首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >EXPERIMENTAL INVESTIGATIONS ON THE PRESSURE FLUCTUATIONS IN THE SEALING GAP OF DRY GAS SEALS WITH EMBEDDED PRESSURE SENSORS
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EXPERIMENTAL INVESTIGATIONS ON THE PRESSURE FLUCTUATIONS IN THE SEALING GAP OF DRY GAS SEALS WITH EMBEDDED PRESSURE SENSORS

机译:用嵌入式压力传感器对干气密封件密封间隙压力波动的实验研究

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Dry gas lubricated non-contacting mechanical seals (DGS), most commonly found in centrifugal compressors, prevent the process gas flow into the atmosphere. Especially when high speed is combined with high pressure, DGS is the preferred choice over other sealing alternatives. Even though the non-contacting seal is proved reliable; the ultra-thin gas film can still lead to a host of potential problems due to possible contact. In order to investigate the flow field in the sealing gap and to facilitate the numerical prediction of the seal performance, a dedicated test facility is developed to carry out the measurement of key parameters in the gas film. Gas in the sealing film varies according to the seal inlet pressure, and the thickness of gas film depends on this fluctuated pressure. In this paper, the test facility, measurement methods and the first results of static pressure measurements in the sealing gap of the DGS obtained in the described test facility are presented. An industry DGS with three-dimensional grooves on the surface of the rotating ring, where experimental investigations take place, is used. The static pressure in the gas film is measured, up to 20 bar and 8,100 rpm, by several high frequency ultraminiature pressure transducers embedded into the stationary ring. The experimental results are discussed and compared with the numerical model programmed in MATLAB [1], the characteristic and magnitude of which have a good agreement with the numerical simulations. It suggests the feasibility of measuring pressure profiles of the standard industry DGS under pressurized dynamic operating conditions without altering the key components of the seal and thereby affecting the seal performance.
机译:干气润滑非接触式机械密封(DGS),最常见于离心式压缩机,防止工艺气体流入大气中。特别是当高速与高压结合时,DGS是其他密封替代品的首选选择。尽管证明了非接触式密封件可靠;由于可能的接触,超薄气体膜仍然可以导致潜在的潜在问题。为了研究密封间隙中的流场并促进密封性能的数值预测,开发了专用的测试设施以执行气体膜中的关键参数的测量。密封膜中的气体根据密封入口压力而变化,气体膜的厚度取决于该波动的压力。本文介绍了所描述的测试设施中获得的DG的密封间隙中的测试设施,测量方法和静压测量的第一结果。使用具有实验研究的旋转环表面上具有三维凹槽的行业DG,其中进行实验研究。通过嵌入固定环中的几个高频超敏压力传感器测量气体膜中的静压,最多20巴和8,100rpm。讨论了实验结果,并与Matlab [1]中编程的数值模型进行了比较,其特征和幅度与数值模拟有良好的一致性。它提出了在加压动态操作条件下测量标准行业DGS压力轮廓的可行性,而无需改变密封的关键部件,从而影响密封性能。

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