Chemical-Mechanical Coupling Effects on the Permeability of Shale Subjected to Supercritical CO 2-Water Exposure

Kang Yang, Junping Zhou, Xuefu Xian, Lei Zhou, Chengpeng Zhang, S. Tian, Zhaohui Lu, Fengshou Zhang
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引用次数: 2

Abstract

The permeability of shale reservoir rock and caprock is the key parameters influencing the shale gas production and the storage security of CO2. In this study, the ScCO2-water exposure induced chemical-mechanical coupling effects on the permeability of shale was analyzed by a systematic research, including mineralogical analysis, pore structure analysis, uniaxial compression and permeability test at different stress and injection pressure of shale before and after ScCO2-water exposure. After ScCO2-water exposure, the pore volume and average pore size of shale increased, and the initial permeability of shale increased. At the stressed condition, the porosity and permeability of CO2-water treated shale sample is lower than the untreated shale sample. The uniaxial compressive strength and elastic modulus of shale were decreased after ScCO2-water exposure. The shale permeability was increased with the increase of injection pressure, and decreased with the increase of confining stress. The stress sensitivity of permeability in shale is stress-dependent, a higher effective stress corresponding to a lower stress sensitivity of permeability. The damage in the permeability (Δkd) of shale caused by the ScCO2-water exposure is also depending on the confining stress and injection pressure, at a higher effective stress condition, the damage in the permeability of shale is more significant.
超临界co2 -水作用下页岩渗透率的化学-力学耦合效应
页岩储层和盖层的渗透率是影响页岩气产量和CO2储存安全性的关键参数。本研究通过矿物学分析、孔隙结构分析、单轴压缩和ScCO2-water暴露前后不同应力和注入压力下页岩渗透率测试等系统研究,分析了ScCO2-water暴露对页岩渗透率的化学-力学耦合效应。scco2 -水作用后,页岩孔隙体积增大,平均孔径增大,页岩初始渗透率增大。在应力条件下,co2 -水处理页岩样品的孔隙度和渗透率低于未处理页岩样品。页岩单轴抗压强度和弹性模量在scco2 -水作用下降低。页岩渗透率随注入压力的增大而增大,随围应力的增大而减小。页岩渗透率应力敏感性与应力有关,有效应力越高,渗透率应力敏感性越低。scco2 -水暴露对页岩渗透率的损害(Δkd)也取决于围应力和注入压力,在较高的有效应力条件下,页岩渗透率的损害更为显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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