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Analysis of cut-and-cover tunnels against large tectonic deformation

机译:开挖隧道对大构造变形的影响分析

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Tunnels are believed to be rather “insensitive” to earthquakes. Although a number of case histories seem to favor such an argument, failures and collapses of underground structures in the earthquakes of Kobe (1995), Düzce–Bolu (1999), and Taiwan (1999) have shown that there are exceptions to this “rule”. Among them: the case of tunnels crossed by fault rupture. This paper presents the analysis and design of two highway cut-and-cover tunnels in Greece against large tectonic dislocation from a normal fault. The analysis, conducted with finite elements, places particular emphasis on realistically modeling the tunnel-soil interface. Soil behavior is modeled thorough an elastoplastic constitutive model with isotropic strain softening, which has been extensively validated through successful predictions of centrifuge model tests. A primary conclusion emerging from the paper is that the design of cut-and-cover structures against large tectonic deformation is quite feasible. It is shown that the rupture path is strongly affected by the presence of the tunnel, leading to development of beneficial stress-relieving phenomena such as diversion, bifurcation, and diffusion. The tunnel may be subjected either to hogging deformation when the rupture emerges close to its hanging-wall edge, or to sagging deformation when the rupture is near its footwall edge. Paradoxically, the maximum stressing is not always attained with the maximum imposed dislocation. Therefore, the design should be performed on the basis of design envelopes of the internal forces, with respect to the location of the fault rupture and the magnitude of dislocation. Although this study was prompted by the needs of a specific project, the method of analysis, the design concepts, and many of the conclusions are sufficiently general to merit wider application.
机译:隧道被认为对地震“不敏感”。尽管许多案例历史似乎都支持这种论点,但在Kobe(1995),Düzce-Bolu(1999)和Taiwan(1999)地震中地下结构的破坏和倒塌表明,该“规则”存在一些例外。 ”。其中:断层穿越隧道的情况。本文介绍了希腊的两条高速公路明挖隧道对正断层构造大错位的分析和设计。使用有限元进行的分析特别强调了对隧道-土壤界面的真实建模。通过具有各向同性应变软化的弹塑性本构模型对土壤行为进行建模,该模型已经通过成功预测离心模型测试得到了广泛验证。从本文得出的主要结论是,针对大构造变形的切入盖结构的设计是相当可行的。结果表明,隧道的存在严重影响破裂路径,从而导致有利的应力消除现象的发展,例如分流,分叉和扩散。当破裂在其悬壁边缘附近出现时,隧道可能会发生弯头变形,或者当破裂在其底壁边缘附近时会发生凹陷变形。矛盾的是,在施加最大的位错时,并非总是能获得最大的应力。因此,关于断层破裂的位置和错位的大小,应根据内力的设计范围进行设计。尽管这项研究是由特定项目的需求推动的,但是分析方法,设计概念和许多结论都足够普遍,值得广泛应用。

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