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A new visualisation and measurement technology for Water continuous multiphase flows

机译:一种新的水连续多相流可视化和测量技术

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摘要

This paper reports the performance of a research prototype of a new multiphase flow instrument to non-invasively measure the phase flow rates, with the capability to rapidly image the flow distributions of two- and three-phase (gas and/or oil in water) flows. The research prototype is based on the novel concepts of combining vector Electrical Impedance Tomography (EIT) sensor (for measuring dispersed-phase velocity and fraction) with an electromagnetic flow metre (EMF, for measuring continuous-phase velocity with the EIT input) and a gradiomanometer flow-mixture density metre (FDM), in addition to on-line water conductivity, temperature and absolute pressure measurements. EIT–EMF–FDM data fusion embedded in the research prototype, including online calibration/compensation of conductivity change due to the change of fluids' temperature or ionic concentration, enables the determination of mean concentration, mean velocity and hence the mean flow rate of each individual phase based on the measurement of dispersed-phase distributions and velocity profiles. Results from first flow-loop experiments conducted at Schlumberger Gould Research (SGR) will be described. The performance of the research prototype in flow-rate measurements are evaluated by comparison with the flow-loop references. The results indicate that optimum performance of the research prototype for three-phase flows is confined within the measuring envelope 45–100% Water-in-Liquid Ratio (WLR) and 0–45% Gas Volume Fraction (GVF). Within the scope of this joint research project funded by the UK Engineering & Physical Sciences Research Council (EPSRC), only vertical flows with a conductive continuous liquid phase will be addressed.
机译:本文报告了一种新型多相流仪器的研究原型的性能,该仪器可无创地测量相流量,并能够快速成像两相和三相(水中的气体和/或油)的流量分布流。该研究原型基于将矢量电阻抗层析成像(EIT)传感器(用于测量分散相速度和分数)与电磁流量计(EMF,用于使用EIT输入测量连续相速度)相结合的新颖概念。重力计流量混合密度仪(FDM),以及在线电导率,温度和绝对压力测量。嵌入在研究原型中的EIT–EMF–FDM数据融合,包括由于流体温度或离子浓度变化而导致的电导率变化的在线校准/补偿,可以确定每种流体的平均浓度,平均速度以及平均流速基于分散相分布和速度分布的测量结果。将描述在斯伦贝谢古尔德研究公司(SGR)进行的首次流动回路实验中得到的结果。通过与流量环参考进行比较,评估了研究原型在流量测量中的性能。结果表明,针对三相流的研究原型的最佳性能被限制在测量范围45–100%的液中水比(WLR)和0–45%的气体体积分数(GVF)内。在这个由英国工程与物理科学研究委员会(EPSRC)资助的联合研究项目的范围内,将仅解决具有导电连续液相的垂直流的问题。

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