一种基于微波法的气-水流动孔隙率测量方法

Huimin Ma, Ying Xu, Chao Yuan, Tao Li, Cenwei Sun, Yumeng Zhang, Nianrong Wang
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引用次数: 0

摘要

在天然气工业中,由于气相流态复杂多变,高精度测量含气率是一个挑战。本文研究了一种基于微波传输线法测量气水流中空隙率的微波传感器。该传感器包含水平电极和垂直电极,形成空间正交传输线组合结构,从而可以检测气水流动状态并考虑其对测量的影响。利用COMSOL软件对分层分布结构和环形分布结构的传感器内部电磁场进行了仿真分析。此外,通过静态实验研究了分层分布结构的水平和垂直电极相位输出的变化特性。最后,对分层、波状、段塞流、环空气水流动模式进行的流动实验表明,孔隙率与传感器输出呈正相关,并且可以通过传感器进行预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Void Fraction Measurement Method of Gas-water Flow Based on Microwave Method
In the natural gas industry, measuring void fraction with high accuracy is challenging, because the flow pattern of gas-flow is complicated and changeable. This research presents a microwave sensor to measure void fraction of gas-water flow based on the microwave transmission line method. The sensor contains horizontal and vertical electrodes resulting in a spatial orthogonal transmission line combination structure, so that the gas-water flow regime can be detected and its influence on the measurement can be accounted for. The electromagnetic fields inside the sensor for stratified and annular distribution structure are simulated and analyzed using COMSOL software. Furthermore, the variation characteristics of the horizontal and vertical electrode phase outputs of the stratified distribution structure are investigated by static experiments. Finally, flow experiments covering stratified, wavy, slug, annular gas-water flow regimes, indicates that the void fraction are positive correlated to the sensor outputs and can be predict by the sensor.
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