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首页> 外文期刊>KSCE journal of civil engineering >Seismic Performance of a Subway Station-Tunnel Junction Structure: A Shaking Table Investigation and Numerical Analysis
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Seismic Performance of a Subway Station-Tunnel Junction Structure: A Shaking Table Investigation and Numerical Analysis

机译:地铁站隧道结结构的地震性能:摇动台调查和数值分析

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摘要

Damage cases show that during earthquakes, the sharp stiffness mutation of subway station-tunnel junction structures can lead to dislocations at the connections. To address this, shaking table tests were conducted followed by numerical simulations of a typical junction structure with rigid connections. The modeling method was verified based on the test results. Furthermore, numerical models of junction structures with rigid and flexible connections, single stations, and single tunnels were built, and deformation modes and stress distributions were comparatively analyzed. Combining the experimental and numerical results, it is found that there exists an intensive deformation inconsistency between the stations and the tunnels responsible for the junction structures' dislocation failures. The station operates in both racking and distortion deformation modes when the tunnel undergoes ovaling deformation. The tunnel bends relative to the end wall at the connection. The junction structure with rigid connections is most at risk at the point located at the tunnel section connected to the end wall and near the bottom plate-sidewall joint. With flexible connections, the tunnels integrally translate relative to the end wall, and the stress response of the end wall openings can be larger than those with rigid connections.
机译:损伤案例表明,地震期间,地铁站隧道结结构的尖锐刚度突变可以导致连接处的位错。为了解决这个问题,进行摇动台测试,然后进行典型连接结构的数值模拟,具有刚性连接。基于测试结果验证了建模方法。此外,构建了具有刚性和柔性连接,单个站和单个隧道的结结构的数值模型,并且相对分析了变形模式和应力分布。结合实验性和数值结果,发现站立之间存在密集的变形不一致,负责结结构的脱位失败的隧道。当隧道经历椭圆形变形时,该站在机架和失真变形模式中运行。隧道相对于连接端壁弯曲。具有刚性连接的结结构在位于连接到端壁的隧道部分和底板 - 侧壁接头附近的点处的最大风险。利用柔性连接,隧道相对于端壁一体地平移,并且端壁开口的应力响应可以大于具有刚性连接的应力响应。

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