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现代矿业 ›› 2025, Vol. 41 ›› Issue (06): 50-54.

• 采矿工程 • 上一篇    下一篇

非共面双裂隙煤岩三轴力学行为及内部裂纹演化特征研究

赵仁宝1 丁 立1 郑义宁1 刘 飞1 张 朋2 王明辉1   

  1. 1. 山东能源集团郭屯煤矿;2. 兖矿能源集团股份有限公司济宁二号煤矿
  • 出版日期:2025-06-25 发布日期:2025-08-01

Study on Triaxial Mechanical Behavior and Internal Crack Evolution Characteristics of Non-coplanar Double-fractured Coal Rock

  1. 1. Guotun Coal Mine,Shandong Energy Group;2. Jining No.2 Coal Mine,Yankuang Energy Group Co., Ltd.
  • Online:2025-06-25 Published:2025-08-01

摘要: 随着矿井开挖深度日益增加,围压以及天然缺陷造成工作面不稳定性的问题成为关注 热点。基于室内力学试验和离散元数值方法,针对陕西省神木市河畔煤矿煤样,分析了不同围压下 含非共面双裂隙煤岩的力学强度、变形特征、破坏模式以及内部裂纹演化规律。研究结果表明:煤岩 力学性能满足摩尔-库仑准则,随着围压增加,峰值强度以及峰值应变均呈线性增长;含有不同岩桥 角度的非共面双裂隙对煤岩的力学参数具有明显的劣化作用,岩桥倾角为0°、30°、60°、90°和120°时, 煤样的峰值强度下降幅度分别为16.4%、14.2%、26.4%、38.5%和19.8%;与岩桥角度相比,围压对试样 破坏模式的影响更大,随着围压增加,煤样由张拉-混合拉剪破坏转变为剪切破坏,煤岩从脆性破坏向 延性破坏转变;此外,裂纹数量亦受到围压和岩桥倾角的双重影响。研究结果为深地矿井开采安全 及稳定性提供一定指导。

关键词: 非共面双裂隙, 破坏模式, 裂纹演化规律

Abstract: With the increasing depth of mine excavation,the problem of working face instability caused by confining pressure and natural defects has become a hot topic. Based on the indoor mechanical test and discrete element numerical method,the mechanical strength,deformation characteristics,failure mode and internal crack evolution law of non-coplanar double-fractured coal rock with under different con⁃ fining pressures are analyzed for the coal samples of Hepan Coal Mine in Shenmu City,Shaanxi Province. The results show that the mechanical properties of coal and rock meet the Mohr-Coulomb criterion. With the increase of confining pressure,the peak strength and peak strain increase linearly. The non-coplanar dou⁃ ble fractures with different rock bridge angles have obvious deterioration effect on the mechanical parame⁃ ters of coal rock. When the rock bridge angle is 0°,30°,60°,90°and 120°,the peak strength of coal sam⁃ ples decreases by 16.4%,14.2%,26.4%,38.5% and 19.8%,respectively. Compared with the rock bridge angle,the confining pressure has a greater influence on the failure mode of the sample. With the increase of confining pressure,the coal sample changes from tensile-mixed tensile-shear failure to shear failure,and the coal rock changes from brittle failure to ductile failure. In addition,the number of cracks is also affected by the confining pressure and the dip angle of rock bridge. The research results provide certain guiding for the safety and stability of deep mine mining.

Key words: non-coplanar double fractures, failure mode, crack evolution law