Uncovering flow dynamic behaviors underlying oil–gas–water three phase flow using multivariate synchrosqueezing transform

Lei OuYang, Weikai Ren, Ningde Jin
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Abstract

Oil-gas-water three-phase flow is distinguished by its intricate flow pattern. The analysis of experimental observations to reveal the oil-gas-water three phase flow’s dynamic behavior remains a challenging task. In this paper, firstly, a simulation investigation to compare the multivariate pseudo-winger distribution (MPWD) and multivariate synchrosqueezing transform (MSST) is presented. The cross term may be suppressed while maintaining high time-frequency concentration, according to our research on multivariate synchrosqueezing transform. The time-frequency analysis of various vertical oil–gas–water three phase flow patterns is then conducted utilizing MSST. The results from this study reveal that in various frequency bands, slug flow, bubble flow, and churn flow exhibit considerable temporal frequency variances. The MSST can effectively uncover the intrinsic connection between signal fluctuations and flow structure, and promote the understanding of various patterns of flow.
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利用多元同步压缩变换揭示油气水三相流的流动动力学行为
油气水三相流以其复杂的流动形态而著称。通过对实验观测结果的分析来揭示油气水三相流的动力学特性仍然是一项具有挑战性的任务。本文首先对多元伪边锋分布(MPWD)和多元同步压缩变换(MSST)进行了仿真研究。通过对多元同步压缩变换的研究,可以在保持高时频集中的同时抑制交叉项。然后利用MSST对不同垂向油气水三相流进行时频分析。研究结果表明,在不同的频段内,段塞流、泡流和搅拌流表现出相当大的时间频率差异。MSST可以有效地揭示信号波动与流动结构之间的内在联系,促进对各种流动模式的理解。
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