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Gas-liquid Phase Distribution and Void Fraction Measurements Using the MRI

机译:使用MRI进行气液相分布和空隙率测量

摘要

We used a permanent-magnet MRI system to estimate the integral and spatially- and/or temporally-resolved void-fraction distributions and flow patterns in gas-liquid two-phase flows. Air was introduced at the bottom of the stagnant liquid column using an accurate and programmable syringe pump. Air flow rates were varied between 1 and 200 ml/min. The cylindrical non-conducting test tube in which two-phase flow was measured was placed in a 2.67 kGauss MRI with MRT spectrometer/imager. Roughly linear relationship has been obtained for the integral void-fraction, obtained by volume-averaging of the spatially-resolved signals, and the air flow rate in upward direction. The time-averaged spatially-resolved void fraction has also been obtained for the quasi-steady flow of air in a stagnant liquid column. No great accuracy is claimed as this was an exploratory proof-of-concept type of experiment. Preliminary results show that MRI a non-invasive and non-intrusive experimental technique can indeed provide a wealth of different qualitative and quantitative data and is especially well suited for averaged transport processes in adiabatic and diabatic multi-phase and/or multi-component flows.
机译:我们使用永磁体MRI系统估算气液两相流中的积分和在空间上和/或在时间上分辨的空隙率分布和流动模式。使用精确的可编程注射泵将空气引入停滞液柱的底部。空气流速在1至200毫升/分钟之间变化。将测量了两相流的圆柱形不导电试管放在带有MRT光谱仪/成像仪的2.67 kGauss MRI中。对于积分的空隙率,已经获得了大致的线性关系,该空隙率是通过空间分辨信号的体积平均以及向上的空气流速获得的。对于滞留液柱中的空气的准稳态流动,也获得了时间平均的空间分辨空隙率。由于这是一种探索性的概念验证型实验,因此并未声称具有很高的准确性。初步结果表明,MRI是一种非侵入性和非侵入性的实验技术,确实可以提供大量不同的定性和定量数据,尤其适合绝热和绝热多相和/或多组分流的平均输运过程。

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