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Finite Element modelling of tunnelling-induced displacements on framed structures

机译:框架结构上隧道引起的位移的有限元建模

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The construction of tunnels in urban areas inevitably entails the interaction with existing structures. While the effect of tunnel excavation on masonry structures has been thoroughly studied, the response of framed buildings has not been widely investigated in the past. In this paper, a parametric study of the response to tunnelling of reinforced concrete framed structures founded on strip footings is carried out using the Finite Element method. The foundations and the structural members of the building are modelled with a sufficient detail and a realistic contact law is employed to simulate the interaction between the foundation and the adjacent soil. Results are summarised in terms of deflection ratios and modification factors for horizontal strains. It is shown that the structural stiffness, mainly provided by the foundation, on average reduces the differential settlements and the horizontal displacements of the frame as compared to greenfield conditions. However, in contrast with what discussed in previously published papers, while the deflection ratio in sagging reduces as the number of floors becomes larger, it increases in hogging, which always occurs at the ends of the foundation. This evidence appears to be related to the non-uniform contact pressure at the soil-foundation interface and to the peculiar load distribution associated to the frame geometry.
机译:城市地区的隧道建设不可避免地需要与现有结构相互作用。尽管已经深入研究了隧道开挖对砖石结构的影响,但过去对框架式建筑物的响应尚未进行广泛的研究。在本文中,使用有限元方法对基于条形基础的钢筋混凝土框架结构的隧穿响应进行了参数研究。对建筑物的基础和结构构件进行了足够详细的建模,并采用了实际的接触定律来模拟基础与相邻土壤之间的相互作用。结果根据水平应变的挠度比和修正因子进行了总结。结果表明,与未开发地区相比,主要由基础提供的结构刚度平均减少了框架的差异沉降和水平位移。但是,与以前发表的论文所讨论的相反,下陷的挠度比随着层数的增加而减小,而下陷的挠曲率却增加了,这总是发生在地基的两端。该证据似乎与土壤-基础界面处的非均匀接触压力以及与框架几何形状相关的特殊载荷分布有关。

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