工作面过空巷超前支承应力分布与煤柱稳定性研究

    Study on distribution of advance supporting stress and stability of coal pillar during the working face passing through abandon roadway

    • 摘要: 以山西大同某矿北翼采区1303工作面工程地质条件为背景,通过现场调研、实验室测试、理论分析、数值模拟等方法,对1303工作面回采过空巷进行了研究。结果表明:理论计算工作面煤壁超前支承应力影响范围为39.2 m,空巷侧向支承应力影响范围为9.6 m,当煤柱宽度L<48.8 m时支承应力开始出现叠加现象;数值模拟分析得出:当煤柱宽度L从50 m减小至10 m时,峰值应力保持持续增加,且在煤柱宽度L=10 m时峰值应力最大,为临界屈服煤柱宽度;当煤柱宽度L<10 m时,煤柱由临界屈服向完全屈服状态转变,且峰值应力向空巷外帮侧转移,需采取补强加固措施来预防煤岩动力灾害的发生。

       

      Abstract: The working face 1303 passing through the gob was studied by means of field investigation, laboratory test, theoretical analysis and numerical simulation, taking the engineering geological conditions of 1303 working face in the north wing of a mine in Datong, Shanxi Province as the background. The results show that the influence range of the leading bearing stress of the coal wall in the working face is 39.2 m, and that of the side bearing stress of the tunnel is 9.6 m. When the width of the coal pillar L is less than 48.8 m, the bearing stress begins to overlap; when the width of the coal pillar L is reduced from 50 m to 10 m, the peak stress keeps increasing continuously, and when the width of the coal pillar is 10 m, the peak stress is the largest, which is the critical bending stress width of coal pillar; when the width of coal pillar is less than 10 m, the critical yield state of coal pillar changes from full yield state to full yield state, and the peak stress shifts to the outer side of the goaf, so it is necessary to take additional measures to prevent the occurrence of coal rock dynamic disaster.

       

    /

    返回文章
    返回