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Seismic energy response and damage evolution of tunnel lining structures

机译:隧道衬砌结构的地震能量响应与损伤演化

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摘要

Although tunnels typically experience a lower rate of damage than surface structures during an earthquake, some tunnels have experienced considerable damage during recent strong earthquakes. Hence, seismic response analysis of tunnels located in high-intensity earthquake zones is an important issue for tunnel engineers. In this study, a three-dimensional numerical model of a tunnel was developed to analyse the dynamic energy response and damage evolution of tunnel linings under the influence of seismic waves. A nonlinear concrete damage model for the tunnel lining and a special infinite element boundary technique were employed to investigate the damage pattern and damage evolution process for tunnel lining structures. In addition, the concept of seismic layer is proposed on the basis of the flexibility ratio (a measure of the flexural stiffness of a tunnel relative to the surrounding ground) as a countermeasure against seismic damage. Subsequently, numerical simulation results are compared with field observation data for tunnels damaged during the Wenchuan earthquake. The crack patterns revealed in the damage analysis of the numerical model have also been observed in the field investigation of several mountain tunnels damaged during the Wenchuan earthquake. The similarities between the damage patterns of the lining structures in the field observation and in the damage analysis provide additional evidence of the considerable influence of seismic waves on the damage patterns.
机译:尽管隧道通常在地震期间经历较低的损坏速度,但是在最近的强烈地震中,一些隧道造成了相当大的伤害。因此,位于高强度地震区的隧道的地震反应分析是隧道工程师的重要问题。在这项研究中,开发了一种隧道的三维数值模型,以分析地震波的影响下隧道衬里的动态能量响应和损伤演化。采用了隧道衬砌的非线性混凝土损伤模型和特殊的无限元边界技术来研究隧道衬砌结构的损伤模式和损伤进化过程。另外,基于灵活比(相对于周围地面的隧道弯曲刚度的量度)来提出地震层的概念作为防止地震损伤的对策。随后,将数值模拟结果与在汶川地震期间损坏的隧道的场观察数据进行了比较。在汶川地震期间损坏的几座山隧道的实地调查,也观察到在数值模型的损伤分析中显示的裂缝图案。场观测和损伤分析中衬里结构的损伤模式之间的相似性提供了额外的震动对损伤模式影响的额外影响。

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