殷德威, 尹乾, 孔令昌. 大断面浅埋巷道稳定性优化机理研究[J]. 煤矿安全, 2013, 44(10): 56-58,62.
    引用本文: 殷德威, 尹乾, 孔令昌. 大断面浅埋巷道稳定性优化机理研究[J]. 煤矿安全, 2013, 44(10): 56-58,62.
    YIN De-wei, YIN Qian, KONG Ling-chang. Research on Optimization Mechanism of Roadway Stability With Large Cross Section and Shallow Buried[J]. Safety in Coal Mines, 2013, 44(10): 56-58,62.
    Citation: YIN De-wei, YIN Qian, KONG Ling-chang. Research on Optimization Mechanism of Roadway Stability With Large Cross Section and Shallow Buried[J]. Safety in Coal Mines, 2013, 44(10): 56-58,62.

    大断面浅埋巷道稳定性优化机理研究

    Research on Optimization Mechanism of Roadway Stability With Large Cross Section and Shallow Buried

    • 摘要: 针对大断面巷道稳定性控制的难题,以内蒙古转龙湾煤矿大断面浅埋副斜井为背景,通过分析对原U型钢+钢筋混凝土支护方案优化的必要性,在理论分析和松动圈实测的基础上,采用FLAC3D有限差分软件对3种不同支护方案下巷道围岩变形和应力分布特征进行模拟研究。分析表明:锚网索支护方式增加了围岩的刚性和整体性能,避免围岩发生剪切、断裂等破坏;同时底角锚杆的设置有效地控制了巷道底鼓变形量。

       

      Abstract: Aiming at the problem of stability control in roadway with large cross section, the auxiliary shaft which is shallow buried with large cross section in Zhuanlongwan Coal Mine in Inner Mongolia is taken as the background. Through analyzing the necessity of optimizing the former supporting scheme of U-shaped steel and armoured concrete, the FLAC3D finite difference software is adopted to discuss the surrounding rock deformation and stress distribution in three different supporting schemes on the base of theoretical analysis and loose circle test. The result indicates that the supporting scheme of cable anchor not only increases the rigidity and overall performance of the surrounding rock, but also avoids the damages from shear and break, besides, the anchor at the basic angle controls the deformation amount of the floor.

       

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