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Optimization Support Controlling Large Deformation of Tunnel in Deep Mine based on Discontinuous Deformation Analysis

机译:基于不连续变形分析的深度隧道隧道大变形优化支持

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Field investigation and numerical analysis both show that the effects of multi-dynamic pressure on the tunnel deformation and failure in Qianjiaying coal mine are the main reasons, namely, the dynamic pressure of mining adjacent coal seams, the dynamic pressure due to the effects of mining the upper coal seams on the down coal seams and the advance dynamic pressure of coal seam. Field data indicate that the horizontal displacement is more than vertical displacement, which mainly due to the horizontal stress greater than the vertical stress. Through discontinuous deformation analysis (DDA), we have analyzed the shortage of the old support design, and put forward the revised support design. The functions of three adopted cables are different, namely, the middle cable is used to control the displacement of roof strata, and both sides cable are used to transfer the stress of the overlying strata. The corner bolts are used to control the squeezing pressure of two sides of tunnel, so as to effectively control the floor heave of tunnel. Based on DDA analysis, the failure process, deformation field, stress field and damage scope of tunnel under different support design have been investigated. Results have indicated that the DDA method is the potential method to optimize the bolting support design for coal tunnel.
机译:现场调查和数值分析既表明,多动压对千嘉英煤矿隧道变形和失效的影响是主要原因,即采矿相邻煤层的动态压力,由于采矿效果导致动力压力上部煤层上的煤层和煤层的预远动态压力。现场数据表明水平位移的垂直位移大于垂直位移,这主要是由于水平应力大于垂直应力。通过不连续变形分析(DDA),我们分析了旧支持设计的短缺,并提出了修订的支持设计。三个采用电缆的功能是不同的,即中间电缆用于控制屋顶地层的位移,并且两侧电缆用于传递覆盖层的应力。角螺栓用于控制隧道两侧的挤压压力,从而有效地控制隧道的楼层。基于DDA分析,研究了不同支撑设计下隧道下的故障过程,变形场,应力场和损坏范围。结果表明,DDA方法是优化煤隧道螺栓支护设计的潜在方法。

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