近距离上覆遗留煤柱对下部采场矿压显现规律研究

    Study on the manifestation law of mining pressure in the lower mining area under the influence of residual coal pillars in close proximity

    • 摘要: 为探究上覆遗留煤柱对下部煤层工作面的影响,本文采用理论分析和FLAC3D数值模拟方法,结合各岩层和煤层物理参数进行分析。结果表明:简化的Willson屈服宽度公式确认遗留煤柱未发生失稳破坏;弹性力学理论分析了底板在集中和均匀载荷下的应力分布。FLAC3D模拟结果显示,煤柱宽度从35 m增至65 m时,煤柱左右、中部和底板的应力分别减小且应力下降幅度逐渐减缓。随着掘进距离的增加,煤柱与工作面的峰值应力可达28 MPa,集中在煤柱左侧5 m和工作面前方5 m范围,且峰值应力随掘进距离增大而减小,工作面峰值应力则先增大后减小,且与煤柱宽度无关。

       

      Abstract: In order to explore the influence of the overlying legacy coal column on the lower coal seam working face, this paper adopts the theoretical analysis and FLAC3D numerical simulation method, combined with the physical parameters of each rock layer and coal seam. The results show that the simplified Willson yield width formula confirms that the elastic mechanics theory analyzes the stress distribution of the bottom plate under concentrated and uniform load. FLAC3D The simulation results show that when the width of the coal column increases from 35 m to 65 m, the stress of the left and right, middle and bottom plate of the coal column decreases and the stress decline gradually slows down. With the increase of the driving distance, the peak stress of the coal pillar and the working face can reach 28 MPa, which is concentrated in the range of 5 m on the left side of the coal pillar and 5 m in the front of the work. Moreover, the peak stress decreases with the increase of the driving distance, while the peak stress of the working face increases first and then decreases, and is unrelated to the width of the coal pillar.

       

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