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Fluid analysis of gas-liquid two-phase flow based on semiconductor laser measurement and s transform

机译:基于半导体激光测量和S变换的气液两相流流体分析

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In this paper, we collect the flowing signal of the gas/liquid two-phase flow using the semiconductor laser measurement technique. S transform is then used to analyze the collected signal on both time and frequency domains. S transform is introduced and a method to indicate the flow pattern change based on the S transform power spectrum is also proposed. We apply S transform on 5 flow patterns of laser measurement signal under over 100 circumstances. The results show that S transform power spectrum is closely related to flow patterns. Peak value will appear in the case of bubble flows with apparent randomness in the distribution on the time axis. Peaks appear between 10 and 100Hz. Slug flow has the lowest peak value of the power spectrum and shows obvious periodicity. The power is focused at about the 50Hz of the mid frequency band. When the flow is evolved into churn flow, the peak of the power spectrum for S transform increases again, but the maximum value is slightly lower than that of the bubble flow and with periodicity on the time axis and wider frequency bandwidth.
机译:在本文中,我们使用半导体激光测量技术收集了气/液两相流的流动信号。然后使用S变换在时域和频域上分析收集的信号。介绍了S变换,并提出了一种基于S变换功率谱的流型变化指示方法。我们将S变换应用于100多种情况下的5种激光测量信号流模式。结果表明,S变换功率谱与流型密切相关。在气泡流动的情况下会出现峰值,时间轴上的分布具有明显的随机性。峰值出现在10至100Hz之间。流具有功率谱的最低峰值,并显示出明显的周期性。功率集中在中频带的50Hz左右。当流动演变为搅动流动时,用于S变换的功率谱的峰值再次增大,但最大值略低于气泡流动的最大值,并且在时间轴上具有周期性,并且具有较宽的频率带宽。

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