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Research on Cavitation Regions of Upstream Pumping Mechanical Seal Based on Dynamic Mesh Technique

机译:基于动态网格技术的上游泵送机械密封空化区域研究

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In order to study the cavitation area of the Upstream Pumping Mechanical Seal, three-dimensional microgap inner flow field of the Upstream Pumping Mechanical Seal was simulated with multiphase flow cavitation model and dynamic mesh technique based on hydrodynamic lubrication theory. Furthermore, the simulated result was compared with the experimental data. The results show that the simulated result with the Zwart-Gerber-Belamri cavitation model was much closer to the experimental data. The area of cavitation inception mainly occurred at the concave side of the spiral groove and surrounding region without spiral grooves, which was nearly covered by the inner diameter to roots of grooves; in addition, the region near the surface of the stationary ring was primary cavitation location. The area of cavitation has little relationship with the medium pressure; however, it became larger following increasing rotating speed in the range of researched operating conditions. Moreover the boundary of cavitated area was transformed from smooth to rough, which occurred in similar film thickness. When cavitation number was decreasing, which was conducive to improving the lubrication performance of sealed auxiliary, it made the sealing stability decline.
机译:为了研究上游抽油机机械密封的空化区域,利用多相流空化模型和基于流体动力润滑理论的动态网格技术,对上游抽油机机械密封的三维微间隙内部流场进行了模拟。此外,将模拟结果与实验数据进行了比较。结果表明,Zwart-Gerber-Belamri空化模型的模拟结果更接近于实验数据。空化开始的区域主要发生在螺旋槽的凹面侧和没有螺旋槽的周围区域,该区域几乎被槽的内径覆盖。另外,固定环表面附近的区域是主要的空化位置。空化面积与中压几乎没有关系。但是,在研究的运行条件范围内,随着转速的增加,它变得更大。而且,空化区域的边界从光滑变为粗糙,这在相似的膜厚度下发生。当空化数减少时,有利于提高密封助剂的润滑性能,使密封稳定性下降。

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