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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Performance Analysis of Hydrodynamic Pressure Finger Seal by Wall Slip Effect
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Performance Analysis of Hydrodynamic Pressure Finger Seal by Wall Slip Effect

机译:壁防滑效应水动力压力手指密封的性能分析

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Hydrodynamic pressure finger seal1 is a kind of flexible noncontact dynamic sealing device with good application potential. It relies on the ultrathin dynamic pressure film effect produced by the rotation of finger boot and rotor to realize the design of noncontact and low leakage and is suitable for high-speed dynamic sealing parts. However, under the high-speed condition, there is a wall slip effect when the gas flows in the microchannel with a thickness of about 10?μm between the finger boot and rotor, which affects the stability of the dynamic pressure air film and also affects the change of the air film bearing capacity and the leakage rate of the finger seal. Therefore, based on the theory of microflow, the interstitial flow field model of finger seal under fluid dynamic pressure is established, and its slip effect under high speed is analyzed. The results show that the slip ratio of the sealing medium temperature of 500°C and 0.1?MPa conditions reached 27.28%. When considering the slip effect of the wall surface generated by the gas under shear driving, the gas film bearing capacity decreased and the leakage rate increased. When the pressure difference between the upper and lower reaches of the seal is 0.1?MPa, and the rotor line speed is 400?m/s, the gas film bearing capacity decreases by 17.39% after considering the slip effect of the wall surface, and the leakage rate increases by 14.06%. The results provide an important reference for the structural design and leakage control of hydrodynamic finger seal.
机译:流体动力学手指密封件是一种具有良好应用潜力的柔性非接触动态密封装置。它依赖于通过手指靴和转子旋转产生的超薄动态压力膜效果,以实现非接触和低泄漏的设计,并且适用于高速动态密封部件。然而,在高速条件下,当在手指靴和转子之间的厚度约为10Ωμm的微通道中的气体流动时,存在壁滑动效果,这会影响动态压力空气膜的稳定性并影响空气膜承载力的变化和手指密封的泄漏率。因此,基于微射线理论,建立了在流体动态压力下的手指密封的间隙流场模型,分析了高速下的滑动效果。结果表明,密封介质温度为500℃和0.1μl≤MPa条件的滑移比达到27.28%。当考虑由剪切驱动下的气体产生的壁表面的壁表面的滑动效果时,气体膜承载力降低并且泄漏速率增加。当密封的上距离和下距离之间的压力差是0.1?MPa,并且转子线速度为400?M / S,在考虑墙面的滑动效果之后,气体膜承载力在墙面的滑动效果之后减少了17.39%泄漏率增加14.06%。结果为流体动力手指密封的结构设计和泄漏控制提供了重要的参考。

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