煤巷掘进空顶区顶板力学响应机制及临时支护技术研究

Mechanical response mechanism and temporary support for unsupported roof area in coal roadway excavation

  • 摘要: 为探究不同空顶距影响下煤巷围岩力学响应机制及临时支护技术,以王庄煤矿9103运输平巷为工程背景,基于薄板及普氏垮落拱理论,建立煤巷掘进空顶区浅部围岩力学模型,推导出极限空顶距表达式,并基于FLAC 3D软件分析不同空顶距下掘进巷道顶板变形、应力和塑性区时空演化规律。研究结果表明:影响极限空顶距的主要因素为巷道宽度、顶板抗拉强度、顶板载荷及浅部离层岩体厚度;空顶距从0.5 m增大至1.0、1.5、2.0 m时,顶板下沉量增量分别为4.82、3.67、8.31 mm,表现为先平稳下沉后加剧下沉趋势,沿顶板掘进方向截面中心处最小垂直应力由7.85 MPa降至1.24 MPa;空顶距增大至2.5、3.0 m时,空顶区围岩内部破坏加剧,表面变形失稳,合理空顶距临界值确定为2.0 m。针对临时支护装置缺点,设计机载式新型临时支护装置,并基于Ansys软件验证该装置顶梁具备足够支撑力。9103运输平巷采用该支护装置,同时通过增加掘进机循环进尺、敲帮问顶与临时支护并行作业巷道掘进工艺优化措施,掘进速度提高了33.3 %。

     

    Abstract: This study investigates the mechanical response mechanism and temporary support method of surrounding rock in coal mines under varying unsupported roof distances, with 9103 transportation roadway of Wangzhuang coal mine taken as a case study. We established a mechanical model of shallow surrounding rock in the unsupported roof area of coal mines by drawing on the thin slabs and universal falling arch theories, where an expression of the maximum unsupported roof distance was derived. Numerical simulation was conducted using FLAC 3D software to simulate the spatiotemporal evolution of deformation, stress, and plastic zone of surrounding rock in roadway with varying top spacing. Results show that: identified roadway width, the tensile strength of the roof, the load on the roof, and the thickness of the shallow separated rock mass as main controlling factors affecting the empty roof distance. As the unsupported roof distance increases from 0.5 m to 1.0 m, 1.5 m, and 2.0 m, the increments in roof subsidence are 4.82 mm, 3.67 mm, and 8.31 mm, respectively, showing an initial steady subsidence followed by an accelerated trend. The minimum vertical stress at the center of the cross-section along the excavation direction decreases from 7.85 MPa to 1.24 MPa. When the unsupported roof distance increases to 2.5 m and 3.0 m, internal damage in the surrounding rock intensifies, leading to surface deformation instability. The critical value for a reasonable unsupported roof distance is determined to be 2.0 m. To address the limitations of the temporary support device of the coal roadway, we proposed a new type of machine-mounted temporary support device, and its sufficient supporting capacity is verified using Ansys software. The 9103 transportation roadway adopts this support device, the excavation speed is increased by 33.3 % by increasing the cyclic feed of the roadheader and through the parallel operation of knocking on the top and temporary support.

     

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