煤炭工程 ›› 2024, Vol. 56 ›› Issue (6): 126-134.doi: 10. 11799/ ce202406020

• 研究探讨 • 上一篇    下一篇

水压-应力作用下井筒围岩的破坏机理与控制研究

华照来,范钢伟,史 进,陈笑予,徐建民,郑 勇,任帅锋   

  1. 1. 陕西陕煤曹家滩矿业有限公司,陕西 榆林 718000
    2. 陕西省煤层气开发利用有限公司,陕西 榆林 718000
    3. 中国矿业大学 矿业工程学院,江苏 徐州 221116

  • 收稿日期:2024-01-04 修回日期:2024-02-20 出版日期:2023-06-20 发布日期:2025-01-08
  • 通讯作者: 陈笑予 E-mail:2053009704@qq.com

Study on failure mechanism and control of shaft surrounding rock under the effect of water pressure-stress

  • Received:2024-01-04 Revised:2024-02-20 Online:2023-06-20 Published:2025-01-08
  • Contact: chen xiaoyu E-mail:2053009704@qq.com

摘要:

本研究结合曹家滩煤矿井筒围岩在穿越地层时受到了水压弱化作用的实际情况, 采用查阅资料、现场查勘、理论分析、公式计算、数值模拟等研究方法, 开展了该煤矿主斜井围岩在水压-应力作用下的变形破坏与控制研究。利用半圆拱形井筒断面等效表示的当量半径法, 结合地层水压、侧压系数、埋深、内聚力、内摩擦角、巷道尺寸等因素, 优化建立了井筒围岩塑性区分布的数学表达式, 并进行了模型的数值模拟验证与公式的敏感性分析, 针对层位岩性差异及水压弱化作用等主要控制因素, 从抑制围岩剪切破坏发生、提高围岩内聚力及内摩擦角、开孔泄水降压、注浆驱替水源、加强原有支护的角度进行了井筒的水害治理与围岩控制。对掌握井筒周边围岩在水压-应力作用下的变形破坏规律、开展相关的数值模拟研究、进行井筒的加固与水害防治工作具有一定的参考意义。

关键词: 井筒围岩 , 水压作用 , 塑性区 , 因素分析 , 破坏规律

Abstract:

In this paper, combined with the actual situation that the surrounding rock of the shaft in Caojiatan Coal Mine is weakened by water pressure when crossing the stratum, the deformation, failure and control of the surrounding rock of the main inclined shaft of the coal mine under the action of water pressure and stress are studied by means of consulting data, field investigation, theoretical analysis, formulate calculation and numerical simulation. Based on the equivalent radius method of semi-circular arch shaft section, combined with the factors such as formation water pressure, lateral pressure coefficient, buried depth, cohesion, internal friction angle and roadway size, the mathematical expression of plastic zone distribution of shaft surrounding rock is optimized and established, and the numerical simulation verification of the model and the sensitivity analysis of the formula are carried out. Aiming at the main control factors such as stratum lithology difference and water pressure weakening, the water damage control and surrounding rock control of shaft are carried out from the aspects of inhibiting the occurrence of shear failure of surrounding rock, improving the cohesion and internal friction angle of surrounding rock, opening water discharge and pressure reduction, grouting to replace water source and strengthening the original support. It has certain reference significance for mastering the deformation and failure law of surrounding rock under water pressure-stress, carrying out relevant numerical simulation research, and carrying out wellbore reinforcement and water disaster prevention and control work.

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