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Numerical simulation of the uplift behavior of shield tunnel during construction stage

机译:盾构隧道施工期抬升特性的数值模拟

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In this study, a new 3D numerical model that considers the circumferential joint, longitudinal bolt, grout pressure, jacking force and the constraint of shield on the linings is developed to derive deeper insights into the lining uplift behavior during shield tunneling. The numerical analysis is conducted using ANSYS, which is verified by a case history in soft soils. Revealed by both the measurements and calculation results, it is found that the lining uplift due to shield tunneling in soft soils can be divided into three stages: dislocation, stretch and steady deformation stages, respectively. In the dislocation stage, the lining deformation attributes principally to the dislocation deformation between neighboring linings. In the stretch stage, the lining deformation is mainly caused by the stretch deformation of circumferential joints. The major uplift is caused during dislocation stage. Thereafter, the impacts of shield-driving parameters including gradient of grout pressure, jacking force and pre-tightening force of longitudinal bolts on the uplift behavior are investigated by a series of parametric studies. The jacking force during segment preparation and assembly shows the most significant impact on the uplift of the tunnel, while the pre-tightening force of longitudinal bolts shows negligible impact. Finally, the control criterion for lining uplift related to the allowable dislocation and opening angle of circumferential joints is proposed. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:在这项研究中,开发了一个新的3D数值模型,该模型考虑了周向接缝,纵向螺栓,灌浆压力,顶进力以及盾构在衬砌上的约束,从而可以更深入地了解盾构掘进过程中的衬砌抬升行为。数值分析是使用ANSYS进行的,并通过在软土中的案例历史进行了验证。通过测量和计算结果的揭示,发现盾构在软土中的开挖可将衬砌隆起分为三个阶段:错位,拉伸和稳定变形阶段。在位错阶段,衬里变形主要归因于相邻衬里之间的位错变形。在拉伸阶段,衬里变形主要是由周向接头的拉伸变形引起的。大隆起是在脱位阶段引起的。此后,通过一系列参数研究,研究了盾构驱动参数,包括灌浆压力梯度,顶推螺栓力和纵向螺栓的预紧力,对提升行为的影响。节段准备和组装过程中的顶升力对隧道的抬升影响最大,而纵向螺栓的预紧力则影响可忽略不计。最后,提出了衬砌隆起的控制准则,该准则与环缝的允许错位和张开角度有关。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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