煤炭工程 ›› 2023, Vol. 55 ›› Issue (5): 111-115.doi: 10.11799/ce202305019

• 研究探讨 • 上一篇    下一篇

基于不规则煤柱应力场特征的冲击地压防治研究

杨洋1,郝生雷2,秦瑞3   

  1. 1. 山东能源集团
    2. 兖矿集团济三煤矿普掘工区
    3. 兖矿集团济三煤矿
  • 收稿日期:2021-12-23 修回日期:2022-05-05 出版日期:2023-05-19 发布日期:2023-05-19
  • 通讯作者: 杨洋 E-mail:skdyy@163.com

Research on Prevention and Control of Rock Burst Based on Stress Field Characteristics of Irregular Coal Pillars

  • Received:2021-12-23 Revised:2022-05-05 Online:2023-05-19 Published:2023-05-19
  • Contact: yang 无yang E-mail:skdyy@163.com

摘要: 针对近距离煤层群开采过程中上煤层开采遗留大量不规则煤柱严重影响下煤层开采的问题,以济三煤矿183下05工作面为研究对象,利用FLAC3D数值模拟软件建立三维数值模型,对上煤层工作面遗留不规则煤柱应力场进行深入研究,分析上煤层遗留煤柱形成高应力区对183下05工作面的影响,研究结果表明:在采空区侧向支承压力叠加影响下,三角煤柱区和窄煤柱区应力集中程度较高|随着煤柱宽度减小,应力集中程度进一步增大,冲击危险性相应增加,煤柱易失稳诱发冲击地压|3下煤层工作面开采期间,受3下煤层工作面超前支承压力与侧向支承压力影响,煤柱支承压力增高,并将会引起3下煤层局部应力升高程度进一步升高,煤体将会处于高承压状态,并且工作面开采侧煤柱应力集中程度明显高于采空区侧。通过采取煤体大直径钻孔卸压和顶板超前预裂爆破两种卸压措施,有效降低了该区域的冲击危险性,实现了安全开采。

关键词: 不规则煤柱, 冲击地压, 采动应力, 煤柱失稳, 数值模拟

Abstract: In order to study the characteristics of the stress field of the irregular coal pillar left over from the upper coal and the impact on the impact risk when mining the lower coal face, and put forward targeted rock burst prevention measures, according to the methods of numerical simulation, source analysis of microseismic events and engineering analogy, when mining the 18305 working face of Jining No. 3 coal mine, outside the influence area of the upper irregular coal pillar Numerical simulation and stress analysis are carried out for different stress characteristics near the affected area and entering the coal pillar area, the influencing factors of rockburst are fully studied, and the coal rock strength weakening and anti scour treatment measures for lower coal mining in the coal pillar affected area are formulated. The research shows that the vertical stress of the coal body in the left pillar area of the upper coal mostly presents an asymmetric "saddle" distribution, forming an obvious stress concentration. With the push mining of the working face, the coal pillar area is shrinking, the peak value of vertical stress in the coal pillar area continues to rise, microseismic events are concentrated in the coal pillar area, and high-energy events occur frequently, indicating that the coal and rock mass in the coal pillar area overlaps the influence of mining stress under its own high stress state, resulting in large-scale fracture and increased impact risk. The microseismic trend analysis shows that when the working face advances to 50m near the coal pillar area, the vertical stress of the coal pillar superimposes the advance mining stress of the working face to reach the stress peak. The anti scour scheme of deep hole blasting in hard roof strata and pressure relief by large-diameter drilling of coal body during lower coal mining in the coal pillar affected area is formulated. The field practice shows that the measures of deep hole blasting in roof strata with large charge and pressure relief drilling of coal body can significantly reduce the stress level of coal and rock mass in the area affected by irregular coal pillar, It can effectively avoid the occurrence of rockburst in the area affected by deep irregular coal pillar.

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