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Identification of two-phase flow patterns in minichannel based on RQA and PCA analysis

机译:基于RQA和PCA分析的微通道两相流模式识别

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摘要

In the paper it has been shown that the analysis of dynamics of void fraction changes in time can be used for identification of two-phase flow patterns. The two-phase flow (air-water) in horizontal square minichannel (3×3 mm) has been analysed. The laser-phototransistor sensor signal was used for qualitative assessment of void fraction in minichannel. For data analysis there has been used the recurrence quantification analysis and the principal component analysis. The method of selection of coefficients resulted of recurrence quantification analysis has been proposed. Those coefficients describe the different aspects of two-phase flow patterns, but they are not independent variables describing the dynamics of two-phase flow. To obtain the set of independent variables characterising the dynamics of two-phase flow patterns the principal component method has been used. The proposed method allows us for the identification of following two-phase flow patterns: flow of micro-bubbles, flow of micro- and mini-bubbles, flow of micro- and mini-bubbles with confined bubbles, slug flow, stratified flow. The obtained results confirm that this type of analysis can be considered as an alternative way of identification of two-phase flow patterns in the minichannel.
机译:在本文中已经表明,空隙率随时间变化的动力学分析可用于识别两相流型。分析了水平方形小通道(3×3 mm)中的两相流(空气-水)。激光光电晶体管传感器信号用于定性评估微通道中的空隙率。对于数据分析,使用了循环定量分析和主成分分析。提出了基于递归量化分析的系数选择方法。这些系数描述了两相流模式的不同方面,但它们不是描述两相流动力学的独立变量。为了获得表征两相流型动力学的独立变量集,已使用主成分法。所提出的方法使我们能够识别以下两相流型:微气泡流,微气泡和微气泡流,带受限气泡的微气泡和微气泡流,团状流,分层流。获得的结果证实,这种类型的分析可以被视为识别微通道中两相流型态的替代方法。

著录项

  • 来源
  • 作者

    R. Mosdorf; G. Gorski;

  • 作者单位

    Department of Mechanics and Applied Computer Science, Faculty of Mechanical Engineering, Bialystok University of Technology, Wiejska 45 C, 15-35 J Bialystok, Poland;

    Department of Mechanics and Applied Computer Science, Faculty of Mechanical Engineering, Bialystok University of Technology, Wiejska 45 C, 15-35 J Bialystok, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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