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An investigation of oil-water two-phase flow instability using multivariate multi-scale weighted permutation entropy

机译:利用多变量多尺度加权置换熵对油水两相流不稳定的研究

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摘要

The present study is devoted to the investigation of oil-water two-phase flow instability using multivariate multi-scale weighted permutation entropy (MWMPE). Four typical multivariate multi-scale entropies, namely MWMPE, multivariate multi-scale permutation entropy (MMPE), multivariate multi-scale sample entropy (MMSE) and multivariate multiscale approximate entropy (MMAE) are applied in Lorenz system with the addition of different kinds of noises. The comparison results indicate that MWMPE presents the superiorities of being sensitive to the variation in scale, showing a monotonous increasing trend as well as the best anti-noise ability. Accordingly, with the fluctuating signals from an eight-electrode rotating electrical field conductance sensor used for the measurement of oil-water flows, we extract MWMPE for the whole experimental flow conditions, in terms of which the effects of mixture velocity and water-cut on oil-water two-phase flow instability are illuminated. Our research provides an effective method for uncovering the underlying evolution instability of the flow structures in oil-water flows. (C) 2018 Elsevier B.V. All rights reserved.
机译:本研究致力于使用多元多尺度加权置换熵(MWMPE)对油水两相流不稳定的研究。四个典型多变量多尺度熵,即MWMPE,多变量多尺度排列熵(MMPE),多变量多尺度样本熵(MMSE)和多变量多变量近似熵(MMAE)在Lorenz系统中应用了不同类型的噪音。比较结果表明,MWMPE呈现出对规模变化敏感的优势,显示出单调的增加趋势以及最佳的抗噪声能力。因此,利用来自用于测量油水流量的八个电极旋转电场传导传感器的波动信号,我们提取了整个实验流动条件的MWMPE,就其中混合物速度和水切口的影响油水两相流不稳定性被照亮。我们的研究提供了一种有效的方法,可以揭示油水流动结构的流动结构的潜在演化不稳定性。 (c)2018年elestvier b.v.保留所有权利。

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