采动−水浸作用下煤柱坝体稳定性及合理宽度研究

Stability and reasonable width of coal pillar dam under mining disturbance and water immersion

  • 摘要: 煤柱坝体是保障煤矿地下水库长期安全运行的关键,但现有研究尚未充分揭示采动−水浸作用下煤柱坝体力学参数劣化机制及其对煤柱坝体中孔隙压力分布及塑性损伤演化规律的影响,且缺乏对煤柱坝体中部阻水区宽度的定量研究。针对上述问题,采用FLAC3D模拟了水浸作用下煤柱坝体力学参数的渐进劣化过程,在此基础上分析了煤柱坝体在采动−水浸作用下的垂直应力、塑性区、孔隙压力及阻水区变化规律。结果表明:水浸作用导致煤柱坝体内部垂直应力分布由“马鞍形”向“单峰形”转变,水平变形量激增,塑性区占比显著增加;煤柱坝体中部阻水区呈显著“倒梯形”非均匀分布,阻水区宽度大幅缩减;随着煤柱坝体宽度增加,煤柱中部阻水区宽度增大,应力集中程度降低,两侧应力分布更加均匀,有效承载区范围扩大,从而削弱了水浸作用对煤柱坝体中部力学性能的弱化影响。根据极限平衡理论推导计算结果与数值模拟结果,确定了煤柱坝体合理宽度为40 m,对应中部阻水区宽度达15 m。工程应用结果表明,40 m宽煤柱坝体的塑性区占比与水平变形量较小,满足稳定性要求。

     

    Abstract: The coal pillar dam is a key structure for ensuring the long-term safe operation of underground reservoirs in coal mines. However, existing studies do not sufficiently reveal the degradation mechanism of mechanical parameters of coal pillar dams under the coupling effect of mining disturbance and water immersion, as well as its influence on the distribution of pore pressure and the evolution of plastic damage in coal pillar dams. There is also a lack of quantitative research on the width of the water-blocking zone in the central part of coal pillar dams. To address these issues, FLAC3D was used to simulate the progressive degradation process of mechanical parameters of coal pillar dam under water immersion. On this basis, the variation patterns in vertical stress, plastic zone, pore pressure, and water-blocking zone of coal pillar dam under the action of mining disturbance and water immersion were analyzed. The results showed that water immersion caused the internal vertical stress distribution of the coal pillar dam to transform from a "saddle-shaped" pattern to a "single-peak" pattern, with the horizontal deformation increasing sharply and the proportion of the plastic zone increasing significantly. The water-blocking zone in the central part of the coal pillar dam exhibited a significantly inverted trapezoidal and non-uniform distribution, and the width of the water-blocking zone was greatly reduced. As the width of the coal pillar dam increased, the width of the central water-blocking zone increased, the degree of stress concentration decreased, the stress distribution on both sides became more uniform, and the effective load-bearing zone expanded, thereby weakening the adverse effect of water immersion on the mechanical properties of the central part of the coal pillar dam. Based on the analytic results of limit equilibrium theory and numerical simulation results, the reasonable width of the coal pillar dam was determined to be 40 m, corresponding to a central water-blocking zone width of 15 m. Engineering application results showed that the coal pillar dam with a width of 40 m had a smaller proportion of the plastic zone and lower horizontal deformation, meeting the stability requirements.

     

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