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Interaction between tunnel and unstable slope - Influence of time-dependent behavior of a tunnel excavation in a deep-seated gravitational slope deformation

机译:隧道与不稳定边坡的相互作用-深部重力边坡变形中隧道开挖的时变行为的影响

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A back analysis of old tunnels in an unstable slope context leads to consider several situations of tunnel entering a slope: cross-cutting tunnel to the slope, oblique tunnel to the slope, or shallow tunnel parallel to the slope. Identified pathologies of structures vary depending on these situations. In the context of a shallow tunnel, the tunnel excavation leads to a slope destabilization due to a more or less important deconfinement of the surrounding massif. Construction techniques influence, on one hand, slope surface displacement acceleration, on the other hand, structural damages in the tunnel lining. Nevertheless, the interaction between tunnel and unstable slope depends on the distance between the slope surface and the tunnel lining plot according to the tunnel diameter (D) and on the geological, geomorphological, hydrological and seismic contexts of the slope. This research focuses on different mechanisms of slope instability in a glacial unloading context, especially in creeping contexts, and on damages affecting the structure of tunnels parallel to the slope. Through numerical simulations, the influence of the construction techniques was studied; so was the choice of the tunnel situation, more or less away from the slope surface. Mainly the delay time before tunnel structure implementation) on the damage lining processes, the interaction between tunnel and slope surface displacements and their time evolution have been taken into account for the most critical tunnel situation in the slope. The different situations of tunnel in the slope permit to set in evidence the safety distance from the slope in the context of a slow glacial unloading mechanism. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在不稳定的斜坡环境中对旧隧道的反向分析导致考虑了隧道进入斜坡的几种情况:横穿隧道至斜坡,倾斜隧道至斜坡或平行于斜坡的浅隧道。确定的结构病理会根据这些情况而变化。在浅隧道的情况下,隧道开挖会导致斜坡的失稳,这是由于周围地块或多或少受到了重要的限制。施工技术一方面影响坡面位移加速度,另一方面影响隧道衬砌的结构破坏。然而,隧道与不稳定边坡之间的相互作用取决于边坡表面与隧道衬砌图之间的距离(取决于隧道直径(D))以及边坡的地质,地貌,水文和地震环境。这项研究的重点是在冰川卸载环境下,特别是在蠕变环境下,边坡失稳的不同机理,以及影响平行于隧道的隧道结构的破坏。通过数值模拟,研究了施工工艺的影响。隧道的情况也是如此,它或多或少地远离斜坡。对于边坡中最关键的隧道情况,主要考虑了衬砌过程中衬砌过程的延误时间,隧道与边坡位移之间的相互作用以及时间演化。在缓慢的冰川卸荷机制下,斜坡上隧道的不同情况允许设定距斜坡的安全距离。 (C)2015 Elsevier Ltd.保留所有权利。

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