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Failure mechanism of tunnel lining joints and bolts with uneven longitudinal ground settlement

机译:纵向地面沉降不均匀的隧道衬砌连接螺栓破坏机理

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To simulate the failure mechanism of tunnel segmental lining joints and longitudinal bolts under uneven longitudinal ground settlement, a numerical model with 3D lining rings and bolts was established. The loads were divided into two parts: the soil pressure around the tunnel just after construction and a displacement loading according to field measurements of uneven longitudinal ground settlement. The interactions between the lining tenons, bolts and their holes, were determined. The results indicated that the deformation of the circumferential joints consisted of opening and dislocation, but the dislocation was dominant. The progressive failure of bolts and waterproofing measures were also revealed. The evaluation of structural integrity of circumferential joint and the mitigate measures were proposed in order to ensure the operational safety of a metro tunnel.
机译:为了模拟在不均匀纵向地面沉降下隧道分段衬砌接头和纵向螺栓的破坏机理,建立了具有3D衬砌环和螺栓的数值模型。根据现场测量的不均匀纵向地面沉降,荷载分为两部分:刚施工后隧道周围的土压力和位移荷载。确定了衬砌榫,螺栓及其孔之间的相互作用。结果表明,周向接头的变形包括张开和位错,但以位错为主。还揭示了螺栓的逐步失效和防水措施。为了确保地铁隧道的运行安全,提出了对环缝结构完整性的评估和缓解措施。

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