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Evolution Characteristics of Pressure-Arch in Disturbed Overburden During Shallow Horizontal Coal Mining

机译:浅水型煤矿中受扰动覆盖度的压力拱的演化特性

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The overlying strata is often destroyed in large scale during shallow coal seam mining, and the sliding instability of the caved roof seriously threatens the safety of the mining field. The typical shallow coal mining in Shendong Mining Area in China was used as engineering background; the load distribution characteristics of the overlying strata were analyzed based on the monitoring data of the support resistance. Through theoretical analysis and numerical simulation, the formation and changing process of the pressure-arch in the overlying strata were studied, and the instability mechanism of the overlying strata was revealed by focusing on the accumulation and release law of the elastic energy in the pressure-arch. The results show that the continuous pressure-arch was formed when the horizontal stress exceeded the primary vertical stress of the mining field, and the elastic energy of the roof was released by the mining unloading effect. The elastic energy was accumulated in the pressure-arch, and the energy arrived the highest at the front arch foot. The accumulated energy at the arch foot was released by coal mining, and the shear zone could be formed. Therefore, the sliding of the caved zone along the shear zone induced strong roof weighting. The concentrated stress and the released energy during each mining increased with the panel advancing, and the height of the shear zone also increased. The conclusions obtained in the study are of important theoretical value to direct similar engineering practice.
机译:在浅煤层挖掘期间,覆盖层往往在大规模中被摧毁,并且塌陷屋顶的滑动不稳定严重威胁着采矿领域的安全性。中国Shendong矿区典型的浅煤矿用作工程背景;基于载体电阻的监测数据分析覆盖层的负载分布特性。通过理论分析和数值模拟,研究了覆盖层中的压力拱的形成和变化过程,通过专注于压力中弹性能量的积累和释放规律来揭示覆盖层的不稳定机制拱。结果表明,当水平应力超过采矿场的初级垂直应力时,形成连续压力拱,并且通过采矿卸料效果释放屋顶的弹性能。弹性能量积聚在压力拱中,能量在前拱脚下到达。拱形脚的累积能量被煤开采释放,可以形成剪切区。因此,沿剪切区沿着剪切区的滑动诱导强大的屋顶加权。每次采矿过程中浓缩应力和释放的能量随面板推进而增加,剪切区的高度也增加。该研究中获得的结论是直接类似工程实践的重要理论价值。

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