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Investigation and prediction of slug flow characteristics in highly viscous liquid and gas flows in horizontal pipes

机译:水平管道中高粘性液体和气体流的团状流特性的研究和预测

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摘要

Slug flow characteristics in highly viscous liquid and gas flow are studied experimentally in a horizontal pipe with 0.074 m ID and 17 m length. Results of flow regime map, liquid holdup and pressure gradient are discussed and liquid viscosity effects are investigated. Applicable correlations which are developed to predict liquid holdup in slug body for low viscosity flow are assessed with high viscosity liquids. Furthermore, a mechanistic model is developed for predicting the characteristics of slug flows of highly viscous liquid in horizontal pipes. A control volume is drawn around the slug body and slug film in a slug unit. Momentum equations with a momentum source term representing the significant momentum exchange between film zone and slug body are applied. Liquid viscosity effects are considered in closure relations. The mechanistic model is validated by comparing available pressure gradient and mean slug liquid holdup data produced in the present study and those obtained from literature, showing satisfactory capabilities over a large range of liquid viscosity.
机译:在内径为0.074 m,长度为17 m的水平管中,通过实验研究了高粘性液体和气体流中的弹状流动特性。讨论了流态图,液体滞留率和压力梯度的结果,并研究了液体粘度的影响。对于高粘度液体,评估了为预测低粘度流在块状体中的液体滞留而开发的适用相关性。此外,建立了一种机械模型来预测高粘性液体在水平管中的团状流特征。在a单元中围绕control体和薄膜绘制控制体积。应用具有动量源项的动量方程,该动量源项表示薄膜区域和弹头体之间的重要动量交换。在封闭关系中考虑了液体粘度效应。通过比较本研究和从文献中获得的可用压力梯度和平均段塞液体滞留率数据,验证了该机械模型,显示了在大范围液体粘度下令人满意的性能。

著录项

  • 作者

    Zhao Y.; Lao Liyun; Yeung H.;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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