• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (4): 163-167.

• 论文 • 上一篇    下一篇

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多级泵平衡盘动态平衡研究与数值仿真

赵万勇;王钊;王磊;赵爽;杨登峰   

  1. 兰州理工大学能源与动力工程学院
  • 发布日期:2013-02-20

Study and Numerical Simulation on Dynamic Equilibrium of Balance Disc in Multi-stage Pump

ZHAO Wanyong;WANG Zhao;WANG Lei;ZHAO Shuang;YANG Dengfeng   

  1. School of Energy and Power Engineering, Lanzhou University of Technology
  • Published:2013-02-20

摘要: 为合理设计多级泵平衡盘的结构参数,解决平衡盘在工作过程中轴向脉动过大而引发振动的问题,对平衡盘的动态平衡过程进行研究。基于多级泵平衡盘装置中顶隙和轴向间隙窄且长的结构特点,分别对平衡盘两间隙内的流动进行分析,利用连续方程和动量方程推导出平衡盘动态平衡力的函数表达式。进而,建立平衡盘-转子系统的运动方程,并结合实例应用此运动方程对平衡盘的工作过程进行数值仿真。仿真结果表明,平衡盘-转子系统的轴向脉动在极短的时间内达到稳定状态,呈现出周期性变化规律,这与平衡盘的实际工作过程是相符的,从而也验证了用本文分析得到的运动方程描述多级泵平衡盘动态平衡特性的可行性。

关键词: 动态平衡, 平衡力, 平衡盘, 轴向速度, 轴向位移

Abstract: In order to design reasonably the structure parameters of balance disc in multi-stage pump, and solve the vibration problem caused by the excessive pulsation during the working process of balance disc, the dynamic balance process of balance disc is studied. Based on the structure feature that radial gap and axial gap in balance disc are narrow and long, the flows in the two gaps are analyzed respectively, and the function expression of dynamic balance force is deduced by using continuity equation and momentum equations. Then the motion equation about the balance disc-rotor system is established, and combined with the example the working process of balance disc is simulated numerically by using this equation. The simulation results indicate that the axial pulsation of the balance disc-rotor system achieves stability in a very short period of time and presents a cyclical change rule, which is consistent with the real working process of balance disc, and proves that using the deduced motion equation to describe the dynamic balance characteristics of the balance disc in multi-stage pump is feasible.

Key words: Axial displacement, Axial velocity, Balance disc, Balance force, Dynamic equilibrium

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