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Effective Rheology of Two-Phase Flow in Three-Dimensional Porous Media: Experiment and Simulation

机译:三维多孔介质中两相流的有效流变学:实验与仿真

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摘要

We present an experimental and numerical study of immiscible two-phase flow of Newtonian fluids in three-dimensional (3D) porous media to find the relationship between the volumetric flow rate (Q) and the total pressure difference (ΔP) in the steady state. We show that in the regime where capillary forces compete with the viscous forces, the distribution of capillary barriers at the interfaces effectively creates a yield threshold (Pt), making the fluids reminiscent of a Bingham viscoplastic fluid in the porous medium. In this regime, Q depends quadratically on an excess pressure drop (ΔP - Pt). While increasing the flow rate, there is a transition, beyond which the overall flow is Newtonian and the relationship is linear. In our experiments, we build a model porous medium using a column of glass beads transporting two fluids, deionized water and air. For the numerical study, reconstructed 3D pore networks from real core samples are considered and the transport of wetting and non-wetting fluids through the network is modeled by tracking the fluid interfaces with time. We find agreement between our numerical and experimental results. Our results match with the mean-field results reported earlier.Electronic supplementary materialThe online version of this article (doi:10.1007/s11242-017-0874-4) contains supplementary material, which is available to authorized users.
机译:我们提供了在三维(3D)多孔介质中牛顿流体不混溶的两相流的实验和数值研究,以发现稳态下的体积流量(Q)与总压差(ΔP)之间的关系。我们表明,在毛细力与粘性力竞争的状态下,毛细屏障在界面处的分布有效地产生了屈服阈值(Pt),使流体让人联想到宾厄姆粘塑性流体在多孔介质中的流动。在这种情况下,Q二次取决于过大的压降(ΔP-Pt)。在增加流速的同时,有一个过渡,在此过渡之前,总流量是牛顿的,并且关系是线性的。在我们的实验中,我们使用一列玻璃珠来构建模型多孔介质,该玻璃珠传输两种流体,去离子水和空气。对于数值研究,考虑了从真实岩心样品重建的3D孔隙网络,并通过跟踪流体界面随时间的变化来模拟润湿和非润湿流体通过网络的传输。我们在数值和实验结果之间找到了一致。电子补充材料本文的在线版本(doi:10.1007 / s11242-017-0874-4)包含补充材料,授权用户可以使用。

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