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Water and methane in shale rocks: Flow pattern effects on fluid transport and pore structure

机译:页岩中的水和甲烷:流动模式对流体传输和孔隙结构的影响

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摘要

Using molecular dynamics simulations, the two-phase flow of water and methane through slit-shaped nanopores carved from muscovite is studied. The simulations are designed to investigate the effect of flow patterns on fluids transport and on pore structure. The results indicate that the Darcy's law, which describes a linear relation between flow rate and pressure drop, can be violated when the flow pattern is altered. This can happen when the driving force, that is, the pressure drop, increases above a pore-size dependent threshold. Because the system considered here contains two phases, when the fluid structure changes, the movement of methane with respect to that of water changes, leading to the violation of the Darcy's law. Our results illustrate the importance of the capillary force, due to the formation of water bridges across the model pores, not only on the fluid flow, but also on the pore structure, in particular its width. When the water bridges are broken, perhaps because of fast fluid flow, the capillary force vanishes leading to significant pore expansion. Because muscovite is a model for illite, a clay often found in shale rocks, these results advance our understanding regarding the mechanism of water and gas transport in tight shale gas formations. (c) 2015 American Institute of Chemical Engineers AIChE J, 61: 2993-2999, 2015
机译:使用分子动力学模拟,研究了水和甲烷通过白云母雕刻的狭缝形纳米孔的两相流。这些模拟旨在研究流动模式对流体传输和孔隙结构的影响。结果表明,当改变流型时,达西定律(描述流量与压降之间的线性关系)可以被违反。当驱动力(即压降)增加到取决于孔径的阈值以上时,可能会发生这种情况。因为此处考虑的系统包含两个阶段,所以当流体结构发生变化时,甲烷相对于水的运动也会发生变化,从而导致违反达西定律。我们的结果说明了毛细作用力的重要性,这是由于在模型孔上形成了水桥,不仅对流体流动,而且对孔结构,特别是其宽度也是如此。当水桥破裂时,也许是由于快速的流体流动,毛细作用力消失了,导致明显的孔膨胀。因为白云母是伊利石的模型,伊利石是一种常在页岩中发现的黏土,这些结果使我们对致密页岩气层中水和天然气的输送机理有了更深入的了解。 (c)2015年美国化学工程师学会AIChE J,61:2993-2999,2015

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