Gas-water two-phase flow pattern characterization with Multivariate Multiscale Entropy

C. Tan, Jia Zhao, F. Dong
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引用次数: 3

Abstract

Gas-liquid two-phase flow is a commonly encountered multiphase flow phenomena in process industries. The flow behavior of each typical flow pattern is urged to know in order to further understand its inherent flow mechanism. This paper aims to characterize the flow pattern of gas-water two-phase flow within a horizontal pipe by the Multivariate Multiscale Entropy (MMSE) analysis with the measured data of a dual-plane Electrical Resistance Tomography (ERT) system. The measured data from each plane of ERT is jointly processed as a bivariate time series set, and the Multivariate Multiscale Sample Entropy (MSampEn) is then applied to characterize the inner flow behavior of the two-phase flow system. The results demonstrate that the MSampEn is capable of providing insight characterization of the decomposition of the measurement signal of each flow pattern, and that the flow patterns and also their complexity can be easily identified at different scales.
多元多尺度熵表征气水两相流型
气液两相流是过程工业中常见的多相流现象。为了进一步了解其内在的流动机理,迫切需要了解每种典型流型的流动特性。利用双平面电阻层析成像(ERT)系统的实测数据,采用多元多尺度熵(MMSE)分析方法对水平管道内气水两相流的流态进行了表征。将ERT各平面的测量数据作为一个二元时间序列集进行联合处理,然后利用多元多尺度样本熵(Multivariate Multiscale Sample Entropy, MSampEn)来表征两相流系统的内部流动行为。结果表明,MSampEn能够对每个流型的测量信号的分解进行深入的表征,并且可以很容易地识别不同尺度下的流型及其复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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