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现代矿业 ›› 2025, Vol. 41 ›› Issue (10): 35-39.

• 采矿工程 • 上一篇    下一篇

火成岩侵入综放工作面超前支承压力分布特征研究

刘雨杭1,2 张 明1,2   

  1. 1. 中煤科工集团沈阳研究院有限公司; 2. 露天煤矿灾害防治与生态保护全国重点实验室
  • 出版日期:2025-10-25 发布日期:2025-12-02

Research on the Distribution Characteristics of Advanced Support Pressure in the Comprehensive Caving Working Face Due to Igneous Intrusion

  1. 1. CCTEG Shenyang Research Institute; 2. State Key Laboratory of Disaster Prevention and Ecology Protection in Open-pit Coal Mines
  • Online:2025-10-25 Published:2025-12-02

摘要: 为掌握火成岩侵入特殊地质条件时的综放工作面矿压显现特征,确保巷道支护的合理 性,通过围岩物理力学参数测试确定了火成岩侵入影响下的煤体弱化特征,在此基础上,计算了不同 工况回采期间,超前支承压力峰值大小与影响范围,进一步采用控制变量法调整煤体参数,构建火成 岩侵入前后的三维数值模型,厘清工作面上方不同深度垂直应力变化规律,并结合现场实测结果验 证了研究结果的准确性。结果表明,火成岩侵入灼蚀煤体,驱动其结构由致密向松软多孔转变,物理 力学性质大幅削弱,工作面上方煤体在动压影响下极易破碎,纵向塑性破坏深度较大,导致煤体载荷 共同叠加,覆岩10 m深度内,应力均处于较高水平;相较常规区域,应力集中系数及影响范围显著增 加,煤体强度低、水平应力大、裂隙水软化、大范围超前支承压力等多种因素的叠加,诱发巷道在回采 期间大面积失稳破坏。研究成果可为类似地质条件工作面超前支护合理布设范围提供参考依据。

关键词: 火成岩侵入, 综放工作面, 超前支承压力, 煤体弱化, 变形诱因

Abstract: In order to master the characteristics of mineral pressure manifestations in the comprehen⁃ sive caving working face under the special geological conditions of igneous intrusion, to ensure the rationali⁃ ty of the roadway support,the characteristics of coal body weakening under the influence of igneous rock in⁃ trusion were determined by testing the physical and mechanical parameters of surrounding rock. On this ba⁃ sis, the magnitude and influence range of the peak abutment pressure during mining under different working conditions were theoretically calculated. Furthermore, the control variable method was adopted to adjust the coal body parameters to build a three-dimensional numerical model before and after igneous rock intrusion, and the variation rules of vertical stress at different depths above the working face were clarified. The accura⁃ cy of the research results is verified by field measurement.The results show that the intrusion of igneous rock erodes the coal body, driving its structure from dense to soft and porous, resulting in a significant reduction in its physical and mechanical properties.The coal seam above the working face is easy to break under the in⁃ fluence of dynamic pressure, and the large longitudinal plastic failure depth leads to the common superposi⁃ tion of coal load, and the internal stress at a depth of 10 m above the overlying rock is at a high level.Com⁃ pared to conventional areas, the stress concentration coefficient and its influence range have significantly in⁃ creased. The combination of factors such as low coal body strength, high horizontal stress, softening of frac⁃ ture water, and extensive pre-supporting pressure led to the large-scale instability and collapse of the road⁃ way during the mining process.The research findings can serve as a reference for reasonably determining the advance support layout range for working faces under similar geological conditions.

Key words: igneous intrusion, comprehensive caving working face, advanced support pressure, coal weakened, deformation inducement