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Micro/Nano-pore Network Analysis of Gas Flow in Shale Matrix

机译:页岩基质中气体流动的微/纳孔网络分析

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摘要

The gas flow in shale matrix is of great research interests for optimized shale gas extraction. The gas flow in the nano-scale pore may fall in flow regimes such as viscous flow, slip flow and Knudsen diffusion. A 3-dimensional nano-scale pore network model was developed to simulate dynamic gas flow, and to describe the transient properties of flow regimes. The proposed pore network model accounts for the various size distributions and low connectivity of shale pores. The pore size, pore throat size and coordination number obey normal distribution, and the average values can be obtained from shale reservoir data. The gas flow regimes were simulated using an extracted pore network backbone. The numerical results show that apparent permeability is strongly dependent on pore pressure in the reservoir and pore throat size, which is overestimated by low-pressure laboratory tests. With the decrease of reservoir pressure, viscous flow is weakening, then slip flow and Knudsen diffusion are gradually becoming dominant flow regimes. The fingering phenomenon can be predicted by microano-pore network for gas flow, which provides an effective way to capture heterogeneity of shale gas reservoir.
机译:页岩基质中的气流对于优化页岩气的提取具有重要的研究意义。纳米级孔中的气流可能会以诸如粘性流,滑流和克努森扩散之类的流态下降。建立了三维三维孔网络模型,以模拟动态气流,并描述流动状态的瞬态特性。提出的孔隙网络模型考虑了页岩孔隙的各种尺寸分布和低连通性。孔尺寸,孔喉尺寸和配位数服从正态分布,平均值可从页岩储层数据中获得。使用提取的孔隙网络主干模拟了气体流态。数值结果表明,表观渗透率在很大程度上取决于储层中的孔隙压力和孔喉尺寸,这被低压实验室测试高估了。随着储层压力的降低,粘性流变弱,然后滑流和克努森扩散逐渐成为主要的流态。指状现象可以通过微/纳米孔网络预测气流,为捕获页岩气储层非均质性提供了一种有效途径。

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