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A multiphase level set approach to motion of disconnected fluid ganglia during capillary-dominated three-phase flow in porous media: Numerical validation and applications

机译:多孔介质三相流动期间断开流体神经节运动的多相水平的方法:数值验证和应用

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We present a multiphase level set (MLS) approach to capillary-controlled, three-phase displacement in porous media, and use it to simulate displacements of disconnected fluid ganglia surrounded by two other fluid phases (i.e., double displacements), which are important pore-scale mechanisms for oil recovery and CO2 storage. After a comprehensive model validation on several new benchmark cases, including 3-D simulations of double displacements in a straight angular tube, we show two new applications of the MLS method. First, we simulate three-phase capillary pressure curves for gas invasion along constant oil saturation paths in sandstone. The results show significant oil redistribution by double displacements, which leads to fluctuations of gas/oil capillary pressure due to oil volume preservation, whereas oil/water capillary pressure increases mostly monotonically, yet the pressure level is lower than in the corresponding two-phase oil/water system. Further, gas/water capillary pressure is lower when mobile oil is present in the sample. The second application demonstrates the suitability of MLS method to describe foam dynamics both with and without oil present in the pore space. MLS method successfully describes well-known foam interfacial properties, and it also captures the rise of displacement capillary pressure when adding gas bubbles between continuous gas and water inside a pore channel. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们介绍了多孔介质中的毛细管控制,三相位移的多相水平集(MLS)方法,并使用它来模拟由两种其他流体阶段(即,双位移)包围的断开的流体神经节的位移,这是重要的孔隙用于储存和二氧化碳储存的精度机制。经过几种新的基准案例的全面模型验证,包括直角管中的双位移三维模拟,我们展示了MLS方法的两个新应用。首先,我们模拟三相毛细管压力曲线,沿砂岩中的恒定油饱和路径沿着恒定的油饱和路径进行气体侵袭。结果表现出显着的石油再分布,双位移导致由于油量保存导致气/油毛细管压力的波动,而油/水毛细管压力大部分增加,但压力水平低于相应的两相油/水系统。此外,当样品中存在移动油时,气/水毛细管压力较低。第二次申请表明了MLS方法描述泡沫动力学,并且没有油在孔隙空间中存在的油。 MLS方法成功地描述了众所周知的泡沫界面性质,并且当在孔通道内加入连续气体和水之间的气泡时,它也捕获了位移毛细管的升高。 (c)2019年elestvier有限公司保留所有权利。

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