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Research on the width of filling body in gob-side entry retaining with high-water materials

机译:高水料留空采空区充填体宽度研究

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摘要

To determine the filling body's width along the gob-side remained roadway which is underneath the gob, the authors analyzed the interaction mechanism between the roof and the supporting body along the remained roadway, based on the elastic thin plate theory of the stope roof. The stress state and mechan-ical response of the filling body along the remained roadway were studied. Specifically, firstly, the sup-porting pressure of the coal pillar which is on one side of the gob-side remained roadway was deduced. Also, an equation that is used to calculate the width of the balance area in the stress limit state was acquired. Then, an equation that is used to calculate the roof cutting force on one side of the supporting body was obtained. By using FLAC3D, the authors investigated the displacement field and stress field response laws of rock masses around the roadway with different filling body's widths. The results show that with the filling body's width increasing, the supporting ability of the filling body increases. Meanwhile, the rock mass displacement around the roadway and the filling body deformation decrease. The better the filling body's supporting effect is, the higher the roof cutting force will be. When the filling body's width is larger than 3.0 m, its internal bearing ability becomes stable and the filling body's defor-mation became non-apparent. Finally, analysis shows that the filling body's width should be 2.5 m. Furthermore, the authors conducted field tests in the supply roadway 1204, using high-water materials and acquired expected outcomes.
机译:为了确定沿采空区下方的采空区剩余巷道的填充体宽度,作者基于采场顶板的弹性薄板理论分析了采空巷道顶板与支撑体之间的相互作用机理。研究了沿剩余巷道充填体的应力状态和力学响应。具体而言,首先,推导出位于采空区剩余巷道一侧的煤柱的支撑压力。此外,获得了用于计算应力极限状态下的平衡区域的宽度的方程式。然后,获得用于计算在支撑体的一侧上的屋顶切割力的方程式。通过使用FLAC3D,作者研究了具有不同填充体宽度的巷道周围岩体的位移场和应力场响应规律。结果表明,随着填充体宽度的增加,填充体的支撑能力增强。同时,巷道周围的岩体位移和填充体变形减小。填充体的支撑效果越好,顶板切割力就越大。当填充体的宽度大于3.0 m时,其内部承载能力变得稳定,并且填充体的变形变得不明显。最后,分析表明填充体的宽度应为2.5 m。此外,作者使用高水材料在补给巷道1204中进行了现场测试,并获得了预期的结果。

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  • 来源
    《矿业科学技术(英文版)》 |2018年第3期|519-524|共6页
  • 作者单位

    Laboratory of Deep Coal Resource Key Mining, Ministry of Education, School of Mines, China University of Mining and Technology, Xuzhou 221116, China;

    Postdoctoral Station, Zibo Coal Mining Group Co., Ltd., Zibo 255120, China;

    Laboratory of Deep Coal Resource Key Mining, Ministry of Education, School of Mines, China University of Mining and Technology, Xuzhou 221116, China;

    Laboratory of Deep Coal Resource Key Mining, Ministry of Education, School of Mines, China University of Mining and Technology, Xuzhou 221116, China;

    Laboratory of Deep Coal Resource Key Mining, Ministry of Education, School of Mines, China University of Mining and Technology, Xuzhou 221116, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 01:02:33
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