首页> 外文会议>US Rock Mechanics/Geomechanics Symposium >Anisotropic permeability evolution of pre-existing natural fractures in cubic coal under true-triaxial stresses: an experimental and modelling study
【24h】

Anisotropic permeability evolution of pre-existing natural fractures in cubic coal under true-triaxial stresses: an experimental and modelling study

机译:真正 - 三轴应力下立方煤预先存在的自然骨折的各向异性渗透性演变:实验和建模研究

获取原文

摘要

Prediction of coal permeability is very important as it is directly related with coal bed methane (CBM) production, underground coal mining, and CO_2 sequestration in deep coal seams. However, the anisotropy of both internal fractures of coal and outer stress environment brings difficulty in replicating the gas transport characteristics of coal at the laboratory scale. There is limited research in this area. Thus, in this paper, we performed a series of permeability measurements on cubic high-rank coal samples using the true-triaxial apparatus. The principal stresses and flow directions were systematically varied during the test. The results show that differential stress of 20 MPa compressed to coal resulted in an order of magnitude drop in permeability. For the pre-existing natural fractures in coal, the butt cleat plane was more sensitive to variations in the principal stress. By using an exponential equation containing different mean cleat compressibility and stress terms, the anisotropic coal permeability data obtained under true-triaxial stress conditions can be accurately predicted. The experimental and theoretical results of this study can help better understanding gas transport in coal seams and optimizing the layout of the gas drainage boreholes and well design during CBM production or CO_2 sequestration.
机译:预测煤渗透性非常重要,因为它与煤层甲烷(CBM)生产,地下煤矿和深煤层中的CO_2封存直接相关。然而,煤和外应力环境的内部骨折的各向异性带来了在实验室规模处复制煤的气体运输特性。这一领域的研究有限。因此,在本文中,我们使用真正的三轴仪器对立方高级煤样品进行了一系列渗透率测量。在测试期间,主应力和流动方向系统地改变。结果表明,20MPa压缩到煤的差分应力导致渗透率下降顺序。对于煤中的预先存在的自然骨折,对接夹板对主要压力的变化更敏感。通过使用包含不同平均凝固可压缩性和应力术语的指数方程,可以准确地预测在真正的三轴应力条件下获得的各向异性煤渗透数据。该研究的实验性和理论结果可以帮助更好地了解煤层中的气体运输,并在CBM生产或CO_2封存期间优化燃气排水钻孔和井设计的布局。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号