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Numerical simulation of the effect of confining pressure and tunnel depth on the vertical settlement using particle flow code (with direct tensile strength calibration in PFC Modeling)

机译:限制压力和隧道深度在颗粒流量码垂直沉降对垂直沉降效果的数值模拟(直接拉伸强度校准PFC造型)

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In this paper the effect of confining pressure and tunnel depth on the ground vertical settlement has been investigated using particle flow code (PFC2D). For this perpuse firstly calibration of PFC2D was performed using both of tensile test and triaxial test. Then a model with dimention of 100 m x 100 m was built. A circular tunnel with diameter of 20 m was drillled in the middle of the model. Also, a rectangular tunnel with wide of 10 m and length of 20 m was drilled in the model. The center of tunnel was situated 15 m, 20 m, 25 m, 30 m, 35 m, 40 m, 45 m, 50 m, 55 m and 60 m below the ground surface. these models are under confining pressure of 0.001 GPa, 0.005 GPa, 0.01 GPa, 0.03 GPa, 0.05 GPa and 0.07 GPa. The results show that the volume of colapce zone is constant by increasing the distance between ground surface and tunnel position. Also, the volume of colapce zone was increased by decreasing of confining pressure. The maximum of settlement occurs at the top of the tunnel roof. The maximum of settlement occurs when center of tunnel was situated 15 m below the ground surface. The settlement decreases by increasing the distance between tunnel center line and measuring circles in the ground surface. The minimum of settlement occurs when center of circular tunnel was situated 60 m below the surface ground. Its to be note that the settlement increase by decreasing the confining pressure.
机译:在本文中,使用粒子流量代码(PFC2D)研究了限制压力和隧道深度对地面垂直沉降的影响。对于这种PERPUSE使用拉伸试验和三轴测试进行PFC2D的首先校准。然后建造了一个尺寸100米100米的模型。在模型的中间钻出直径为20米的圆形隧道。此外,在模型中钻出具有宽10米和长度为20米的矩形隧道。隧道中心位于15米,20米,25米,30米,35米,40米,45米,50米,55米和60米以下的地面。这些型号受限于0.001GPa,0.005GPa,0.01gPa,0.03GPa,0.05gPa和0.07GPa的压力。结果表明,通过增加地面和隧道位置之间的距离,Colapce区的体积是恒定的。而且,通过降低限制压力,增加了Colapce区的体积。最大的结算发生在隧道屋顶的顶部。当隧道中心位于地面下方15米时发生的最大定居点。通过增加隧道中心线和地面测量圆圈之间的距离来降低沉降。当圆形隧道的中心位于表面接地下方60米时,发生的最小沉降。其要注意的是,通过降低限制压力来增加沉降。

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