.Experimental Study of Pump Characteristics of Contra-Rotating Axial Flow Pump.In: Proc. 2nd Int. Symp. on Fluid Machinery and Fluid Eng[].Beijing Review.2000
  • 3White,J W,Purnell,J G Strieker,J G In-Line Submersible Pump.In: Proc.ASME, FED Summer Meeting, Washington D[].C.1993
  • 4Wada,A,Uchida,S.Improvement of Performance for High Specific Speed Axial-Flow Pump[].Torishima Review (in Japanese).1999
  • 5Sanders,A J,et al.Multi-Blade Row Interactions in a Transonic Axial Compressor: Part I.Stator Particle Image Velocimetry (PIV) Investigation[].Journal of Turbomachinery.2002
  • 6Shigemitsu,T,et al.Experimental Study on Rear Rotor Design in Contra-Rotating Axial Flow Pump.In: Proc. 5th JSME/KSME Fluids Eng. Conf[].Nagoya.2002

共引文献19

同被引文献32

引证文献3

二级引证文献12

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