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Gas film vibration inside dry gas seal gap

机译:干气密封间隙内的气膜振动

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This paper provides a numerical technique to determine the dynamic characteristics of a gas film inside a dry gas seal gap based on steady-state and transient CFD calculations. Two dry gas seals with spiral grooves were studied. Steady-state calculation results were compared with the experimental data. The transient dry gas seal model was created to obtain the dynamic characteristics of a gas film. This model is able to take into account the mutual influence of stator and rotor rings on a gas film. This is made by adding the mesh deformation within very small range (from 2 to 10 microns) along with adding for the mesh the ability to move freely within a big range (up to 500 microns). FSI simulation was added to solve Reynolds- averaged Navier-Stokes equations and dynamic equations of rigid body motion together. Using steady-state and transient gas film models, dynamic and static opening forces were obtained for the different gap values. Gas film stiffness was calculated. In order to determine the oscillation frequency of a gas film, Fourier transform was applied.
机译:本文提供了一种基于稳态和瞬态CFD计算来确定干气密封间隙内气膜动态特性的数值技术。研究了两个带有螺旋槽的干气密封件。将稳态计算结果与实验数据进行了比较。建立了瞬态干气密封模型以获得气膜的动态特性。该模型能够考虑到定子环和转子环对气膜的相互影响。这是通过在很小的范围(2到10微米)内添加网格变形并为网格增加在较大范围(最大500微米)内自由移动的能力而实现的。添加了FSI仿真,以共同求解雷诺平均的Navier-Stokes方程和刚体运动的动力学方程。使用稳态和瞬态气膜模型,可以获得不同间隙值的动态和静态打开力。计算气膜刚度。为了确定气膜的振荡频率,应用了傅里叶变换。

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