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Measuring void fraction in bubbly air-water mixtures with ultrasonic extinctions.

机译:用超声波消光法测量气泡状空气-水混合物中的空隙率。

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摘要

Ultrasonic extinction measurements were carried out in a specially constructed acrylic tube filled with bubbly air-water mixtures. Several configurations were utilized to obtain bubble size distributions that significantly differed from each other. The systems were all oriented vertically, some with air bubbles rising through stagnant columns of water and others in simultaneous air-water flow. In all experiments a series of ultrasonic pulses was transmitted through the mixture and the received signals digitally acquired to computer disk for analysis. Ensemble averages of the acquired pulses were calculated in order to find the ultrasonic extinction caused by each bubble swarm. The extinction level of each individual pulse was also used to generate a time series which was referred to as the extinction signal in this report.;The extinction was observed to provide a sensitive indication of the volume fraction of air (void fraction) even at low air concentrations. The level of extinction was found to be a strong function of the bubble size distribution but only an indirect measurement of void fraction. However, the extinction was observed to correlate well with void fraction for each configuration studied so that relative changes in the void fraction for any one system could be accurately determined from changes in the extinction. This result leads to the potential for an ultrasonic tool to identify gas entry points in a borehole with liquids present. The extinction signal was presented as a possible means of determining the flow regime and as a qualitative indication of the bubble size distribution pattern. Experiments performed with swarms of bubbles whose average diameter diminished over time indicate that the bubbles most influential on the extinction measurement were quite small (on the order of a wavelength) and not volumetrically important. Contrary to most published correlations, no significant variation in sound speed was observed as air was introduced into the system.
机译:超声消光测量是在装有气泡水-空气混合物的特制丙烯酸管中进行的。利用几种配置来获得彼此明显不同的气泡尺寸分布。这些系统都是垂直放置的,有些气泡从停滞的水柱中升起,而另一些气泡则同时在空气-水流中流动。在所有实验中,一系列超声波脉冲通过混合物传输,接收到的信号被数字采集到计算机磁盘上进行分析。计算获得的脉冲的集合平均值,以发现由每个气泡群引起的超声消光。每个脉冲的消光水平也用于生成一个时间序列,在本报告中称为消光信号;即使在低温下也观察到消光提供了空气体积分数(空隙分数)的灵敏指示空气浓度。发现消光水平是气泡尺寸分布的强函数,但仅是空隙率的间接测量。然而,观察到消光与所研究的每种构型与空隙率具有良好的相关性,因此任何一个系统的空隙率的相对变化都可以根据消光的变化准确确定。该结果导致超声工具有潜力识别存在液体的井眼中的气体进入点。消光信号是确定流动状态的可能手段,也是气泡大小分布模式的定性指示。用平均直径随时间减小的气泡群进行的实验表明,对消光测量影响最大的气泡非常小(约为波长),并且在体积上不重要。与大多数已发表的相关性相反,在将空气引入系统时,未观察到声速的显着变化。

著录项

  • 作者

    Maher, Thomas Francis.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Petroleum.;Physics Acoustics.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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