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Correlation between the kinematics of a Tunnel Boring Machine and the observed soil displacements

机译:隧道掘进机的运动学与观测到的土壤位移之间的相关性

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Constructing tunnels in soft soil with the use of Tunnel Boring Machines (TBMs) may induce settlements. A considerable amount of the total soil displacements is correlated with the passage of the TBM-shield. Even so, the TBM-induced soil displacements are so far only coarsely correlated to the total settlements. This paper relates the shield geometry and its advance through the soil with the observed soil displacements. The snake-like motion of the shield induces unevenly distributed soil displacements at the shield-soil interface, which spread through the soil with a similar pattern. The results of an earlier numerical investigation on the TBM kinematics and the observed soil response are compared here in order to quantify their correlation. The analysis has been based on the monitoring data from the construction of a twin-tube bored road tunnel in The Hague, The Netherlands. Results confirm that the geometry and the advance of the TBM-shield through the soil influence the amount and distribution of the induced soil displacements. The analysis also highlights the essential role of the tail-void grouting not only in filling-in the tail-void, but also in compensating the kinematical effects of shield advance.
机译:使用隧道掘进机(TBM)在软土中建造隧道可能会引起沉降。相当数量的土壤总位移与TBM防护罩的通过相关。即便如此,迄今为止,TBM引起的土壤位移仅与总定居点粗略相关。本文将盾构的几何形状及其在土壤中的前进与观测到的土壤位移联系起来。防护罩的蛇状运动会在防护罩-土壤界面处引起土壤位移的不均匀分布,并以相似的模式分布在土壤中。在此比较了较早的关于TBM运动学的数值研究结果和观察到的土壤响应,以便量化它们之间的相关性。该分析基于荷兰海牙双管钻孔公路隧道建设的监测数据。结果证实,TBM防护罩的几何形状和通过土壤的前进会影响诱发的土壤位移的数量和分布。该分析还强调了尾孔灌浆不仅在填充尾孔中,而且在补偿盾构推进的运动学影响方面的重要作用。

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