Numerical analysis for effect of fluid-structure interaction on flow field in screw centrifugal pump

被引:0
|
作者
Yuan, Shouqi [1 ]
Xu, Yuping [1 ]
Zhang, Jinfeng [1 ]
Pei, Ji [1 ]
Zhou, Jianjia [1 ]
机构
[1] Research Center of Fluid Machinery Engineering and Technology, Jiangsu University
来源
Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery | 2013年 / 44卷 / 01期
关键词
Double blade; Fluid-structure interaction; Numerical analysis; Rotor-stator interaction; Screw type centrifugal pump;
D O I
10.6041/j.issn.1000-1298.2013.01.008
中图分类号
学科分类号
摘要
In order to analyze the effect of fluid-structure interaction (FSI) on flow field in screw centrifugal pump, a ZJ200-25 screw type centrifugal pump with double screw blades was chosen as the study subject. The two-way coupling method was established to study the effect of FSI of impeller on flow field in screw centrifugal pump. CFX12.1 and ANSYS Workbench were used to the combined calculation for turbulent flow and structure response of impeller. And the unsteady flow field of the pump was simulated numerically under several operating conditions without effect of FSI. Compared the result of the two calculation methods, it's found that, with the effect of FSI, pressure fluctuations in pump inlet intensified. The dominant frequency of pressure in inlet and outlet do not change but the phase position was different after FSI. The inner velocity distributions satisfy the common characteristic, but the largest differences were appeared under the condition of small flow rate. The flow field near volute tongue was affected by FSI most obviously when blades passing by the tongue. Magnitude of radial trust changing with time has similar regularities, but the fluctuation range with FSI method was reduced. Flow filed in impeller was more dissymmetrical under the effect of fluid-structure interaction. The conclusion obtained in this investigation will provide an essential guide to analyze the inner flow filed and master characteristics of rotor vibration characters and inducing factors of the pressure fluctuation in the screw type centrifugal pump.
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页码:38 / 42+47
相关论文
共 12 条
  • [1] Liu S., Numeration simulation of the flow field 3-dimensional in a screw centrifugal pump, (2006)
  • [2] Ding S., Yang B., Zheng G., Et al., Influence of blade number on interior flow of screw centrifugal pump, Fluid Machinery, 37, 7, pp. 33-37, (2009)
  • [3] Li R., Wang Q., Xiong Z., Influence of the model and the method of dispersion on the screw centrifugal pump in numerical simulation, Journal of Gansu Sciences, 17, 4, pp. 57-59, (2005)
  • [4] Kim Y.-T., Influence of tip clearance on pump performance of two phase flow in a screw centrifugal pump, Pumps and Fans Proceedings of the 3rd International Conference on Pumps and Fans, pp. 346-357, (1998)
  • [5] Kim Y.-T., Tanaka K., Matsumoto Y., Tipclearance and bubble size of a screw-type centrifugal pump operating in two-phase flow, Proceeding of ASME, 7, pp. 519-526, (1999)
  • [6] Pei J., Yuan S., Yuan J., Numerical calculation for effect of fluid and structure interaction on flow field in centrifugal pump, Transactions of the Chinese Society for Agricultural Machinery, 40, 12, pp. 107-112, (2009)
  • [7] Benra F.K., Dohmen H.J., Comparison of pump impeller orbit curves obtained by measurement and FSI simulation, ASME PVP2007-26149, 4, pp. 41-48, (2007)
  • [8] Kato C., Yamade Y., Wang H., Et al., Prediction of the noise from a multi-stage centrifugal pump, ASME FEDSM2005, 1, PART B, pp. 1273-1280, (2005)
  • [9] Wang Y., Wang H., Xu X., Et al., Finite element computation for impeller of stamping and welding centrifugal pump, Journal of Drainage and Irrigation Machinery Engineering, 29, 2, pp. 109-113, (2011)
  • [10] Jiang Y.Y., Yoshimura S., Imai R., Et al., Quantitative evaluation of flow-induced structural vibration and noise in turbo machinery by full-scale weakly coupled simulation, Journal of Fluids and Structures, 23, 4, pp. 531-544, (2007)