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Critical face pressure and backfill pressure in shield TBM tunneling on soft ground

机译:软土地基盾构TBM隧道中的临界面压力和回填压力

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摘要

The most important issue during shield TBM tunneling in soft ground formations is to appropriately control ground surface settlement. Among various operational conditions in shield TBM tunneling, the face pressure and backfill pressure should be the most important and immediate measure to restrain surface settlement during excavation. In this paper, a 3-D hydro-mechanical coupled FE model is developed to numerically simulate the entire process of shield TBM tunneling, which is verified by comparing with real field measurements of ground surface settlement. The effect of permeability and stiffness of ground formations on tunneling-induced surface settlement was discussed in the parametric study. An increase in the face pressure and backfill pressure does not always lead to a decrease in surface settlement, but there are the critical face pressure and backfill pressure. In addition, considering the relatively low permeability of ground formations, the surface settlement consists of two parts, i.e., immediate settlement and consolidation settlement, which shows a distinct settlement behavior to each other.
机译:在软土地层进行盾构TBM隧道施工时,最重要的问题是适当控制地表沉降。在盾构TBM隧道掘进的各种操作条件中,工作面压力和回填压力应是限制开挖过程中地面沉降的最重要和最直接的措施。本文建立了3-D水力耦合有限元模型,对盾构TBM隧道掘进的整个过程进行了数值模拟,并与地面沉降的实测结果进行了比较。在参数研究中讨论了地层的渗透性和刚度对隧道引起的表面沉降的影响。面压力和回填压力的增加并不总是会导致表面沉降的减少,但是存在临界面压力和回填压力。此外,考虑到地层的渗透率较低,地表沉降由两部分组成,即立即沉降和固结沉降,这两个部分表现出彼此不同的沉降行为。

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