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An Experimental Study of Mobilization and Creeping Flow of Oil Slugs in a Water-Filled Capillary

机译:充水毛细管中油团的动员和蠕变流动的实验研究

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An experimental investigation was carried out on mobilization and very slow flow of oil slugs in a capillary tube. The pressure drop of the slug flow was measured at every stage of mobilizing and moving the oil slugs as a function of capillary number in the range of 4 × 10~(-7)-6 × 10~(-6). The pressure drop across the oil slug experienced three stages: build-up, hold-up, and steady stages. During the build-up stage, the convex rear end of the slug was becoming concave into the oil slug and the convex front end of the slug moved ahead to form a new portion of the slug. At the hold-up stage, both the concave rear end and the front end continued to advance, and the initial contact line of the oil slug with the tube wall through a very thin water film was being shortened. At this stage, the pressure drop reached a maximum value and remained nearly constant. At the steady stage, after the oil slug was completely mobilized out of the original contact region, the differential pressure had a step-drop first, and then the oil slug flowed at a lower differential pressure depending on the flow rate. Numerous slug flow tests of this study showed that the hold-up pressure drop was always higher than the steady stage pressure drop. Results also showed that the measured extra pressure drop was significantly high compared to the pressure drop calculated from Poiseuille equation, which is still commonly used in network modeling of multiphase flow in porous media.
机译:对油在毛细管中的流动和非常缓慢的流动进行了实验研究。在动员和移动油团的每个阶段,根据毛细管数在4×10〜(-7)-6×10〜(-6)范围内测量段塞流的压降。整个油团上的压降经历了三个阶段:建立,保持和稳定阶段。在堆积阶段,子弹的凸形后端逐渐凹入到油块中,而子弹的凸形前端向前移动,形成了子弹的新部分。在保持阶段,凹入的后端和前端都继续前进,并且油塞与管壁通过非常薄的水膜的初始接触线缩短了。在这一阶段,压降达到最大值并保持几乎恒定。在稳定阶段,在将油团完全从原始接触区域中移出后,压差首先下降,然后根据流量以较低的压差流动。这项研究的大量塞流测试表明,滞留压降始终高于稳态压降。结果还显示,与通过Poiseuille方程计算的压降相比,测得的额外压降明显较高,后者仍然常用于多孔介质中多相流的网络建模。

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