首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Leakage Characteristic Identification of Labyrinth Seals on Reciprocating Piston through Transient Simulations
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Leakage Characteristic Identification of Labyrinth Seals on Reciprocating Piston through Transient Simulations

机译:通过瞬态模拟对往复活塞往复活塞留言的泄漏特征识别

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In the reciprocating labyrinth piston compressor, the characteristic of the internal leakage is crucial for the leakage management and performance improvement of the compressor. However, most of the published studies investigated the rotor-stator system, and those who study the reciprocating piston-cylinder system basically focus on the effects of the geometrical parameters. These conclusions could not directly be applied to predict the real-time leakage flow rate through the labyrinth seal because of the fast reciprocating motion of the piston, which will cause continually pressure change in two compression chambers, and then the pressure fluctuation will affect the flow through the labyrinth seal. A transient simulation model employing the multiscale dynamic mesh, which considers the effect of the reciprocating motion of the piston in the cylinder, is established to identify the characteristics of the internal leakage. This model was verified by a specially designed compressor, and the influence of various parameters was analyzed in detail. The sealing performance decreased linearly with the increase in the pressure ratio, and higher pressure inlet leads to higher leakage flow under the same pressure ratio. The labyrinth seal performance positively correlated to the increase of the rotational speed. Leakage characteristics of five working mediums were carried out, and the results indicated that the relative leakage decreased with an increase in the relative molecular mass. From this study, the realistic internal leakage flow rate under different operating parameters in the reciprocating labyrinth piston compressor could be predicated.
机译:在往复式迷宫式压缩机中,内部泄漏的特性对于压缩机的泄漏管理和性能改进是至关重要的。然而,大多数公布的研究都研究了转子定子系统,以及研究往复式活塞缸系统的人基本上关注几何参数的影响。由于活塞的快速往复运动,因此不能直接应用这些结论来预测通过迷宫密封的实时泄漏流速,这将在两个压缩室中持续压力变化,然后压力波动会影响流动通过迷宫封印。建立采用多尺度动态网格的瞬态仿真模型,其考虑了活塞在气缸中的往复运动的效果,以识别内部泄漏的特性。该模型通过专门设计的压缩机验证,详细分析了各种参数的影响。密封性性能随压力比的增加而导入线性降低,较高的压力入口导致相同的压力比下的漏流较高。迷宫密封性能与转速的增加呈正相关。进行了五个工作介质的泄漏特性,结果表明,相对泄漏随着相对分子量的增加而降低。从本研究开始,可以预测往复式迷宫式压缩机中不同操作参数下的现实内泄漏流速。

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