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Cracking effects on underground construction in soft soil: design and construction

机译:软土地基对地下施工的开裂影响:设计与施工

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The Mexico City soft clay deposits are very compressible with low undrained shear strength, and they are subject to subsidence and dynamic amplification phenomena. Because of its low strength, sedimentation process, historical loads and subsidence, these clay deposits show semi vertical deep cracks. During tunneling, or excavation of shafts, these activities generate stress changes on the soil located at the front and around the tunnel or around shafts, so the existing cracks could reopen again. An adverse effect on the stability of the tunnel caused by this reopening of cracks is that it eliminates the necessity confining pressure for proper work in the tunnel lining, especially when it is formed by concrete slabs. This paper presents a historical case where this particular soil cracking was discovered during tunneling and shaft construction in the very soft clay deposits of Mexico City, especially when a water duct channel was located very near or when the tunnel was built under it. Numerical analysis of this phenomenon is presented using the finite element method. The results confirm that soil cracks are the main factor that produces tunnel support instability. In conclusion, some countermeasures are proposed to avoid and/or confront these situations of cracking soil in actual tunneling scenarios.
机译:墨西哥城的软土沉积物具有很强的可压缩性,不排水强度低,并且容易沉陷和动态放大现象。由于其强度低,沉积过程,历史荷载和沉降,这些粘土沉积物显示出半垂直的深裂缝。在隧道掘进或竖井开挖期间,这些活动会在位于前部,隧道周围或竖井周围的土壤上产生应力变化,因此现有的裂缝可能会再次打开。裂缝的重新打开对隧道的稳定性造成不利影响,因为它消除了在隧道衬砌中进行适当工作的必要约束压力,特别是当它是由混凝土板形成时。本文介绍了一个历史案例,其中在墨西哥城非常软的粘土沉积层中的隧道和竖井施工期间发现了这种特殊的土壤开裂,特别是当水管通道非常靠近或在其下方建造隧道时。使用有限元方法对该现象进行了数值分析。结果证实,土壤裂缝是产生隧道支护失稳的主要因素。总之,提出了一些对策,以避免和/或面对在实际隧道施工中开裂土壤的这些情况。

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