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Investigation on failure behavior of collapse column in China’s coal mine based on discontinuous deformation numerical method

机译:基于不连续变形数值方法的中国煤矿塌陷柱破坏行为研究

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摘要

Karst collapse column is a serious geological disaster in China’s coal mines. There are various karst collapse columns in coal mine areas, such as Huainan, Huaibei, Xingtai, Lu’an. And they have seriously affected mining safety and geological environment. The present research is focused on analyzing subsidence mechanism and dynamic collapse process. Based on mechanical analysis of thin plate theory, a detailed model of collapse column slipping and bending fracture is constructed to gather the critical conditions of the collapse column roof. The sensitivity parameters analysis shows that both the radius and roof thickness of cave have a great influence on the sliding instability and bending fracture. Meanwhile, the buried depth also affects bending failure. The discontinuous deformation analysis (DDA) method is used to simulate and analyze the collapse process. The numerical results indicate that the stability of inverted funnel collapse column is dominated by the bending stress of roof strata. The movement of columnar collapse column is mainly caused by sliding instability. However, the funnel collapse column is relatively stable, and does not change in the same condition. The displacement field analysis shows that the collapse range of inverted funnel collapse column is obviously larger than that of columnar collapse column, in which its maximum displacement is approximately 1.5 times that of the columnar collapse column. There is no large area collapse on the upper part of the funnel collapse column, and the block system is relatively stable. The principal stress field analysis proves the above results.
机译:岩溶塌陷柱是中国煤矿中的严重地质灾害。淮南,淮北,邢台,六安等煤矿区有各种岩溶塌陷柱。它们严重影响了采矿安全和地质环境。目前的研究集中在分析沉降机理和动态塌陷过程。基于薄板理论的力学分析,建立了塌陷柱滑移和弯曲断裂的详细模型,以收集塌陷柱顶板的临界条件。敏感性参数分析表明,洞室半径和顶板厚度对滑动失稳和弯曲断裂都有很大影响。同时,埋深也会影响弯曲破坏。不连续变形分析(DDA)方法用于模拟和分析倒塌过程。数值结果表明,倒漏斗塌陷柱的稳定性主要受顶板弯曲应力的影响。柱状塌陷柱的运动主要是由滑动失稳引起的。但是,漏斗塌陷柱比较稳定,在相同条件下不会发生变化。位移场分析表明,倒漏斗塌陷柱的塌陷范围明显大于柱状塌陷柱,其最大位移约为柱状塌陷柱的1.5倍。漏斗塌陷柱的上部没有大面积塌陷,且砌块系统相对稳定。主应力场分析证明了上述结果。

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