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现代矿业 ›› 2025, Vol. 41 ›› Issue (11): 60-64.

• 采矿工程 • 上一篇    下一篇

破碎煤岩体巷道支护方式优化及物理力学试验

曹雁鸿   

  1. 山西潞安环保能源开发股份有限公司常村煤矿
  • 出版日期:2025-11-25 发布日期:2025-12-18

Optimization and Physical and Mechanical Test of Roadway Support Method for Broken Coal and Rock Mass

  1. Changcun Coal Mine,Shanxi Lu 'an Environmental Protection Energy Development Co.,Ltd.
  • Online:2025-11-25 Published:2025-12-18

摘要: 目前国内煤矿主要采用锚喷与钢拱架联合支护的方式,传统锚喷支护为被动支护方 式,支护初期支护结构无法快速发挥支护作用,导致破碎围岩形成较大的卸荷变形。为了增加支护 初期的支护力,提高破碎煤岩体完整性,降低围岩的卸荷变形,结合常村煤矿巷道的尺寸、地质条件 与支护方式,优化了原支护方式,并开展了物理力学试验。通过材料制备、开挖与支护等试验,研究 不同工况下巷道稳定性,借助XTDP摄影测量系统与应力传感器监测围岩应力与变形,并以围岩变形 定量分析无支护、常规钢拱架与自适应钢拱架的支护效果。通过现场实际应用情况证明了自适应钢 拱架支护结构可以有效抑制破碎围岩初期变形,减小围岩最终的破坏程度,为井工煤矿大变形支护 问题提供新的思路与方法。

关键词: 破碎围岩, 自适应钢拱架支护, 围岩变形, 相似模拟试验

Abstract: At present,domestic coal mines mainly adopt the combined support of bolting and shot⁃ crete and steel arch support. The traditional bolting and shotcrete support is a passive support method. The initial support structure of the support can not play a supporting role quickly,resulting in a large unloading deformation of the broken surrounding rock. In order to increase the support force at the initial stage of sup⁃ port,improve the integrity of broken coal and rock mass,and reduce the unloading deformation of surround⁃ ing rock,a physical and mechanical test was designed in combination with the size,geological conditions and support methods of the roadway in Changcun Coal Mine. The stability of roadway under different work⁃ ing conditions is studied by means of material preparation,excavation and support. The stress and deforma⁃ tion of surrounding rock are monitored by XTDP photogrammetry system and stress sensor,and the support⁃ ing effect of non-supporting,conventional steel arch support and adaptive steel arch support is quantitative⁃ ly analyzed by surrounding rock deformation. Through the practical application in the field,it is proved that the adaptive steel arch support structure can effectively restrain the initial deformation of broken surround⁃ ing rock and reduce the final damage degree of surrounding rock,which provides new ideas and methods for the problem of large deformation support in underground coal mine.

Key words: broken surrounding rock, adaptive steel arch support , surrounding rock deformation, sim? ilar simulation test