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Stress Distribution and Optimum Spacing Determination of Double-Withdrawal-Channel Surrounding Rocks: A Case Study of Chinese Coal Mine

机译:压力分布和最佳间距确定围岩双撤退通道的判定 - 以中国煤矿为例

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In this study, the 31113 fully mechanised working face in the Lijiahao Coal Mine was selected as the project background. The failure characteristics and optimum spacing of a double-withdrawal-channel surrounding rock were extensively investigated through field measurements, theoretical analysis, and numerical simulations. The following results were obtained. The loading influence range of the working face was fixed. Under the influence of mining, the stress distribution variation in the double-withdrawal channels with spacing and the influence of stress distribution on the surrounding rock stability of the withdrawal channels were determined. The optimum distance between the double-withdrawal channels to achieve the stability of the surrounding rock was at least 25?m, and engineering measures are required to limit the mining height in the final mining stage. The rationality of the main and auxiliary withdrawal channel spacing of 25?m and measures to limit the mining height in the final stage were demonstrated. The findings of this study provide a valuable reference for constructing the layout of withdrawal channels in the adjacent working faces of the same mining area.
机译:在这项研究中,31113在Lijiahao煤矿的31113综合机械化工作面被选为项目背景。通过现场测量,理论分析和数值模拟,广泛地研究了双撤回通道围岩的故障特性和最佳间隔。获得了以下结果。固定工作面的负载影响范围。在采矿的影响下,确定具有间距的双撤出通道的应力分布变化和应力分布对避孕通道周围岩石稳定性的影响。双提试通道之间的最佳距离为实现周围岩石的稳定性为至少25μm,并且需要工程措施来限制最终采矿阶段的采矿高度。展示了25?M的主要和辅助撤出通道间距的合理性及在最终阶段限制采矿高度的措施。该研究的结果为构建相邻采矿区域的相邻工作面中的抽出通道布局提供了有价值的参考。

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