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Non-Darcy interfacial dynamics of air-water two-phase flow in rough fractures under drainage conditions

机译:排水条件下粗糙裂缝中气水两相流的非达西界面动力学

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摘要

Two-phase flow interfacial dynamics in rough fractures is fundamental to understanding fluid transport in fractured media. The Haines jump of non-Darcy flow in porous media has been investigated at pore scales, but its fundamental processes in rough fractures remain unclear. In this study, the micron-scale Haines jump of the air-water interface in rough fractures was investigated under drainage conditions, with the air-water interface tracked using dyed water and an imaging system. The results indicate that the interfacial velocities represent significant Haines jumps when the meniscus passes from a narrow “throat” to a wide “body”, with jump velocities as high as five times the bulk drainage velocity. Locally, each velocity jump corresponds to a fracture aperture variation; statistically, the velocity variations follow an exponential function of the aperture variations at a length scale of ~100 µm to ~100 mm. This spatial-scale-invariant correlation may indicate that the high-speed local velocities during the Haines jump would not average out spatially for a bulk system. The results may help in understanding the origin of interface instabilities and the resulting non-uniform phase distribution, as well as the micron-scale essence of the spatial and temporal instability of two-phase flow in fractured media at the macroscopic scale.
机译:粗糙裂缝中的两相流界面动力学是理解裂缝介质中流体运移的基础。已经在孔隙尺度上研究了多孔介质中非达西流的Haines跃迁,但其在粗糙裂缝中的基本过程仍不清楚。在这项研究中,研究了排水条件下粗糙裂缝中空气-水界面的微米级海恩斯跃迁,并使用染色水和成像系统跟踪了空气-水界面。结果表明,当弯液面从狭窄的“喉部”过渡到宽阔的“主体”时,界面速度代表明显的Haines跳跃,其跳跃速度高达总排水速度的五倍。在局部,每个速度跃变对应于裂缝孔径的变化。从统计学上讲,速度变化遵循孔径变化的指数函数,长度范围为〜100μm至〜100μmm。这种空间尺度不变的相关性可能表明,Haines跳跃过程中的高速局部速度不会对整个系统的空间平均。结果可能有助于理解界面不稳定性的起因以及由此产生的不均匀相分布,以及宏观尺度上裂隙介质中两相流时空不稳定性的微米尺度本质。

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