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Dynamic fluid connectivity during steady-state multiphase flow in a sandstone

机译:砂岩稳态多相流过程中的动态流体连通性

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摘要

The current conceptual picture of steady-state multiphase Darcy flow in porous media is that the fluid phases organize into separate flow pathways with stable interfaces. Here we demonstrate a previously unobserved type of steady-state flow behavior, which we term “dynamic connectivity,” using fast pore-scale X-ray imaging. We image the flow of N2 and brine through a permeable sandstone at subsurface reservoir conditions, and low capillary numbers, and at constant fluid saturation. At any instant, the network of pores filled with the nonwetting phase is not necessarily connected. Flow occurs along pathways that periodically reconnect, like cars controlled by traffic lights. This behavior is consistent with an energy balance, where some of the energy of the injected fluids is sporadically converted to create new interfaces.
机译:多孔介质中稳态多相达西流动的当前概念图是,流体相组织成具有稳定界面的独立流动路径。在这里,我们使用快速的孔径X射线成像技术演示了一种以前观察不到的稳态流动行为,我们称之为“动态连通性”。我们在地下储层条件下,低毛细管数和恒定流体饱和度下,通过可渗透砂岩对N2和盐水的流动进行成像。在任何时刻,填充有非润湿相的孔网络不一定是连接的。流量沿着定期重新连接的路径发生,例如由交通信号灯控制的汽车。此行为与能量平衡相符,在该能量平衡中,注入的流体中的某些能量会偶尔转换以创建新的界面。

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