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Method based on parallel-wire conductivity probe for measuring water hold-up in near-horizontal oil–water two-phase flow pipes

机译:基于平行线电导率探针的方法,用于测量近水平油水两相流量管中的水挤出

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摘要

On the basis of a quick-closing valve technology, parallel-wire conductivity probes were designed to measure water hold-up of oil-water two-phase flow in near-horizontal pipe. First, the electric-field distribution characteristics of the parallel-wire conductivity probe and its response to the change of the water layer height were calculated by using finite-element method. Then, for the oil-water stratified distribution in the near-horizontal pipe with a 5 degrees inclined angle, 20 mm inner diameter, and 1050 mm length, a measurement model for water hold-up was established. After that, a static experiment was carried out to investigate the accuracy of water-hold-up measurement. The results show that errors occur when the set water hold-up is with high values. The measurement errors were analysed based on curved oil-water interface predicted by Young-Laplace equation model, which are significantly related to the curvature of oil-water interface. It provides an effective experimental method for the measurement of water hold-up in a near-horizontal oil-water two-phase flow pipes. On the basis of this, the dynamic experiment of oil-water two-phase flow was carried out, and the slippage of oil-water two-phase flow was preliminarily revealed.
机译:在快速关闭阀技术的基础上,设计平行导线电导率探针以测量近水平管道的油水两相流的水载。首先,通过使用有限元法计算平行导线电导率探针的电场分布特性及其对水层高度变化的响应。然后,对于具有5度倾斜角度,20mm内径和1050mm长度的近水平管中的油水分层分布,建立了用于水稳定的测量模型。之后,进行静态实验以研究水稳定测量的准确性。结果表明,当设定的水稳定具有高值时,会发生错误。基于幼拉方程模型预测的弯曲油水界面分析了测量误差,其与油水界面的曲率显着相关。它提供了一种有效的实验方法,用于在近水平的油水两相流动管中测量水载。在此基础上,进行了油水两相流的动态实验,预先揭示了油水两相流的滑动。

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