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INVESTIGATION OF LIQUID LOADING IN GAS WELL: SIMULTANEOUS MEASUREMENTS OF DROP SIZE, FILM THICKNESS AND PRESSURE DROP

机译:气井中液体负荷的研究:滴度,膜厚和压降的同时测量

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The mechanism of atomization of part of the liquid film to form drops in annular two-phase flow is not entirely understood. It has been observed that drop creation only occurs when there are large disturbance waves present on the film interface. Woodmansee and Hanratty [1] observed that ripples on these waves were a precursor to drops. Though it has been reported that drops occur in bursts by Azzopardi [2], all previous drop size or concentration measurements have always been time integrated to simplify data analysis. Dynamic time averaged drop-size measurements are reported for the first time for annular two-phase flow. Experiments were carried out on a 19mm internal diameter vertical pipe with air and water as fluids. Spraytec, a laser diffraction-based, drop size measurement instrument, was used in the data acquisition. Simultaneous time-resolved measurements were made of: film thickness using conductance probes employing a pair of flush mounted rings as electrodes; and pressure gradient. The gas superficial velocity was 13-43 m/s at liquid superficial velocities of 0.05 and 0.15 m/s. Additional tests were carried out with the gas velocity at 14 m/s for liquid superficial velocities of 0.03-0.18 m/s. Though structures are not clearly visible in the signals acquired, they have been analyzed in amplitude and frequency space to yield Probability Density Function (PDF) and to identify the dominant frequency. Cross-correlation between two film thickness probes provides the wave velocities. Based on the signal analysis, links between film thickness, drop concentration and pressure drop have been identified.
机译:尚不完全了解部分液膜雾化形成环形两相流液滴的机理。已经观察到,仅当在膜界面上存在大的扰动波时才发生液滴的产生。 Woodmansee和Hanratty [1]观察到这些波上的涟漪是液滴的先兆。尽管据报道,Azzopardi [2]会在液滴中突然出现液滴,但所有以前的液滴大小或浓度测量值始终经过时间积分以简化数据分析。首次报告了环形两相流动的动态时间平均液滴尺寸测量值。实验是在直径为19mm的垂直管上进行的,空气和水为流体。 Spraytec,一种基于激光衍射的墨滴尺寸测量仪器,用于数据采集。同时进行时间分辨的测量:使用电导探针的膜厚度,该电导探针使用一对齐平安装的环作为电极;和压力梯度。在液体表观速度为0.05和0.15 m / s时,气体表观速度为13-43 m / s。对于液体表面速度为0.03-0.18 m / s的气体速度以14 m / s的速度进行了其他测试。尽管在所采集的信号中看不到清晰可见的结构,但已在幅度和频率空间中对其进行了分析,以产生概率密度函数(PDF)并确定主导频率。两个膜厚探针之间的互相关提供了波速。基于信号分析,已经确定了薄膜厚度,液滴浓度和压降之间的联系。

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