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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science >An investigation into oil–gas two-phase leakage flow through micro gaps in oil-injected compressors
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An investigation into oil–gas two-phase leakage flow through micro gaps in oil-injected compressors

机译:通过喷油压缩机中的微小间隙进行的油气两相泄漏流研究

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摘要

This article presents the investigation on the oil–gas two-phase leakage flow through the micro gaps in oil-injected compressors and provides a new way of investigating the internal leakage process in the compressors. The oil–gas leakage rates were measured through the micro gaps of various gap sizes, the volume ratios of oil to gas, and pressure differences/ratios; and the flow patterns reflecting the flow characteristics were observed by using a high-speed video. The experimental results showed that the leakage flowrate was significantly related to the flow patterns in the gap, which were similar to those found in the existing literature and agreed well with the predicted ones by the Weber number. The gas leakage flowrate through the gap increased rapidly with the increased pressure ratio until the pressure ratio reached the critical pressure ratio, which ranged from 1.8 to 2.7. At the critical pressure ratio, the flow pattern transition from churn flow to annular flow occurred, resulting in gas leakage driven by a different sealing mechanism. As the volume ratio of oil to gas increased by 0.5 per cent, the gas leakage flowrate decreased by 77 per cent.
机译:本文介绍了通过喷油压缩机中的微小间隙进行的油气两相泄漏流的研究,并提供了一种研究压缩机内部泄漏过程的新方法。油气泄漏率是通过各种间隙尺寸的微小间隙,油气体积比以及压力差/比率来测量的。通过使用高速视频观察反映流动特性的流动模式。实验结果表明,泄漏流量与间隙中的流动模式显着相关,与现有文献中的相似,并且通过韦伯数与预测的结果非常吻合。随着压力比的增加,通过间隙的气体泄漏量迅速增加,直到压力比达到临界压力比,该临界压力比为1.8至2.7。在临界压力比下,发生了从搅动流到环形流的流型转变,导致气体泄漏由不同的密封机构驱动。随着石油与天然气的体积比增加0.5%,气体泄漏流量减少了77%。

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