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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >MRI investigation of water-oil two phase flow in straight capillary, bifurcate channel and monolayered glass bead pack
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MRI investigation of water-oil two phase flow in straight capillary, bifurcate channel and monolayered glass bead pack

机译:直毛细管,分叉通道和单层玻璃微珠包装中水-油两相流的MRI研究

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摘要

The study of immiscible fluid displacement between aqueous-phase liquids and non-aqueous-phase liquids in porous media is of great importance to oil recovery, groundwater contamination, and underground pollutant migration. Moreover, the attendant viscous, capillary, and gravitational forces are essential to describing the two-phase flows. In this study, magnetic resonance imaging was used to experimentally examine the detailed effects of the viscous, capillary, and gravitational forces on water-oil flows through a vertical straight capillary, bifurcate channel, and monolayered glass-bead pack. Water flooding experiments were performed at atmospheric pressure and 37.8 degrees C, and the evolution of the distribution and saturation of the oil as well as the characteristics of the two-phase flow were investigated and analyzed. The results showed that the flow paths, i.e., the fingers of the displacing phase, during the immiscible displacement in the porous medium were determined by the viscous, capillary, and gravitational forces as well as the sizes of the pores and throats. The experimental results afford a fundamental understanding of immiscible fluid displacement in a porous medium. (C) 2015 Elsevier Inc. All rights reserved.
机译:研究多孔介质中水相液体与非水相液体之间不混溶的流体驱替对采油,地下水污染和地下污染物迁移具有重要意义。此外,伴随的粘性力,毛细作用力和重力对于描述两相流至关重要。在这项研究中,磁共振成像被用来实验性地检查粘性,毛细管和重力对通过垂直直毛细管,分叉通道和单层玻璃珠包装的水流的详细影响。在大气压和37.8摄氏度下进行了水驱实验,研究并分析了油的分布和饱和度的演变以及两相流的特征。结果表明,在多孔介质中不混溶的位移过程中,流动路径,即位移相的指点,是由粘性,毛细管和重力以及孔和喉的尺寸决定的。实验结果提供了对多孔介质中不混溶流体驱替的基本理解。 (C)2015 Elsevier Inc.保留所有权利。

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