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Detection of Two-Phase Flow Patterns in a Vertical Minichannel Using the Recurrence Quantification Analysis

机译:基于递归定量分析的垂直小通道内两相流模式检测

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The two-phase flow (water-air) occurring in square minichannel (3x3 mm) has been analysed. In the minichannel it has been observed: bubbly flow, flow of confined bubbles, flow of elongated bubbles, slug flow and semi-annular flow. The time series recorded by laser-phototransistor sensor was analysed using the recurrence quantification analysis. The two coefficients:Recurrence rate (RR) and Determinism (DET) have been used for identification of differences between the dynamics of two-phase flow patterns. The algorithm which has been used normalizes the analysed time series before calculating the recurrence plots.Therefore in analysis the quantitative signal characteristicswas neglected. Despite of the neglect of quantitative signal characteristics the analysis of its dynamics (chart of DET vs. RR) allows to identify the two-phase flow patterns. This confirms that this type of analysis can be used to identify the two-phase flow patterns in minichannels.
机译:分析了方形微型通道(3x3 mm)中发生的两相流(水-空气)。在微通道中,已经观察到:气泡流,密闭气泡流,细长气泡流,团状流和半环形流。使用递归量化分析来分析由激光光电晶体管传感器记录的时间序列。递归率(RR)和确定性(DET)这两个系数已用于识别两相流型动力学之间的差异。所使用的算法在计算递归图之前将分析的时间序列归一化,因此在分析中忽略了定量信号特征。尽管忽略了定量信号特征,但对其动力学进行分析(DET与RR的图表)仍可以识别两相流模式。这证实了这种类型的分析可用于识别微通道中的两相流模式。

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