• 中文核心期刊
  • 中国科技核心期刊
  • RCCSE中国核心学术期刊

承压水上开采工作面底板突水预测

门会理, 杨京伟, 刘传安, 张西斌, 陈东升

门会理, 杨京伟, 刘传安, 张西斌, 陈东升. 承压水上开采工作面底板突水预测[J]. 煤矿安全, 2012, 43(11): 174-177.
引用本文: 门会理, 杨京伟, 刘传安, 张西斌, 陈东升. 承压水上开采工作面底板突水预测[J]. 煤矿安全, 2012, 43(11): 174-177.
MEN Hui-li, YANG Jing-wei, LIU Chuan-an, ZHANG Xi-bin, CHEN Dong-sheng. Floor Water Irruption Prediction of Mining Face Above Confined Water[J]. Safety in Coal Mines, 2012, 43(11): 174-177.
Citation: MEN Hui-li, YANG Jing-wei, LIU Chuan-an, ZHANG Xi-bin, CHEN Dong-sheng. Floor Water Irruption Prediction of Mining Face Above Confined Water[J]. Safety in Coal Mines, 2012, 43(11): 174-177.

承压水上开采工作面底板突水预测

Floor Water Irruption Prediction of Mining Face Above Confined Water

  • 摘要: 根据地质条件对下组煤的底板破坏深度进行了理论计算并在此基础上运用突水系数法对底板突水情况进行了分析;应用离散元数值软件UDEC模拟了在薄煤层群采动应力和水压联合作用下底板的破坏规律和裂隙演化规律,得出底板破坏深度将达到41 m,底板突水可能性较大,应加强底板防治水工作。
    Abstract: According to the geological condition, floor failure depth of lower coal group was carried out a theoretical calculation, and on this basis, floor water irruption condition was analyzed by water inrush coefficient method.The paper simulated destruction law and crack evolution law of the floor under the combined effects of thin seam group mining dynamic stress and water pressure by using discrete element numerical simulation software UDEC, and obtained that the floor failure depth would reach 41 m. It was likely to happen floor water irruption, and the water prevention work of floor should be strengthened.
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    [2] 吕春峰,王芝银,李云鹏.含裂隙煤层底板突水规律的数值模拟与工程应用[J].岩土力学,2003,24(增刊):112-116.
    [3] 翟成.近距离煤层群采动裂隙场与瓦斯流动场耦合规律及防治技术研究[D].徐州,中国矿业大学,2008:51-76.
    [4] 刘树才.煤矿底板突水机理及破坏裂隙带演化动态探测技术[D].徐州,中国矿业大学,2008:97-109.
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出版历程
  • 发布日期:  2012-11-09

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