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Study on interfacial structures in slug flows using a miniaturized four-sensor conductivity probe

机译:用小型四传感器电导率探针研究团状流的界面结构

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A miniaturized four-sensor conductivity probe is designed to effectively minimize the reported limitations of the previous designs. The new probe is capable of measuring both large and small bubbles. The signal processing scheme is constructed for the probe in such a way that the two-phase parameters of different types of bubbles can be identified and categorized. Image analysis is employed to benchmark the new probe. A good agreement between the experimental data and the theoretical calculation is obtained, which assesses both the measurement principle and the capability of the signal processing scheme. The experimental data are obtained in a 5.08-cm ID vertical co-current air/water loop at two different axial locations of L/D = 32 and 64 in slug flow conditions. The local time-averaged two-phase parameters obtained by the probe include the interfacial area concentration, void fraction, interface velocity, chord length, and Sauter mean diameter for various types of bubbles. The measured parameters are categorized in two groups in view of the development of a two-group interfacial transport equation. The development of geometric two-phase flow parameters of each group along the axial direction of the flow duct is well demonstrated.
机译:小型化的四传感器电导率探头旨在有效地减少先前设计的报告限制。新型探头能够测量大气泡和小气泡。针对探头构造信号处理方案,以便可以识别和分类不同类型气泡的两相参数。使用图像分析来对新探针进行基准测试。实验数据和理论计算之间取得了良好的一致性,从而评估了测量原理和信号处理方案的能力。实验数据是在5.08厘米内径的垂直并流空气/水回路中,在团状流条件下,在L / D = 32和64的两个不同轴向位置处获得的。探针获得的局部时间平均两相参数包括各种气泡类型的界面面积浓度,空隙率,界面速度,弦长和索特平均直径。考虑到两类界面传输方程的发展,可将测量的参数分为两类。很好地说明了沿流道轴向方向的每组几何两相流参数的发展。

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