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The mechanism of damage in gas-bearing coal-rock combination bodies and gas seepage in coals

机译:煤炭煤岩组合体和煤气渗流损伤机制

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摘要

With the gradually exhausted shallow coal resources, many coal mines have been carried forward to the deep mining stage. Meanwhile, the outburst-rockburst coupling dynamic disaster is becoming more and more serious, which is becoming a major threat to national energy security. This kind of disaster is essentially induced by the coupling instability of damage in gas-bearing coal-rock combination body and gas seepage in coal. First, based on the study of force analysis and failure criterion of gas-bearing coal-rock combination body, the mechanical failure mechanism of gas-bearing coal-rock combination body is obtained and verified. It is found that the existence of additional stress generated at the interfaces of the coal body and rock body is the fundamental reason for the extremely complex damage and failure of combination body. In the actual mining process, due to the larger strength of roof than coal, the major stress state during the instability and failure of combination body is as follows: with the increase of axial stress, the strength of rock body at contact surface decreases but still greater than that of coal body far from the contact surface. Meanwhile, the strength of coal body at the contact surface increases but still less than that of rock body far from the contact surface. The theoretical failure mode of gas-bearing coal-rock combination body is mainly the failure of coal part, which only in some cases will lead to the failure of local rock part. Then, based on the permeability model of single coal in the full stress-strain process, the permeability model of coal under the influence of coal-rock combination body is established and verified. Finally, the gas-solid coupling instability mechanism of gas-bearing coal-rock combination body is discussed.
机译:随着逐步耗尽的浅煤炭资源,许多煤矿已向深度采矿阶段进行。与此同时,爆发 - 摇滚兵耦合动态灾难变得越来越严重,这正在成为对国家能源安全的重大威胁。这种灾难基本上是通过燃气煤岩组合体和煤中煤气渗流损坏的偶联不稳定性引起的。首先,基于对燃气煤岩组合体的力分析和失效标准的研究,获得了燃气煤岩组合体的机械故障机理并验证。结果发现,在煤体和岩体的界面处产生的额外应力是极其复杂的损坏和组合体内失效的基本原因。在实际采矿过程中,由于屋顶的强度较大,组合体内不稳定和失效期间的主要应力状态如下:随着轴向应力的增加,接触表面处的岩体的强度降低但仍然减少大于煤体远离接触表面的煤体。同时,接触表面处的煤体的强度增加但仍然小于远离接触表面的岩体的强度。燃气煤岩组合体的理论失效模式主要是煤炭的失效,只有在某些情况下将导致局部岩石部分的失败。然后,基于单煤的渗透性模型在全应力 - 应变过程中,建立并验证了煤岩组合体影响下的煤的渗透性模型。最后,讨论了燃气煤岩组合体的气体固体偶联机理。

著录项

  • 来源
    《Energy sources》 |2021年第12期|1181-1201|共21页
  • 作者单位

    China Univ Min & Technol Beijing Beijing Key Lab Precise Min Intergrown Energy & R Beijing 100083 Peoples R China|Columbia Univ Dept Civil Engn & Engn Mech New York NY 10027 USA;

    China Univ Min & Technol Beijing Beijing Key Lab Precise Min Intergrown Energy & R Beijing 100083 Peoples R China|China Univ Min & Technol Beijing Coll Emergency Management & Safety Engn Beijing Peoples R China;

    China Coal Res Inst Mine Safety Technol Branch Beijing Peoples R China;

    Columbia Univ Dept Civil Engn & Engn Mech New York NY 10027 USA|Tongji Univ Dept Construct Management & Real Estate Shanghai Peoples R China;

    Columbia Univ Dept Civil Engn & Engn Mech New York NY 10027 USA|Southwest Petr Univ State Key Lab Oil & Gas Reservoir Geol & Exploita Chengdu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coal resources; coal-rock combination body; damage mechanism; permeability; coupling dynamic disaster;

    机译:煤炭资源;煤岩组合体;损伤机制;渗透率;耦合动态灾难;

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