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Tunneling in fault zones, Tuzla tunnel, Turkey

机译:土耳其图兹拉隧道断层带隧道

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摘要

The Tuzla tunnel was excavated mainly in fault zones, shale and limestones using the conventional and shielded tunnel boring machine (TBM) methods. Fault zones in shales are brecciated and clayey, while those in limestones are of blocky structure. The rock mass rating, rock mass classification and support systems proposed for fault zones in Tuzla tunnel are insufficient for explaining the deformation and failure mechanisms encountered in the tunnel. In addition, dyke exposures, the fault-collapsed karstic system and groundwater also caused some problems during the excavation of the tunnel. The most important event relevant to fault zones in the Tuzla tunnel was the selection of a TBM. Before the excavation of the tunnel, the rock was determined to be of poor to fair quality. Therefore, tunneling with a TBM in rock of poor to fair quality was thought to be economic. However, during the excavation, fault zones with poor to very poor rock characteristics were encountered along an area comprising 70% of the tunnel length. The fault zones caused jamming of the TBM cutter and deviation from the tunnel alignment. In this respect, tunneling with the TBM method was quite problematic. Geotechnical problems encountered in the fault zones required special measures to be taken in the tunnel. With these measures, excavation and supporting of the tunnel were completed successfully by transforming heterogeneous conditions in the fault zones to homogeneous conditions in the tunnel impact area.
机译:Tuzla隧道主要是使用常规和带屏蔽的隧道掘进机(TBM)方法在断层带,页岩和石灰岩中开挖的。页岩中的断层带为角砾和黏土,而石灰岩中的断层带为块状结构。针对图兹拉隧道断层带提出的岩体等级,岩体分类和支撑系统不足以解释隧道中遇到的变形和破坏机制。此外,堤坝暴露,断层塌陷的岩溶系统和地下水在隧道开挖中也引起了一些问题。与Tuzla隧道断层带相关的最重要事件是选择TBM。在开挖隧道之前,已确定该岩石质量差劣至中等。因此,在不良至中等质量的岩石中用TBM掘进被认为是经济的。但是,在开挖过程中,沿着包括隧道长度70%的区域遇到了岩石特性差到极差的断层带。断层带导致TBM刀具卡死并偏离了隧道路线。在这方面,采用TBM方法进行隧道施工存在很大问题。在断层带遇到的岩土工程问题需要在隧道中采取特殊措施。通过这些措施,通过将断层带的非均质条件转换为隧道冲击区的均质条件,成功完成了隧道的开挖和支护。

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