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BAO Ran, LI Kai. Simulation Study on Effect of Fault Throw on Activation of Inverse Fault[J]. Safety in Coal Mines, 2017, 48(5): 46-48,52.
Citation: BAO Ran, LI Kai. Simulation Study on Effect of Fault Throw on Activation of Inverse Fault[J]. Safety in Coal Mines, 2017, 48(5): 46-48,52.

Simulation Study on Effect of Fault Throw on Activation of Inverse Fault

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  • Published Date: May 19, 2017
  • Taking geological data of F5 reverse fault in a coal mine as the background, we use FLAC3D software to study the fault zone stress evolution and faults activation laws when the upper and lower plates of the working face are orderly mined to reveal the relationship between inverse fault activation and throw in mining period. Study shows that the normal stress of fault throw and fault belt is proportional to change of stress and displacement of the two plates in the lower coal seam mining, that is, with the increase of fault throw, the displacement amount of two plates and the normal stress are reduced; the smaller of fault throw is, the higher of activation level is, and the more risk of water inrush is; so, the mining of two plates shows different patterns, needs to be distinguished and prevention measures in practice.
  • [1]
    缪协兴,刘卫群,陈占清采动岩体渗流理论[M].北京:科学出版社,2004.
    [2]
    左建平,陈忠辉,王怀文,等.深部煤矿采动诱发断层活动规律[J].煤炭学报,2009,34(3):305-309.
    [3]
    李志华,窦林名,牟宗龙,等.断层对顶板型冲击矿压的影响[J].采矿与安全工程学报,2008,25(2):154.
    [4]
    李志华,窦林名,曹安业,等.采动影响下断层滑移诱发煤岩冲击机理[J].煤炭学报,2011,36(S1):68-73.
    [5]
    李志华,窦林名,陆振裕,等.采动诱发断层滑移失稳的研究[J].采矿与安全工程学报,2010,27(4):499.
    [6]
    张培森,杨建,王明辉,等.固液耦合模式下采动诱发断层界面应力变化规律的模拟研究[J].中国矿业,2014,23(4):84-89.
    [7]
    张培森,颜伟,张文泉,等.固液耦合模式下含断层缺陷煤层回采诱发底板损伤及断层活化突水机制研究[J].岩土工程学报,2015,38(5):878-889.
    [8]
    于广明,谢和平,杨伦,等.采动断层活化分形界面效应的数值模拟研究[J].煤炭学报,1998,23(4):396.
    [9]
    黄存捍,黄俊杰,李振华.煤层底板隐伏小断层突水数值模拟[J].煤矿安全,2013,44(10):24-26.
    [10]
    李凯,茅献彪,陈龙,等.采动对承压底板断层活化及突水危险性的影响分析[J].力学季刊,2011,32(2):261-268.
    [11]
    李青锋,王卫军,彭文庆,等.断层采动活化对南方煤矿岩溶突水影响研究[J].岩石力学与工程学报,2010,29(S1):3417-3424.
    [12]
    卢兴利,刘泉声,吴昌勇,等.断层破裂带附近采场采动效应的流固耦合分析[J].岩土力学,2009,30(S):165-168.
    [13]
    周家文,徐卫亚,石崇.基于破坏准则的岩石压剪断裂判据研究[J].岩力学与工程学报,2007,26(6):1194.
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