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Study on experiment of breaking law of overlying strata and disaster characteristics in large mining height stope

机译:大型采矿高采场上覆层破坏规律与灾害特征试验研究

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摘要

Because of higher space of mined out area in large mining height stope, and direct roof can not completely fill the space of mined area, hence, there is a larger space need main roof rotary deformation, violent strata pressure behavior and catastrophic accidents easily occurred.In this paper, the law of breaking about overlying strata and disaster characteristics of before and after main roof breaking by acoustic emission, which could be studied during the large mining height stope mining through imitation test with similar materials.The results showed that strata pressure behavior initial mining stage more violent than normal mining stage, main roof was broken after hydraulic support was moved when the main roof reached the maximum span, so the hydraulic support must be sliding advance of support during periodic weighting.The lead abutment pressure peak was located in front of the 5-10 m range of working face, the influence range of lead abutment pressure was located in front of 95-100 m in working face, the stress concentration coefficient was between 1.35 and 2.12;The first breaking span of main roof was 90 m, the periodic breaking span of main roof was between 10 to 40 m, AE event number reached 1035 per second during the first breaking of main roof, energy rate reached 4962 MV.us/s, acoustic emission signal fluctuates frequently during the periodic breaking of main roof, but the small event and low energy efficiency were main.
机译:由于采空区较大的采空区采空区空间较大,直接顶板不能完全填满采空区空间,因此需要较大的空间进行主顶板旋转变形,地层压力行为剧烈,容易发生灾难性事故。本文通过声发射法研究了主要采动顶板开采过程中的上覆岩层破裂规律及主顶破坏前后的灾害特征,可通过相似材料的模拟试验研究其开采规律。初始开采阶段比正常开采阶段更为剧烈,当主顶板达到最大跨度时,移动液压支架后主顶板会破裂,因此在定期称重期间液压支架必须在支架上滑动前进。铅台肩压力峰值位于在工作面5-10 m范围的前面,铅基台压力的影响范围位于95-10的前面工作面0 m时,应力集中系数在1.35和2.12之间;主顶板的第一次断裂跨度为90 m,主顶板的周期性断裂跨度为10至40 m,在此期间,AE事件数达到了每秒1035次首次破壁,能量率达到4962 MV.us/s,声发射信号在破壁过程中频繁波动,但主要是小事件和低能效。

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  • 来源
  • 会议地点 Xian(CN)Xian(CN)
  • 作者单位

    School of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing, China;

    School of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing, China;

    School of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing, China;

    Hong Qing-He Coal Mine, Inner Mongolia Yitai Group Co., Ltd, Erdos, Inner Mongolia, China;

    Hong Qing-He Coal Mine, Inner Mongolia Yitai Group Co., Ltd, Erdos, Inner Mongolia, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 岩石学;
  • 关键词

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