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2D numerical investigation of segmental tunnel lining under seismic loading

机译:地震作用下分段隧道衬砌的二维数值研究

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Segmental tunnel linings are now often used for seismic areas. However, the influence of segment joints on the segmental lining behavior under seismic loading has not been thoroughly considered in the literature. This paper presents a numerical study, which has been performed under seismic circumstance, to investigate the factors that affect segmental tunnel lining behavior. Analyses have been carried out using a two-dimensional finite difference element model. The proposed model allows studying the effect of the rotational joint stiffness, radial stiffness and the axial stiffness of the longitudinal joints. The numerical results show that a segmental lining can perform better than a continuous lining during earthquake. It has been seen that the influence of the joint distribution, the joint rotational stiffness, the joint axial stiffness, Young's modulus of the ground surrounding the tunnel, the lateral earth pressure factor and the maximum shear strain should not be neglected. Some important differences of the segmental tunnel lining behavior under static and seismic conditions have been highlighted. (C) 2015 Elsevier Ltd. All rights reserved.
机译:现在,分段隧道衬砌经常用于地震地区。但是,文献中尚未充分考虑分段节理对地震荷载作用下分段衬砌性能的影响。本文介绍了在地震情况下进行的数值研究,以研究影响分段隧道衬砌行为的因素。已经使用二维有限差分元模型进行了分析。所提出的模型允许研究旋转接头刚度,径向刚度和纵向接头的轴向刚度的影响。数值结果表明,在地震过程中,分段衬砌的性能优于连续衬砌。可以看出,接缝分布,接缝旋转刚度,接缝轴向刚度,隧道周围地面的杨氏模量,侧向土压力因子和最大剪切应变的影响都不应忽略。突出了在静态和地震条件下分段隧道衬砌行为的一些重要差异。 (C)2015 Elsevier Ltd.保留所有权利。

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