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Numerical pore-scale modeling of three-phase fluid flow: Comparison between simulation and experiment

机译:三相流体流动的数值孔径模型:仿真与实验的比较

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It has been recently shown experimentally by Oren and Pinczewski [SPE Form. Eval. 7, 70 (1992); 9, 149 (1994)] that on the pore scale the presence of continuous wetting and spreading films is vitally important in describing the mobility of the various fluid phases in three-phase fluid flow. In this paper we put in place a numerical, pore-scale model to describe three-phase drainage dominated flow. Our model incorporates all the mechanisms observed in glass micromodel experiments. The pressures of all phases are calculated explicitly so that no ad hoc rules need be introduced to describe fluid flow. In doing this we are able to reproduce many of the experimentally observed characteristics of three-phase flow, i.e., multiple, simultaneous displacements, flow through thin wetting and spreading films, and double drainage events. The numerical simulations are carried out for a variety of wetting and spreading conditions, i.e., oil-wet, water-wet, positive spreading, and negative spreading, and in all cases we see good agreement with micromodel experiments. [References: 29]
机译:最近,Oren和Pinczewski [SPE Form。评估7,70(1992); [9,149(1994)]认为,在孔尺度上,连续润湿和铺展的膜的存在对于描述三相流体中各种流体的迁移率至关重要。在本文中,我们建立了一个数值孔径模型来描述三相排水为主的流动。我们的模型结合了玻璃微模型实验中观察到的所有机制。所有相的压力都经过明确计算,因此无需引入任何特殊规则即可描述流体流动。通过这样做,我们能够重现许多实验观察到的三相流特征,即多次同时位移,流经薄的润湿和铺展膜的流以及双重排水事件。数值模拟是针对各种润湿和扩散条件进行的,即油湿,水湿,正扩散和负扩散,并且在所有情况下我们都与微模型实验吻合良好。 [参考:29]

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