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Flow Patterns and Water Wetting in Oil-Water Two Phase Flow - A Flow Loop Study

机译:油水两相流中的水流模式和水润湿-流环研究

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Carbon steel pipelines used for transporting oils generally have some water flowing concurrently with the oil phase. The presence of water can lead to internal corrosion problems when free water contacts/wets the pipe wall surface. Therefore, it is pertinent to study how the distribution of water under different oil-water flow conditions can affect the steel surface wetting, i.e. whether the wall surface is wetted by water or oil phase. In this experimental work, a large scale 0.1m ID inclinable flow loop was used to study the two phase oil-water flow in horizontal and vertical positions. Paraffinic model oil and 1wt% NaCl aqueous solutions were utilized as the test fluids. Two measurement techniques: flush mounted conductivity pins and high speed camera were employed for surface wetting determination and flow patterns visualization, respectively. The wetting data were classified based on four types of wetting behaviors: stable water wet, unstable water wet, unstable oil wet, and stable oil wet. The wetting results from the conductivity pins were found to match with the visualization results from the high speed camera. The horizontal oil-water flow results showed that water flows separately and wets the pipe bottom at low mixture liquid velocity. Moreover, not all of the water is fully dispersed at higher mixture liquid velocities, as traces of water can still be found to wet the surface intermittently.
机译:用于运输石油的碳钢管道通常会有一些水与油相同时流动。当自由水接触/润湿管壁表面时,水的存在会导致内部腐蚀问题。因此,有必要研究在不同的油水流动条件下水的分布如何影响钢表面的润湿性,即壁表面是否被水或油相润湿。在此实验工作中,使用了一个大型的0.1m ID倾斜式流量环来研究水平和垂直位置的两相油水流。使用石蜡模型油和1wt%NaCl水溶液作为测试液。两种测量技术:齐平安装的电导销和高速摄像头分别用于表面润湿测定和流动模式可视化。润湿数据基于四种类型的润湿行为进行分类:稳定的水湿,不稳定的水湿,不稳定的油湿和稳定的油湿。发现电导率引脚的润湿结果与高速相机的可视化结果相匹配。水平油水流动结果表明,水以低混合液速度分开流动并润湿了管底。而且,并不是所有的水都以较高的混合液速度完全分散,因为仍然可以发现痕量的水间歇性地润湿表面。

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