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Optimization of a conductance probe with vertical multi-electrode array for the measurement of oil-water two-phase flow

机译:垂直多电极阵列电导探针用于油水两相流测量的优化

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This paper proposes a conductance probe with vertical multiple electrode array (VMEA), which can be used in oil-in-water two-phase pipe flow to measure the water volume fraction and axial velocity. The electrodes are flush mounted axially on the inside wall of an insulating duct. Using finite element analysis method, the evaluating indicators of uniform degree spatial sensitivity and information volume were used to investigate the performance of the VMEA. The optimized VMEA has enhanced spatial sensitivity and capability of obtaining the distributed information from two-phase flow. Due to the significant difference of conductance between oil and water, the VMEA can also be used to measure gas-liquid and liquid-solid two-phase flow with conductive continuous phase. The evaluating indicators used in this paper can be used extensively to investigate other types of conductive probe.
机译:本文提出了一种带有垂直多电极阵列(VMEA)的电导探针,该探针可用于水包油两相管道流动中以测量水的体积分数和轴向速度。电极轴向齐平安装在绝缘导管的内壁上。采用有限元分析方法,采用均匀度空间敏感度和信息量的评价指标,对VMEA的性能进行了研究。优化的VMEA具有增强的空间敏感性和从两相流中获取分布式信息的能力。由于油和水之间电导率的显着差异,VMEA还可以用于测量具有导电连续相的气-液和液-固两相流。本文使用的评估指标可广泛用于研究其他类型的导电探针。

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