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超声作用下多孔介质中不混溶驱替过程的可视化分析

Visual analysis of immiscible displacement processes in porous media under ultrasound effect.

作者信息

Naderi Khosrow, Babadagli Tayfun

机构信息

University of Alberta Department of Civil and Environmental Eng., School of Mining and Petroleum Eng. 3-112 Markin CNRL-NREF, Edmonton, AB, Canada T6G 2W2.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 May;83(5 Pt 2):056323. doi: 10.1103/PhysRevE.83.056323. Epub 2011 May 23.

Abstract

The effect of sonic waves, in particular, ultrasonic radiation, on immiscible displacement in porous media and enhanced oil recovery has been of interest for more than five decades. Attempts were made to investigate the effect through core scale experimental or theoretical models. Visual experiments are useful to scrutinize the reason for improved oil recovery under acoustic waves of different frequency but are not abundant in literature. In this paper, we report observations and analyses as to the effects of ultrasonic energy on immiscible displacement and interaction of the fluid matrix visually in porous media through two-dimensional (2D) sand pack experiments. 2D glass bead models with different wettabilities were saturated with different viscosity oils and water was injected into the models. The experiments were conducted with and without ultrasound. Dynamic water injection experiments were preferred as they had both viscous and capillary forces in effect. The displacement patterns were evaluated both in terms of their shape, size, and the interface characteristics quantitatively and qualitatively to account for the effects of ultrasonic waves on the displacement and the reason for increased oil production under this type of sonic wave. More compact clusters were observed when ultrasonic energy was present in water-wet systems. In the oil-wet cases, more oil was produced after breakthrough when ultrasound was applied and no compact clusters were formed in contrast to the water-wet cases.

摘要

特别是超声波辐射的声波对多孔介质中不混溶驱替及提高原油采收率的影响,五十多年来一直备受关注。人们试图通过岩心尺度实验或理论模型来研究这种影响。可视化实验有助于探究在不同频率声波作用下提高原油采收率的原因,但相关文献并不丰富。在本文中,我们通过二维(2D)填砂实验,直观地报告了关于超声波能量对多孔介质中不混溶驱替及流体基质相互作用影响的观察结果和分析。用不同润湿性的二维玻璃珠模型饱和不同粘度的油,然后向模型中注入水。实验在有超声波和无超声波的情况下进行。动态注水实验更受青睐,因为其中既有粘性力又有毛细管力起作用。从形状、大小和界面特征等方面对驱替模式进行了定量和定性评估,以说明超声波对驱替的影响以及在这种声波作用下原油产量增加的原因。在水湿体系中,当存在超声波能量时,观察到更紧密的团簇。在油湿情况下,施加超声波后突破时产油量更多,且与水湿情况不同,未形成紧密团簇。

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