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Droplet fragmentation: 3D imaging of a previously unidentified pore-scale process during multiphase flow in porous media

机译:液滴碎裂:多孔介质中多相流期间先前未知的孔尺度过程的3D成像

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摘要

Using X-ray computed microtomography, we have visualized and quantified the in situ structure of a trapped nonwetting phase (oil) in a highly heterogeneous carbonate rock after injecting a wetting phase (brine) at low and high capillary numbers. We imaged the process of capillary desaturation in 3D and demonstrated its impacts on the trapped nonwetting phase cluster size distribution. We have identified a previously unidentified pore-scale event during capillary desaturation. This pore-scale event, described as droplet fragmentation of the nonwetting phase, occurs in larger pores. It increases volumetric production of the nonwetting phase after capillary trapping and enlarges the fluid−fluid interface, which can enhance mass transfer between the phases. Droplet fragmentation therefore has implications for a range of multiphase flow processes in natural and engineered porous media with complex heterogeneous pore spaces.
机译:使用X射线计算机显微断层扫描技术,我们已经观察到并定量了在高毛细管数下注入湿相(盐水)后,高度非均质碳酸盐岩中被困的非湿相(油)的原位结构。我们在3D中对毛细管去饱和过程进行了成像,并证明了其对捕获的非润湿相簇尺寸分布的影响。我们已经确定了毛细管去饱和过程中以前未确定的孔垢事件。这种称为非润湿相的液滴破碎的孔垢事件发生在较大的孔中。它增加了毛细管捕集后非润湿相的体积产量,并扩大了流体-流体界面,从而可以增强相之间的质量传递。因此,在具有复杂异质孔隙空间的天然和工程多孔介质中,液滴破碎对一系列多相流动过程具有影响。

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