Research on narrow coal pillar width optimization and surround rock control in Shiquan mine

Rui Wang , Zhen Shi , Jiulin Fan , Yajun Wang , Yanghao Peng , Manchao He , Bo Zhang
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Abstract

To address the issue of severe coal resource waste and substantial deformation of the surrounding rock caused by the retention of coal pillars for protective lanes during the excavation along the void of the 30108 working face at Shiquan Coal Mine, a study was conducted on the stress distribution of coal pillars and the deformation of surrounding rocks in the 30108 haulage roadway under different coal pillar widths and tunneling methods. Initially, theoretical calculations of coal pillar width in the goaf mining section were conducted. Subsequently, a numerical model was established to simulate and analyze the stress distribution of coal pillars and the deformation characteristics of surrounding rock under different coal pillar widths and tunnel layout methods. Finally, support schemes were proposed and verified through field application. The study indicates that the coal pillar width within the 30108 haulage roadway should not be less than 8.94 ​m; The failure of the coal pillar is primarily characterized by plastic shear failure within the pillar and tensile failure on both sides of the pillar, the deformation of the surrounding rock in the tunnel is mainly manifested as tensile failure of the roof and floor slabs and shear failure of the sidewalls, as the width of the coal pillar increases, the deformation of the surrounding rock on the surface of the tunnel within the pillar gradually decreases, and when the coal pillar width reaches 8–10 ​m, the deformation of the surrounding rock in the tunnel becomes stable; The field application has been effective.
石泉矿窄煤柱宽度优化与围岩控制研究
针对石泉煤矿30108工作面沿空区掘进过程中因煤柱留巷造成严重的煤炭资源浪费和大量围岩变形的问题,对不同煤柱宽度和掘进方式下30108运输巷道煤柱应力分布和围岩变形进行了研究。首先对采空区采空区采空区煤柱宽度进行了理论计算。随后,建立数值模型,模拟分析了不同煤柱宽度和巷道布置方式下煤柱应力分布及围岩变形特征。最后,提出了相应的支护方案,并通过现场应用进行了验证。研究表明,30108运输巷道内煤柱宽度不宜小于8.94 m;煤柱破坏主要表现为矿柱内的塑性剪切破坏和矿柱两侧的拉伸破坏,巷道内围岩变形主要表现为顶底板的拉伸破坏和侧壁的剪切破坏,随着煤柱宽度的增大,矿柱内巷道表面围岩变形逐渐减小;当煤柱宽度达到8 ~ 10 m时,巷道围岩变形趋于稳定;现场应用效果良好。
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