• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (20): 145-151.

• 论文 • 上一篇    下一篇

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流体静压型机械密封的半解析式流固耦合模型

廖传军;黄伟峰;索双富;魏琳宗;王玉明   

  1. 清华大学摩擦学国家重点实验室
  • 发布日期:2010-10-20

Semi-analytical Fluid-solid Coupling Model for Hydrostatic Mechanical Seals

LIAO Chuanjun;HUANG Weifeng;SUO Shuangfu;WEI Linzong;WANG Yuming   

  1. State Key Laboratory of Tribology, Tsinghua University
  • Published:2010-10-20

摘要: 提出一种适用于流体静压型机械密封的半解析式流固耦合分析模型。根据典型流体静压型机械密封的结构特点和工作原理,在圆环变形理论的基础上发展求解密封环机械变形的解析方法,以有限元法验证其正确性并确定其适用范围。以密封环机械变形和间隙流场计算的解析方法为基础,以密封环变形偏转角作为流体域和固体域的计算传递参数,提出流体静压型机械密封的半解析式流固耦合模型。基于所提出的半解析式流固耦合模型,求得某一工况条件下的压力分布、泄漏率和液膜刚度等参数,并与纯流场计算结果进行对比。并进一步研究密封端面初始锥角和螺钉预紧力等因素对密封性能的影响规律。所研究内容为流体静压型机械密封的流固耦合研究提供一种便捷、高效的方法。

关键词: Reynolds方程, 半解析法, 机械密封, 流固耦合, 流体静压

Abstract: According to the structural features and operating principles of a typical hydrostatic mechanical seal, an analytical method for solving mechanical deformation of sealing ring is developed on the basis of ring deformation theory. Its validity is verified by using the ANSYS finite element method, and its applicability is defined. Based on the analytical method for seal ring mechanical deformation and gap flow field calculation, and by taking the deflection angle induced by the mechanical deformation of sealing ring as the calculation transfer parameter of fluid domain and solid domain, a semi-analytical fluid-solid coupling model for hydrostatic mechanical seals is put forward. Based on the model, some sealing parameters including pressure distribution, leakage rate and fluid film stiffness are obtained under some working condition, and are compared with the results of pure flow field calculation. Furthermore, the regularities that sealing performances are influenced by some factors such as initial cone angle of the seal rings and pre-tightening force of the screws are researched. The research contents provide a convenient and high-efficiency method for the research of fluid-solid-coupling problems of hydrostatic mechanical seals.

Key words: Fluid-solid coupling, Hydrostatic, Mechanical seal, Reynolds equation, Semi-analytical method

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