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现代矿业 ›› 2026, Vol. 42 ›› Issue (06): 65-70.

• 采矿工程 • 上一篇    下一篇

大落差断层下薄煤层安全高效开采技术研究与应用

卢 鑫1 毛怀昆1 王 伟1 杨 龙1 赵 乾1 李国盛2 张 辉2   

  1. 1. 新汶矿业集团有限责任公司;2. 贵州理工学院矿业工程学院
  • 出版日期:2026-06-25 发布日期:2026-07-20

Research and Application of Safe and Efficient Mining Technology for Thin Coal Seam under Large-difference Faults

LU Xin1 MAO Huaikun1 WANG Wei1 YANG Long1 ZHAO Qian1 LI Guosheng2 ZHANG Hui2   

  1. 1. Xinwen Mining Group Co.,Ltd.; 2. Institute of Mining Engineering,Guizhou Institute of Technology
  • Online:2026-06-25 Published:2026-07-20

摘要: 为解决大落差断层构造对煤炭开采的制约影响,以新汶矿区 2618 薄煤层智能综采面 为工程背景,提出了深孔预裂爆破断层处理技术体系。研究选取 2618 工作面作为薄煤层智能化应 用示范工程,该工作面地质条件较为复杂,断层落差达 5 m。传统搬家跳采方式存在工序转换频 繁、煤炭资源采出率低等问题,通过系统性研究爆破钻孔装药结构、不耦合装药工艺及封孔参数优 化,构建了“预裂成缝-能量导向-块度控制”三位一体技术方案。现场试验表明,该技术使爆破岩块 粒度分布系数降至 1.2 以下,裂隙区发育密度提升 45%,有效降低了采煤机截割载荷;且过断层期 间,设备通过率提高 60%,单日煤炭回收量增加 10 t,避免了传统工艺导致的三角煤滞留问题。研 究成果为复杂地质条件下薄煤层智能开采提供了关键技术支撑,其爆破参数设计方法及工艺协同 控制模式具有行业推广价值。

关键词: 薄煤层, 大落差断层, 超前预裂爆破, 能量导向, 参数优化

Abstract: To address constraints imposed on coal mining due to large-difference fault structures, based on the intelligent fully-mechanized mining face of 2618 thin coal seam in Xinwen Mining Area as the engineering background,a deep-hole pre-split blasting fault treatment technology system was pro⁃ posed. The 2618 working face was selected as the demonstration project for thin coal seam intelligent appli⁃ cation,as its geological conditions were relatively complex and the fault drop difference reached 5 meters. The traditional relocation and skipping mining method had problems such as frequent process transitions and low coal resource recovery rate. Through systematic research on the blasting hole charge structure,un⁃ coupled charge technology and sealing parameter optimization,a "pre-split cracking - energy guidance - block size control" three-in-one technical solution was constructed. Field tests showed that this technology reduced the blasting rock particle size distribution coefficient to below 1.2,increased the development den⁃ sity of the fracture zone by 45%,effectively reducing the cutting load of the coal mining machine; and the equipment passage rate during passing through the fault increased by 60%,the daily coal recovery in⁃ creased by 10 t,and the problem of triangular coal retention caused by traditional processes was avoided. The research results provided key technical support for the intelligent mining of thin coal seams under com⁃ plex geological conditions,and the blasting parameter design method and process coordination control mode had industry promotion value.

Key words: thin coal seam, large-difference fault, pre-cracking blasting, energy oriented, parame? ter optimization