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Analysis of shield tunnel

机译:盾构隧道分析

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摘要

This paper proposes a two-dimensional finite element model for the analysis of shield tunnels by taking into account the construction process which is divided into four stages. The soil is assumed to behave as an elasto-plastic medium whereas the shield is simulated by beam-joint discontinuous model in which curved beam elements and joint elements are used to model the segments and joints, respectively. As grout is usually injected to fill the gap between the lining and the soil, the property parameters of the grout are chosen in such a way that they can reflect the state of the grout at each stage. Furthermore, the contact condition between the soil and lining will change with the construction stage, and therefore, different stress-releasing coefficients are used to account for the changes. To assess the accuracy that can be attained by the method in solving practical problems, the shield tunnelling in the No. 7 Subway Line Project in Osaka, Japan, is used as a case history for our study. The numerical results are compared with those measured in the field. The results presented in the paper show that the proposed numerical procedure can be used to effectively estimate the deformation, stresses and moments experienced by the surrounding soils and the concrete lining segments. The analysis and method presented in this paper can be considered to be useful for other subway construction projects involving shield tunnelling in soft soils.
机译:考虑到施工过程分为四个阶段,提出了一种二维有限元模型,用于盾构隧道的分析。假定土壤表现为弹塑性介质,而盾构则通过梁节点的不连续模型进行模拟,在该模型中,弯曲梁单元和节点单元分别用于模拟节段和节点。由于通常注入水泥浆来填充衬砌和土壤之间的空隙,因此选择水泥浆的特性参数,使其可以反映水泥浆在每个阶段的状态。此外,土层与衬砌之间的接触条件会随着施工阶段而变化,因此,使用不同的应力释放系数来解释变化。为了评估该方法在解决实际问题中可以获得的准确性,我们以日本大阪地铁7号线项目中的盾构隧道为例进行了研究。将数值结果与现场测量的结果进行比较。研究结果表明,所提出的数值程序可以有效地估计周围土体和混凝土衬砌段所经历的变形,应力和弯矩。本文提出的分析方法可以被认为对其他涉及在软土中进行盾构隧道施工的地铁项目是有用的。

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