• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (23): 119-124.

• 论文 • 上一篇    下一篇

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基于二阶滑移边界的螺旋槽干气密封气膜刚度计算与分析

丁雪兴;蒲军军;韩明君;张伟政;俞树荣   

  1. 兰州理工大学石油化工学院;兰州理工大学理学院
  • 发布日期:2011-12-05

Calculation and Analysis of Gas Film Stiffness in the Spiral Groove Gas Seal Based on the Second Order Slip Boundary

DING Xuexing;PU Junjun;HAN Mingjun;ZHANG Weizheng;YU Shurong   

  1. College of Petrochemical Engineering, Lanzhou University of Technology School of Science, Lanzhou University of Technology
  • Published:2011-12-05

摘要: 应用二阶非线性滑移边界条件推导出修正的广义雷诺方程,并用PH线性化方法、迭代法对非线性雷诺方程近似求解,得到气膜推力的近似解析式,继而对其进行气膜厚度的求导,得到气膜刚度的近似解析式。并利用Maple程序计算不同转速和压力下的气膜刚度数值,并与一阶线性滑移边界条件下的气膜刚度和试验数值进行对比。结果表明:随着气膜厚度的增加,二阶非线性滑移边界条件下的气膜刚度随之减小,且呈非线性关系;随着介质压力、转速的增加,气膜刚度也随之增加,且呈线性关系;二阶非线性滑移边界条件下的气膜刚度数值比一阶线性滑移边界条件下的气膜刚度数值更接近试验数值,其计算精度较高,特别是在低速、低压工况下更加明显。因此在低速低压釜用轴端干气密封中将应用二阶速度滑移条件下的流体力学理论来进行优化设计,指导工程应用。

关键词: Maple程序, 非线性滑移边界, 干气密封, 螺旋槽, 气膜刚度

Abstract: A modified generalized Reynolds equation is derived with the second-order nonlinear slip boundary condition, and the approximate analytic gas film thrust is obtained by solving the nonlinear Reynolds equation with the linear PH method and iterative method. Then, the approximate analytic gas film stiffness is obtained by gas film thrust derivativing of the gas film thickness. Maple program developed with this proposed method is used to compute the gas film stiffness values under the different rotational speed and pressure of an engineering instance, and it is compared to the results obtained with the first-order linear slip boundary conditions and the experimental measurements. The results demonstrate that the gas film stiffness values estimated with the second-order nonlinear slip boundary condition decreases with the gas film thickness increasing, and it is the nonlinear relationship between the stiffness and thickness of gas, and the gas film stiffness increases with the pressure and rotate speed of the medium increasing, and it is the linear relationship between the gas film stiffness and the pressure and rotate speed of the medium, and the gas film stiffness values estimated with the second-order nonlinear slip boundary condition are closer to the experimental values than that estimated with the first-order linear slip boundary condition, and it has the higher calculation accuracy. Especially in low-speed and low-pressure conditions, the estimated values with second-order nonlinear slip boundary condition are significant better than with the first-order linear slip boundary condition. The optimization design by hydromechanics theory with the second-order nonlinear slip boundary condition in shaft dry gas seal of the low-speed and low-pressure conditions can guide engineering application.

Key words: Dry gas seals, Gas film stiffness, Maple program, Nonlinear slip boundary, Spiral groove

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