• 论文
主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
基于相似材料试验特厚煤层分层开采对断层影响研究
  • Title

    Study on influence of layered mining of extra thick coal seam on faults based on similar materials test

  • 作者

    孙学阳刘亮东李成苗霖田

  • Author

    SUN Xueyang,LIU Liangdong,LI Cheng,MIAO Lintian

  • 单位

    西安科技大学 地质与环境学院矿山地质灾害成灾机理与防控重点实验室陕西省地质调查院地质调查中心,西安710054自然资源部 煤炭资源勘察与综合利用重点实验室

  • Organization
    1.School of Geology and Environment,Xi’an University of Science and Technology,Xi’an ,China;2.Key Laboratory of Mine Geological Hazards Mechanism and Control ,Xi’an ,China;3.Geological Survey Center of Shaanxi Institute of Geological Survey,Xi’an ,China;4.Key Laboratory of Coal Resources Exploration and Comprehensive Utilization,Ministry of Land and Resources,Xi’an ,China
  • 摘要

    为了研究某矿特厚煤层分层开采对断层的影响,根据煤层实际情况,采用相似材料模拟试验的方法,研究了特厚煤层分层开采下断层的发育规律。结果表明:F18和F16受开采影响大,破坏严重,F1断层距离煤层较远,相对受扰动较轻;因工作面推进方向和断层倾斜方向一致,致使各断层上方的移动变形大于下方的移动变形,使得F1上盘含水层的水容易通过采动裂隙导入工作面;断层F18与工作面侧岩层交汇面的移动数值最大,开采拟3工作面时被采动裂隙贯通地表;重复采动57002工作面时,导水断裂带将会导通地表。

  • Abstract
    In order to study the coal mining thick coal seam layering mining influence on fault,according to the actual situation of coal seam,using the methods of similar material simulation experiment,the development regularity of the fault influenced by the special thick coal seam layering mining.The results show that F18 and F16 are greatly affected by mining and seriously damaged.The working face advancing direction is the same with the fault dip direction,causing the fault at the top of the mobile deformation is greater than at the bottom of the movement,makeing F1 in aquifer groundwater easily through mining fissure import face;The movement value of fault F18 at the interface between the rock strata on the working face and the working face is the largest.When the 57002 working face is repeatedly mined,fault development causes similar materials in the water-conducting fracture zone to reach the bottom of the load,indicating that the water-conducting fracture zone may reach the surface.
  • 关键词

    特厚煤层分层开采相似材料模拟导水断裂带发育

  • KeyWords

    extra thick coal;seam layer mining;similar material simulation;water conduction fractured zone development

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主办单位:煤炭科学研究总院有限公司 中国煤炭学会学术期刊工作委员会

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