张锋刚,杨文连. 急倾斜水平分段放顶煤开采应力分布规律及冲击地压防治[J]. 煤矿安全, 2023, 54(7): 101-108.
    引用本文: 张锋刚,杨文连. 急倾斜水平分段放顶煤开采应力分布规律及冲击地压防治[J]. 煤矿安全, 2023, 54(7): 101-108.
    ZHANG Fenggang. Stress distribution law of steeply inclined horizontal sectional caving coal mining and prevention and control of rock burst[J]. Safety in Coal Mines, 2023, 54(7): 101-108.
    Citation: ZHANG Fenggang. Stress distribution law of steeply inclined horizontal sectional caving coal mining and prevention and control of rock burst[J]. Safety in Coal Mines, 2023, 54(7): 101-108.

    急倾斜水平分段放顶煤开采应力分布规律及冲击地压防治

    Stress distribution law of steeply inclined horizontal sectional caving coal mining and prevention and control of rock burst

    • 摘要: 为了揭示急倾斜煤层水平分段放顶煤开采应力场分布特征及冲击地压显现规律,以王家山煤矿东一采区为工程背景;理论分析了急倾斜水平分段开采冲击地压显现特征,数值模拟分析了急倾斜煤层水平分段开采应力场演化规律;揭示了急倾斜煤层水平分段开采矿震动载扰动诱发底煤冲击地压显现的规律。结果表明:随着开采分段数增加,工作面采动应力持续增大,顶板巷应力集中程度高于底板巷,最大主应力由原水平方向分布转为沿垂直煤层倾向分布,导致顶板巷周围煤体水平应力集中程度高;工作面煤体水平应力场倾向方向呈现先增大再减小的趋势,且顶板侧水平应力明显高于底板侧水平应力,应力峰值与开采深度呈线性正相关关系,顶板巷冲击危险性明显较高。根据冲击地压发生规律,针对性制定了急倾斜水平分段开采冲击地压防治方案并进行了防治实践,监测表明防冲效果显著。

       

      Abstract: In order to reveal the distribution characteristics of the stress field and rock burst mechanism induced in the horizontal segmented working face of steeply inclined coal seams, taking eastern No.1 mining area of Wangjiashan Coal Mine as an engineering background, the characteristics of rock burst behavior in the horizontal segmented working face were theoretically analyzed, and the evolution law of the stress field during the horizontal segmented mining process of steeply inclined coal seams was analyzed by numerical simulation; the mechanism of micro-seismicity inducing rock burst of roadway coal floor during horizontal sublevel mining in steeply inclined coal seams is revealed. The research results show that the rock burst risk of roof roadway is significantly higher than that of floor roadway. With the increase of working face segmentation, the vertical stress significantly increases, and the vertical stress concentration degree of roof roadway is higher than that of floor roadway. The maximum principal stress changes from the original horizontal distribution to the distribution along the vertical coal seam direction. After mining, the horizontal stress field of the coal at the working face tends to increase first and then decrease, and the horizontal stress on the roof side is significantly higher than that on the floor side. The peak value of the horizontal stress is linearly related to the mining depth. The prevention and control methods for rock burst in horizontal sublevel mining are proposed. The prevention effect is remarkable.

       

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