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电容相移检测法测量水平油水两相流中的持水率。

Capacitive Phase Shift Detection for Measuring Water Holdup in Horizontal Oil⁻Water Two-Phase Flow.

机构信息

School of Electrical and Information Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Sensors (Basel). 2018 Jul 11;18(7):2234. doi: 10.3390/s18072234.

Abstract

In this paper, a phase shift detection system of flow impedance is designed based on a concave capacitance sensor (CCS). The flow impedance of oil⁻water stratified flow is investigated by establishing an equivalent circuit model and a finite element model. The influence of exciting frequency and sensor geometric parameters on the phase shift output of the CCS is studied to access an optimal phase shift measurement system. An experiment of horizontal oil⁻water two-phase flows was conducted during which four flow patterns are observed, i.e., stratified flow (ST), stratified wavy flow (SW), dual continuous flow (DC), and dispersed oil-in-water and water flow (DO/W&W). The phase shift responses of the CCS to the water holdup variation are collected. The results indicate that the phase shift response of the CCS presents satisfied sensitivity for ST and SW flow patterns, which is consistent with the predictions of the equivalent circuit model and the finite element model. Although the flow structures of DC and DO/W&W flows are extremely nonuniform, the phase shift response of the CCS still shows better linearity and sensitivity to the water holdup variation. In general, the capacitive phase shift detection technology exhibits advantages for water holdup measurement in horizontal oil⁻water two-phase flow with nonuniform phase distributions and conductive water.

摘要

本文基于凹面电容传感器(CCS)设计了一种用于流量阻抗的相移检测系统。通过建立等效电路模型和有限元模型,研究了油水分层流的流量阻抗。研究了激励频率和传感器几何参数对 CCS 相移输出的影响,以获得最佳的相移测量系统。进行了水平油水两相流实验,观察到了四种流型,即分层流(ST)、分层波浪流(SW)、双连续流(DC)和分散油-水-水流动(DO/W&W)。采集了 CCS 对持水率变化的相移响应。结果表明,CCS 的相移响应对 ST 和 SW 流型具有满意的灵敏度,这与等效电路模型和有限元模型的预测一致。尽管 DC 和 DO/W&W 流的流型结构极不均匀,但 CCS 的相移响应对持水率变化仍表现出较好的线性度和灵敏度。总的来说,电容相移检测技术在具有非均匀相分布和导电水的水平油水两相流中的持水率测量方面具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/261a/6069079/ba3a119755f1/sensors-18-02234-g001.jpg

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