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Phase redistribution and separation of gas-liquid flows in an equal-sided impacting tee junction with a horizontal inlet and inclined outlets.

机译:在具有水平进口和倾斜出口的等边冲击三通接头中,气液流的相重新分布和分离。

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摘要

Phase-redistribution and full-phase separation data were generated for two-phase (air-water) flow splitting at an equal-sided impacting tee junction with a horizontal inlet and inclined outlets. The flow loop incorporated a tee junction machined in an acrylic block with the three sided having an equal diameter of 13.5 +/- 0.1 mm I.D. Both sets of experiments were conducted at a nominal pressure (Ps) of 200 kPa (abs) and near-ambient temperature (Ts).;The operating conditions for the phase-redistribution experiments were as follows: inlet superficial liquid velocities (JL1 ) ranging from 0.01 to 0.18 m/s, inlet qualities (x 1) ranging from 0.1 to 0.9, mass split ratios (W 3/W1) from 0 to 1.0, and outlet inclination angles ranging from horizontal to vertical. These inlet conditions corresponded to inlet flow regimes of stratified, wavy, and annular. Phase-redistribution data revealed that the redistribution of phases depended on the inlet conditions, the mass split ratio at the junction, and the inclination angle of the outlets. The magnitude of the inclination effect was dependent on the inlet flow regime. The phase redistribution in stratified flow was very sensitive to the outlet angle and full separation could be achieved at angles as low as 0.7°. Wavy flow was less sensitive to the outlet angle and annular flow was even less sensitive to the outlet angle.;The capability of a single impacting tee junction to perform as a full phase separator has been examined. Experimental data were obtained for the limiting inlet conditions under which full separation was attainable at various outlet inclinations (theta) of 2.5°, 7.5°, 15°, 30°, 60°, 75°, and 90°. Full separation data have shown that a single impacting tee junction can perform as a full-phase separator for some inlet conditions. Flow phenomena near the limiting conditions were observed and a simple correlation based on the similarity between these flow phenomena and the phenomenon of liquid entrainment in small upward branches was developed. This correlation was capable of accurate prediction of the data in terms of magnitude and trend.
机译:在具有水平入口和倾斜出口的等边冲击三通处产生两相(空气-水)分流的相分布和全相分离数据。流动回路装有一个在丙烯酸树脂块中加工的三通接头,其三边的内径相等,内径为13.5 +/- 0.1毫米。两组实验均在200 kPa(abs)的标称压力(Ps)和接近环境温度(Ts)的条件下进行。相变实验的操作条件如下:入口表观液体速度(JL1)范围从0.01到0.18 m / s,入口质量(x 1)从0.1到0.9,质量分配比(W 3 / W1)从0到1.0,出口倾斜角从水平到垂直。这些入口条件对应于分层,波浪形和环形的入口流动状态。相分布数据表明,相的重新分布取决于入口条件,接合处的质量分配比和出口的倾斜角度。倾斜效果的大小取决于入口流态。分层流中的相重新分布对出口角非常敏感,在低至0.7°的角处即可实现完全分离。波浪流对出口角不那么敏感,而环形流对出口角甚至更不敏感。;已经研究了单个冲击三通接头作为全相分离器的能力。获得了限制进口条件下的实验数据,在该条件下,可以在2.5°,7.5°,15°,30°,60°,75°和90°的各种出口倾角(θ)下实现完全分离。全分离数据表明,在某些入口条件下,单个三通接头可以作为全相分离器。观察到接近极限条件的流动现象,并基于这些流动现象与小向上分支中的液体夹带现象之间的相似性建立了简单的相关性。这种相关性能够根据幅度和趋势准确预测数据。

著录项

  • 作者

    Mohamed, Moftah A.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:52

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