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LI Xue-liang, WU Jian, TIAN Ying-bin. The Application of FLAC3D in Goaf Grouting Reinforcement[J]. Safety in Coal Mines, 2013, 44(12): 201-203.
Citation: LI Xue-liang, WU Jian, TIAN Ying-bin. The Application of FLAC3D in Goaf Grouting Reinforcement[J]. Safety in Coal Mines, 2013, 44(12): 201-203.

The Application of FLAC3D in Goaf Grouting Reinforcement

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  • Published Date: December 19, 2013
  • The evaluation for foundation stability should be done before the construction of buildings above the goaf, then appropriate measures should be taken according to the actual situation. In many different treatment programs, grouting reinforcement is the most direct and effective measure. The paper, combined with the mechanisms and problems involved in grouting reinforcement, analyzes the advantages of FLAC3D in this field, and makes simulation analysis about goaf grouting problem by FLAC3D.
  • [1]
    李学良.采空区问题的数值模拟方法分析[J].煤矿安全,2012,43(12):193-196.
    [2]
    《岩土注浆理论与工程实例》协作组.岩土注浆理论与工程实例[M].北京:科学出版社,2001.
    [3]
    郭广礼,邓喀中,何国清,等.采动破裂岩体地基注浆加固及其检测技术[J].中国矿业大学学报,2000,29(5):293-296.
    [4]
    崔玖江,崔晓青.隧道与地下工程注浆技术[M].北京:中国建筑工业出版社,2011.
    [5]
    张金山,马猛,范忠明,等.沟煤矿超前顶板注浆技术[J].煤矿安全,2012,43(11):143-145.
    [6]
    张庆松,韩伟伟,李术才,等.灰岩角砾岩破碎带涌水综合注浆治理[J].岩石力学与工程学报,2012,31(12):2412-2419.
    [7]
    王磊,郭广礼,张鲜妮,等.基于关键层理论的长壁垮落法开采老采空区地基稳定性评价[J].采矿与安全工程学报,2010,27(1):283-287.
    [8]
    邹友峰,邓喀中,马伟民.矿山开采沉陷工程[M].徐州:中国矿业大学出版社,2003.
    [9]
    白国良,李树志.采动岩体宏观力学参数估计研究[C]//全国“三下”采煤学术会议论文集.北京:中国煤炭学会,2008.
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