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首页> 外文期刊>International Journal of Multiphase Flow >Electrical impedance-based void fraction measurement and flow regime identification in microchannel flows under adiabatic conditions
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Electrical impedance-based void fraction measurement and flow regime identification in microchannel flows under adiabatic conditions

机译:绝热条件下微通道流中基于电阻抗的空隙率测量和流态识别

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摘要

Electrical impedance of a two-phase mixture is a function of void fraction and phase distribution. The difference in the specific electrical conductance and permittivity of the two phases is exploited to measure electrical impedance for obtaining void fraction and flow regime characteristics. An electrical impedance meter is constructed for the measurement of void fraction in microchannel two-phase flow. The experiments are conducted in air-water two-phase flow under adiabatic conditions. A transparent acrylic test section of hydraulic diameter 780 μm is used in the experimental investigation. The impedance void meter is calibrated against the void fraction calculated using analysis of images obtained with a high-speed camera. Based on these measurements, a methodology utilizing the statistical characteristics of the void fraction signals is employed for identification of microchannel flow regimes. A self-organizing neural network is used for classification of the flow regimes.
机译:两相混合物的电阻抗是空隙率和相分布的函数。利用两相的比电导率和介电常数的差异来测量电阻抗,以获得空隙率和流动状态特征。构造了用于测量微通道两相流中空隙率的电阻抗仪。实验是在绝热条件下在空气-水两相流中进行的。在实验研究中使用了水力直径为780μm的透明丙烯酸测试部分。针对通过使用高速摄像机获得的图像进行分析而计算出的空隙率,对阻抗空隙率仪进行校准。基于这些测量,采用利用空隙分数信号的统计特性的方法来识别微通道流动状态。自组织神经网络用于流态分类。

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