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Deformation characteristics and mechanism of deep subsize coal pillar of the tilted stratum

机译:深桩煤柱煤层煤柱的变形特征及机理

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Based on the analysis of the monitoring data of surface displacement and internal multipoint displacement of coal pillars near three inclined strata roadways, which have similar burial depth and different surrounding rock conditions in a coal mine in the east China, the coal pillars’ stress change was combined with discontinuous numerical simulation software to simulate the deformation process of one of the roadways. Field monitoring data and numerical simulation results show that when this working face roadway is dug, the coal pillar enters plastic state after being affected by multiple mining influence, but it can still maintain the basic stability of the roadway and control coal pillar deformation under the current widely used supporting method. With the shortening of the distance between the monitoring area and the working face, the vertical and horizontal stress in the coal pillar increase gradually, but the maximum value of the vertical stress decreases by 1.4?MPa, and deformation amount and velocity of the coal pillar show the characteristics of nonlinear rapid increase. The shape of the vertical stress core area in the coal pillar changed from oval to rectangle, and the width of the core area increased, and it moved 1?m to the goaf side. In the process of coal pillar deformation, there is no zero displacement surface within the monitoring range of 6?m.
机译:基于分析煤柱附近三层煤柱的地表位移和内部多点位移的监测数据,在中国东部煤矿中具有类似的埋藏深度和不同周围岩石条件的煤柱,煤柱的压力变化是结合不连续数值模拟软件来模拟其中一个道路的变形过程。现场监测数据和数值仿真结果表明,当该工作面道路被挖出时,煤柱在受多种采矿影响的影响后进入塑料状态,但它仍然可以保持车辆道路的基本稳定性和当前控制煤柱变形的基本稳定性广泛使用的支持方法。随着监测区域与工作面之间的距离缩短,煤柱中的垂直和水平应力逐渐增加,但垂直应力的最大值降低了1.4·MPA,以及煤柱的变形量和速度。显示非线性快速增加的特点。煤柱中的垂直应力芯区域的形状从椭圆形变为矩形,核心区域的宽度增加,它移动到脱毛渣侧。在煤柱变形的过程中,监测范围内没有零位移表面6?m。

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