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Research on Control of Rib Spalling Disaster in the Three-Soft Coal Seam

机译:三软煤层肋骨剥落灾害控制研究

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Rib spalling disaster at the coal mining faces severely restricted the safe and efficient output of coal resources. In order to solve this problem, based on the analysis of the current status of rib spalling in the three-soft coal seam 1508 Working Face of Heyang Coal Mine, a mechanical model of sliding-type rib spalling was established and the main influencing factors that affect rib spalling are given. The mechanism of grouting technology to prevent and control rib spalling has been theoretically analyzed. A similarity simulation experiment is used to analyze the change law of roof stress under the condition of three-soft coal seam mining. The optimal grouting pressure is determined by a numerical simulation experiment. And, silicate-modified polymer grouting reinforcement materials (SMPGMs) are used in field experiments. After twice grouting operations in the 1508 Working Face, the coal wall was changed from the original soft and extremely easy rib spalling to a straight coal wall and the amount of rib spalling has been reduced by 57.45% and 48.43, respectively. And, the mining height has increased by 0.16?m and 0.23?m, respectively. The experimental results show that the rib spalling disaster of the three-soft coal seam has been effectively controlled.
机译:煤炭挖掘面的肋骨剥落灾难严重限制了煤炭资源的安全有效。为了解决这个问题,基于分析肋煤矿三软煤层1508工作面的肋骨倒装当前状态,建立了滑动型肋穗的机械模型,主要影响因素影响罗纹剥落。理论上,已经分析了预防和控制肋剥落的灌浆技术的机理。相似性仿真实验用于分析三软煤层采矿条件下屋顶应力的变化规律。通过数值模拟实验确定最佳的灌浆压力。并且,硅酸盐改性的聚合物灌浆加强材料(SMPGMS)用于现场实验中。在1508个工作面上的两次灌浆操作之后,煤墙从原始的柔软和极其容易的肋骨倒置变为直煤墙,肋骨剥落量分别降低了57.45%和48.43。并且,挖掘高度分别增加0.16?m和0.23μm。实验结果表明,三软煤层的肋骨剥落灾害已得到有效控制。

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