School of Mechanics and Engineering, Liaoning Technical University, Fuxin, Liaoning, 123000, China.
Fujian Research Center for Tunneling and Urban Underground Space Engineering, Huaqiao University, Xiamen, 361021, Fujian, China.
Sci Rep. 2023 Apr 25;13(1):6734. doi: 10.1038/s41598-023-33702-1.
Permeability is a critical parameter of tight reservoir rocks and one of the important parameters for characterizing fluid flow and production from reservoirs. It determines the feasibility of its commercial development. SC-CO has been used in shale gas exploitation for efficient fracturing and the added benefit of CO geo-storage. And SC-CO plays an important role in permeability evolution of shale gas reservoirs. In this paper, Firstly, the permeability characteristics of shale under CO injection are discussed. The experimental results show that the relationship between permeability and gas pressure is not a single exponential relationship, but there is an obvious segmentation phenomenon, which is particularly obvious when it is close to the supercritical state, and the overall trend is first decreased and then increased. Subsequently, other specimens were selected for SC-CO immersion, and nitrogen was used to calibrate and compare shale permeability before and after treatment to assess changes in shale permeability after SC-CO treatment at pressures from 7.5 to 11.5 MPa and X-ray diffraction (XRD) analysis and scanning electron microscopy (SEM) were used to analyze the raw and CO-treated shale particle sample, respectively. Results indicate the permeability increases significantly after SC-CO treated, and permeability growth is a linear function of SC-CO pressure. According to (XRD) analysis and (SEM) analysis, SC-CO not only can act as a solvent and dissolve carbonate minerals and clay minerals, but also can complex chemical reactions with mineral components in shale, Further dissolution of carbonate minerals and clay minerals, widened gas seepage channels and enhancing the permeability.
渗透率是致密储层的关键参数之一,也是描述储层流体流动和产能的重要参数之一。它决定了其商业开发的可行性。超临界 CO2(SC-CO2)已被用于页岩气的高效压裂开采,并且具有 CO2 地质封存的附加益处。此外,SC-CO2 在页岩气储层渗透率演化中起着重要作用。本文首先讨论了注入 CO2 后页岩的渗透率特性。实验结果表明,渗透率与气体压力之间的关系不是单一的指数关系,而是存在明显的分段现象,在接近超临界状态时尤为明显,整体趋势为先降低后升高。随后,选择了其他试样进行 SC-CO2 浸泡,并使用氮气对处理前后的页岩渗透率进行校准和比较,以评估在 7.5 至 11.5 MPa 的压力下 SC-CO2 处理后页岩渗透率的变化。X 射线衍射(XRD)分析和扫描电子显微镜(SEM)分别用于分析原始和 CO 处理后的页岩颗粒样品。结果表明,SC-CO2 处理后渗透率显著增加,渗透率增长是 SC-CO2 压力的线性函数。根据 XRD 分析和 SEM 分析,SC-CO2 不仅可以作为溶剂溶解碳酸盐矿物和粘土矿物,还可以与页岩中的矿物成分发生化学反应,进一步溶解碳酸盐矿物和粘土矿物,拓宽气体渗流通道,提高渗透率。