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A Physical and Numerical Investigation on the Stability of Shallow Tunnels in Strain Softening Media

机译:应变软化介质中浅埋隧道稳定性的物理和数值研究

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摘要

The behaviour up to failure of shallow underground openings is discussed on the basis of some laboratory, small-scale model tests and of finite element simulation. The experimental results are first illustrated. They were obtained from two-dimensional (plane strain) and three-dimensional tunnel models tested under standard gravity conditions. Then, the phenomenon of strain localisation that characterizes the medium surrounding the model tunnels is discussed, recalling two alternative approaches for its numerical interpretation. On this basis, a finite element procedure for strain softening analyses is outlined and applied to the simulation of the tests in both two-and three-dimensional conditions. The comparison between experimental and numerical results leads to some conclusions on the influence of strain localisation on the overall behaviour of shallow tunnels and on the stability of their headings.
机译:在一些实验室,小规模模型测试和有限元模拟的基础上,讨论了浅层地下洞室直至破坏的行为。首先说明了实验结果。它们是从在标准重力条件下测试的二维(平面应变)和三维隧道模型获得的。然后,讨论了表征模型隧道周围介质的应变局部化现象,并回顾了其数值解释的两种替代方法。在此基础上,概述了用于应变软化分析的有限元程序,并将其应用于二维和三维条件下的测试模拟。实验结果与数值结果的比较得出了关于应变局部化对浅埋隧道整体行为及其走向稳定的一些结论。

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