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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >A Four-Sector Conductance Method for Measuring and Characterizing Low-Velocity Oil–Water Two-Phase Flows
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A Four-Sector Conductance Method for Measuring and Characterizing Low-Velocity Oil–Water Two-Phase Flows

机译:测量和表征低速油水两相流的四扇区电导方法

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Measuring water holdup and characterizing the flow behavior of an oil–water two-phase flow is a contemporary and challenging problem of significant importance in industry. To address this problem, we develop a new method to design a new four-sector distributed conductance sensor. Specifically, we first use the finite-element method (FEM) to investigate the sensitivity distribution of the electric field and then calculate its response on the measurement electrodes. Based on the FEM analysis results, we extract two optimizing indexes to describe and find the optimum geometry for the four-sector distributed conductance sensor. We carry out oil–water two-phase flow experiments in a vertical upward pipe to validate the designed sensor implemented in the measurement of water holdup. In addition, we use the multivariate pseudo Wigner distribution (MPWD) method to analyze the multivariate signals from the four-sector distributed sensor. Our analytical and experimental results indicate that the four-sector distributed conductance sensor enables measuring water holdup and the MPWD allows uncovering local flow behavior revealing different oil–water flow patterns.
机译:测量持水率并描述油水两相流的流动特性是一个当代的,具有挑战性的问题,在工业中具有重要意义。为了解决这个问题,我们开发了一种新方法来设计新的四扇区分布式电导传感器。具体来说,我们首先使用有限元方法(FEM)来研究电场的灵敏度分布,然后计算其在测量电极上的响应。基于有限元分析结果,我们提取了两个优化指标来描述和找到四扇区分布式电导率传感器的最佳几何形状。我们在垂直向上的管道中进行了油水两相流动实验,以验证设计用于测水率的传感器。此外,我们使用多元伪Wigner分布(MPWD)方法来分析来自四扇区分布式传感器的多元信号。我们的分析和实验结果表明,四扇区分布式电导率传感器可以测量持水量,而MPWD可以揭示局部水流行为,揭示出不同的油水流型。

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