填充玻璃球的Hele-Shaw池中稳定和不稳定位移的实验研究特点

IF 0.3 Q4 MECHANICS
A. Rakhimov, A. A. Valiev
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引用次数: 0

摘要

本文介绍了在装有玻璃球的Hele-Shaw槽中进行的非混相驱替实验研究的结果,即恒定压降下油驱替水(稳定)和油驱替空气或水(不稳定)。根据所提供的数据,可以得出一个合乎逻辑的结论:进口压力越高,排量效率越高。在相同的驱油时间下,气的通过体积明显大于水的通过体积。不过,水的置换更为彻底。位移高度依赖于模型骨架的不均匀性,特别是在低压降下的流动。在模型的边缘,分散介质的体积更大,运动更快。当含球模型的位移稳定时,流体向出口扩散,呈逐渐扩大的“漏斗”状;运动的方向是通过所经过的通道。对于低压降下的不稳定位移,运动发生在胞体边缘;随着压降的增加,运动变得更加均匀,“粘性手指”开始“分支”,甚至在距离出口一段距离处生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of an experimental study of the stable and unstable displacement in the Hele-Shaw cell filled with glass balls
The paper presents the results of an experimental study of immiscible displacements: displacement of water by oil (stable) and displacement of oil by air or water (unstable) at constant pressure drop in the Hele-Shaw cell filled with glass balls, which is a physical model of a porous fracture in an oil reservoir. The presented data allows one to draw a logical conclusion: the higher the inlet pressure, the higher the displacement efficiency. With the same oil displacement time in the Hele-Shaw cell, the passed volume of the gas significantly exceeds that of the water. The displacement by water is more complete, though. Displacements are highly dependent on inhomogeneity of the model skeleton, most significantly for the flow at low pressure drop. At the edges of the model, where the volume of the dispersed medium is greater, the motion is faster. When displacement in the model with balls is stable, the flow spreads out towards the outlet and takes a "funnel" shape that gradually expands; the motion is directed through the channel passed. For unstable displacement at low pressure drop, the motion occurs along the edges of the cell; with an increase in the pressure drop, the motion becomes more uniform, and the " viscous fingers" begin to "branch" and grow even at a distance from the outlet.
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来源期刊
CiteScore
0.90
自引率
66.70%
发文量
0
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