李成成. 相邻采空区煤柱采动应力变化规律研究[J]. 煤矿安全, 2013, 44(10): 48-51.
    引用本文: 李成成. 相邻采空区煤柱采动应力变化规律研究[J]. 煤矿安全, 2013, 44(10): 48-51.
    LI Cheng-cheng. Study on Change Laws of Pillar Mining Stress in Adjacent Goaf[J]. Safety in Coal Mines, 2013, 44(10): 48-51.
    Citation: LI Cheng-cheng. Study on Change Laws of Pillar Mining Stress in Adjacent Goaf[J]. Safety in Coal Mines, 2013, 44(10): 48-51.

    相邻采空区煤柱采动应力变化规律研究

    Study on Change Laws of Pillar Mining Stress in Adjacent Goaf

    • 摘要: 为了研究回采过程中相邻采空区工作面不同尺寸煤柱中的采动应力变化规律,针对兴隆庄煤矿七采区冲击地压防治的实际需要,采用离散元数值模拟研究了相邻采空区煤柱的采动应力、塑性区和顶板下沉量变化规律。研究表明:开采过程中所留设的煤柱,受两侧采空区的影响而产生压力叠加,形成较高的煤柱支承压力;随着工作面的推进,煤柱中的双峰应力逐渐合二为一,应力峰值并逐渐增大,在煤柱附近及其上下方的应力集中区内,最容易产生冲击地压。实践证明:模拟结果与现场实际基本相符。

       

      Abstract: In order to study the change law of mining pressure with different coal pillars sizes at the face near a goaf in the recovery process. Aiming at the actual needs of rockburst prevention for Xinglong Coal Mine, discrete element numerical simulation is used to study the change law of pillar mining stress and plastic zone and roof subsidence in the adjacent coal goaf. Studies showed that leaving coal pillars in mining process is affected by both sides of the goaf pressure superimposed to form a high abutment pressure; with the advancing of the working face, the coal pillar bimodal stress gradually merged, peak stress increases gradually. Rockburst is most likely to occur in the coal pillar near its top and bottom of the stress concentration areas. Practice has proved the simulation results and the field situation.

       

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