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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Measurement of gas phase characteristics in bubbly oil-gas-water flows using bi-optical fiber and high-resolution conductance probes
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Measurement of gas phase characteristics in bubbly oil-gas-water flows using bi-optical fiber and high-resolution conductance probes

机译:使用双光纤和高分辨率电导探头测量起泡油气 - 水流中的气相特性

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In the present study, experiments are carried out to investigate local gas phase characteristics of bubbly oil-gas-water flows in a vertical upward pipe with small inner diameter (ID). Bi-optical fiber probe signals at different radial positions and leading and rear half-ring conductance sensor fluctuation signals are collected in a 20 mm ID test pipe. Then flow parameters, including local gas volume fraction, gas velocity and bubble size distribution are extracted according to optical probe signals. The results show that the gas phase superficial velocity, mixture superficial velocity of oil and water as well as mixing ratio of oil and water all have significant impacts on the distribution of gas phase flow parameters. Additionally, in order to validate the results obtained from optical probe signals, multi-scale cross entropy (MSCE) algorithm is applied to analyze signals of high-resolution half-ring conductance sensor to uncover the dynamical instability of oil-gas-water bubbly flows under different flow conditions. (C) 2017 Elsevier Inc. All rights reserved.
机译:在本研究中,进行实验,以研究具有小内径(ID)的垂直向上管中的局部气体流动的局部气相特性。在20 mm ID测试管中收集不同径向位置处的双光纤探针信号和前后半环电导传感器波动信号。然后根据光学探针信号提取流量参数,包括局部气体体积分数,气体速度和气泡尺寸分布。结果表明,气相浅表速度,油和水的混合物浅表速度以及油和水的混合比对气相流动参数的分布产生显着影响。另外,为了验证从光学探针信号获得的结果,应用多尺度跨熵(MSCE)算法来分析高分辨率半环电导传感器的信号,以发现油气 - 水气泡流动的动态不稳定性在不同的流动条件下。 (c)2017年Elsevier Inc.保留所有权利。

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