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3D finite difference model for simulation of double shield TBM tunneling in squeezing grounds

机译:3D有限差分模型在挤压地基双盾构隧道掘进中的模拟

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One of the main concerns in using a shielded machine in deep rock tunnels is the possibility of the shield seizure in squeezing ground. To realistically evaluate the possibility of machine seizure in such grounds, the interaction between the rock mass and shield, lining and backfilling need to be understood. This paper will explain the background theories and the application of numerical analysis for 3D modeling of mechanized tunneling by using a double shield TBM in squeezing ground. The discussions will include the effects of advance rate during excavation cycle of a shielded TBM to observe the impact of tunneling rate on the possibility of machine jamming in the squeezing grounds. Simulation results at five reference points on the tunnel circumference along the tunnel or longitudinal displacement profile (LDP) as well as longitudinal contact force profiles (LFP) on both front and rear shields have been examined. Also, maximum thrust force required to overcome friction and drive TBM forward is calculated. This exercise allows for evaluation of the effects of various parameters on convergence and contact forces between the rock and shield, which in turn determines the required propel forces and can define the possibility of machine entrapment.
机译:在深部岩石隧道中使用屏蔽机的主要问题之一是在挤压地面时屏蔽物会卡住。为了切实评估在这种情况下发生机器卡死的可能性,需要了解岩体与护罩,衬砌和回填之间的相互作用。本文将介绍在双绞线掘进机中采用双盾TBM进行机械化隧道3D建模的背景理论和数值分析的应用。讨论将包括在盾构TBM的开挖周期中推进速率的影响,以观察隧道掘进速率对机器挤在挤土中的可能性的影响。沿隧道或纵向位移曲线(LDP)以及前后护罩上的纵向接触力曲线(LFP)在隧道圆周上的五个参考点处的仿真结果已得到检验。而且,计算了克服摩擦并向前推动TBM所需的最大推力。该练习允许评估各种参数对岩石和护盾之间的会聚和接触力的影响,进而确定所需的推进力并确定机器被卡住的可能性。

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