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Monitoring Gas Void Fraction In Two-Phase Flow With Acoustic Emission

机译:通过声发射监测两相流中的气孔分数

摘要

The two-phase gas/liquid flow phenomenon can be encountered over a range of gas and liquid flow rates in the chemical engineering industry, particularly in oil and gas production transportation pipelines. Monitoring and measurement of their characteristics, such as the gas void fraction, are necessary to minimise the disruption of downstream process facilities. Thus, over the last decade, the investigation, development and use of multiphase flow metering system have been a major focus for the industry worldwide. However, these meters suffer from several limitations in some flow conditions such as Slug flow regime.This research presents experimental results correlating Acoustic Emission measurements with Gas Void Fraction (GVF) in a two-phase air / water flow. A unique experimental facility was modified to accommodate an investigation into the applicability of the Acoustic Emission (AE) technology in monitoring two-phase gasliquid flow. The testing facility allowed for investigations over a range of superficial liquid velocities (0.3 to 2.0 ms-1) and superficial gas velocities (0.2 to 1.4 ms-1). The influence of several variables such as temperature, viscosity and surface roughness were also investigated. Measurements of AE for varying gas void fractions were compared to conductive probe measurements and results showed a direct correlation between the AE energy and the gas void fraction.It is concluded that the GVF can be determined by measurement of Acoustic Emission and this forms the major contribution of this thesis.
机译:在化工行业,特别是在石油和天然气生产运输管道中,在一定范围的气体和液体流速下会遇到两相气/液流动现象。监视和测量其特性(例如气体空隙率)对于最大限度地减少对下游工艺设备的破坏是必要的。因此,在过去的十年中,多相流量计量系统的研究,开发和使用已成为全世界工业的主要焦点。但是,这些仪表在某些流量条件下会遇到一些局限性,例如塞流(Slug)流态。修改了独特的实验设备,以适应对声发射(AE)技术在监测两相气/液流中的适用性的研究。该测试设备可以对表观液体速度(0.3到2.0 ms-1)和表观气体速度(0.2到1.4 ms-1)进行调查。还研究了温度,粘度和表面粗糙度等几个变量的影响。将AE的测量结果与导电探针的测量结果进行了比较,结果表明AE能量与气体空隙率之间存在直接相关性。结论是可以通过测量声发射来确定GVF,这是主要的贡献这篇论文。

著录项

  • 作者

    Addali Abdulmajid;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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