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A special support design for a large-span tunnel crossing an active fault (T9 Tunnel, Ankara-Sivas High-Speed Railway Project, Turkey)

机译:一种特殊的支持设计,用于大跨度隧道穿过积极故障(T9隧道,Ankara-Sivas高速铁路项目,土耳其)

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摘要

Throughout construction process of a tunnel in an active tectonic region, it may be impossible to avoid active faults. Active faults create two adverse effects on the tunnels which are sudden fault displacement and weak ground conditions in fault zone. If a tunnel crossed by an active fault, the tunnel might be damaged by sudden movement of the fault. However, the main goal is to localize this damage without complete loss of tunnel. In this study, a special design developed for a wide span tunnel cut by an active fault is presented and the performance of the design is verified by numerical analyses. T9 tunnel was constructed within the scope of Ankara-Sivas High-Speed Train Project, Turkey, and the special design at the intersection of T9 tunnel with the Akdagmadeni active fault is the main subject of this study. T9 tunnel predominantly passes through agglomerate, basalt, marble and gneiss units and the tunnel route crosses the Akdagmadeni fault at around Km: 327+915. At this location, major deformations occurred in the tunnel and the tunnel excavation had to stop for a certain period. After the re-design phase, a special tunnel support system for this location were developed and proposed design was analyzed with numerical analyses. In addition, the possible displacement of the Akdagmadeni fault was estimated and the inner lining was re-designed considering the seismic parameters (i.e. peak ground acceleration and maximum displacement during a large earthquake). Consequently, in the present study, the effects of active fault crossing on the tunnel were explained and a special inner lining design was proposed to localize the possible damages, which are originated from the sudden displacement of the active fault.
机译:在积极构造区域中的隧道的整个施工过程中,可能是不可能避免积极的故障。主动故障对隧道产生两个不利影响,这是故障位移和断层区域中的弱地条件。如果隧道通过主动故障交叉,则隧道可能因故障突然移动而损坏。但是,主要目标是在没有完全隧道丢失的情况下本地化这种损坏。在这项研究中,提出了一种由有源故障切割的宽跨度隧道开发的特殊设计,并通过数值分析验证了设计的性能。 T9隧道是在Ankara-Sivas高速列车项目,土耳其的范围内构建的,以及T9隧道交叉点的特殊设计与Akdagmadeni积极故障是本研究的主要主题。 T9隧道主要通过附聚,玄武岩,大理石和球茎单位,隧道路线在近距处交叉Akdagmadeni故障:327 + 915。在此位置,隧道中发生的主要变形,隧道挖掘必须停止一段时间。在重新设计阶段之后,开发了一种用于该地点的特殊隧道支撑系统,并通过数值分析分析了所提出的设计。此外,估计了Akdagmadeni故障的可能位移,并且考虑了地震参数来重新设计内衬(即大地震期间的最大位移)。因此,在本研究中,活动断层穿越在隧道的影响进行了解释,并提出了一种特殊的内衬设计本地化的可能的损害,这是源于活断层的位移突然。

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