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现代矿业 ›› 2025, Vol. 41 ›› Issue (05): 165-170.

• 岩土工程 • 上一篇    下一篇

切顶卸压超宽工作面对拉开采的底板破坏规律研究

吴 焘1 高德瑞2 李衍磊1 韩 旭3 董 亚3 刘 超1   

  1. 1. 枣庄矿业(集团)有限责任公司滨湖煤矿;2. 山东科技大学地球科学与工程学院; 3. 安徽惠洲地质安全研究院股份有限公司
  • 出版日期:2025-05-25 发布日期:2025-07-30

Study on Failure Law of Floor in Double-unit Mining of Ultra-wide Working Face with Roof Cutting and Pressure Relief

  1. 1. Binhu Coal Mine,Zaozhuang Mining(Group)Co.,Ltd.; 2. College of Earth Science and Engineering, Shandong University of Science and Technology;3. Anhui Huizhou Geology Security Institute Co.,Ltd.
  • Online:2025-05-25 Published:2025-07-30

摘要: 采动底板破坏是导通承压含水层诱发底板突水的关键因素,为了分析超宽工作面对拉 开采底板应力分布,揭示底板岩层破坏机理,以滨湖煤矿21609工作面为研究对象,应用矿山压力理 论和数值模拟分析切顶卸压前后工作面对拉开采底板破坏规律。结果表明:工作面对拉开采会对底 板岩层造成重复性扰动,在后工作面端头位置出现应力集中;切顶卸压后煤层底板塑性区范围、垂直 应力、最大主应力、最大剪应力、孔隙水压力及位移量均较切顶卸压前明显降低,矿压集中效应减弱, 有效减小了底板破坏深度,对承压含水层上超宽工作面开采底板水害防治具有重要意义。

关键词: 超宽工作面, 对拉开采, 切顶卸压, 底板破坏

Abstract: The failure of mining floor is the key factor to conduct confined aquifer and induce floor wa⁃ ter inrush. In order to analyze the stress distribution of ultra-wide working face and reveal the failure mecha⁃ nism of floor strata,the 21609 working face in Binhu Coal Mine is taken as the research object,and the fail⁃ ure law of working face before and after roof cutting and pressure relief is analyzed by using mine pressure theory and numerical simulation. The results show that the working face tension mining will cause repetitive disturbance to the floor strata,and stress concentration occurs at the end of the rear working face. After roof cutting and pressure relief,the plastic zone range,vertical stress,maximum principal stress,maximum shear stress,pore water pressure and displacement of coal seam floor are significantly lower than those be⁃ fore roof cutting and pressure relief,and the concentration effect of mine pressure is weakened,which effec⁃ tively reduces the failure depth of floor,and is of great significance to the prevention and control of floor wa⁃ ter damage in super wide working face mining on confined aquifer.

Key words: ultra-wide working face, double-unit mining, cutting roof and pressure relief, floor failure