首页> 外文会议>Conference on Advances in Geotechnical Engineering: The Skempton Conference vol.2; 20040329-31; London(GB) >Trial excavation for cut and cover tunnel construction in glacial till - a case study from Dublin
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Trial excavation for cut and cover tunnel construction in glacial till - a case study from Dublin

机译:冰川耕作开挖掩盖隧道的试验开挖-以都柏林为例。

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The Dublin Port Tunnel links the M50 "C" ring road around Dublin to the port area. The central part of the project comprises twin bored tubes, with shallower lengths of cut and cover tunnels at either end. Advantage was taken of the shallower alignment and competent ground towards the north to address tight land-take constraints, using steep 12m high slopes, with diverted Motorway traffic at the crest. The basic design required soil nails over the full slope height. However Dublin Boulder Clay experience suggested an observational approach whereby nails could be omitted unless required by adverse geology or unsatisfactory monitored performance. To substantiate this novel design, a trial excavation was undertaken with detailed logging, fabric studies, sampling and laboratory testing. The 11m deep, 75°cut was surcharged to model traffic loading and instrumented to measure movements and pore pressures. No nails were installed and different face protection types were used. Finite element analysis was employed in the design of the trial cut, associated lab testing and field instrumentation. Back-analyses of observed behaviour allowed careful calibration of FE models for use in the main excavation design. The paper describes the planning, design and execution of the trial; summarises monitoring results; discusses lessons learned on construction methods, necessary modifications to the numerical model, and the methodology for successful monitoring.
机译:都柏林港口隧道将都柏林周围的M50“ C”环形公路连接至港口地区。该项目的中心部分包​​括双孔管,两端的切割和覆盖隧道长度较浅。利用了较浅的路线和朝北的称职地面,利用陡峭的12m高坡度并在山顶处改变了高速公路的通行能力,解决了严格的土地占用限制。基本设计要求在整个斜坡高度上都安装土钉。然而,都柏林博尔德粘土公司的经验建议采用一种观察性方法,除非由于不利的地质条件或监测性能不理想而需要,否则可以省去钉子。为了证实这种新颖的设计,进行了一次开挖试验,包括详细的伐木,织物研究,采样和实验室测试。深度为11m,75°的切口需要附加费,以模拟交通负荷,并用于测量运动和孔隙压力。没有安装钉子,并且使用了不同的面部保护类型。试切,相关实验室测试和现场仪器设计中采用了有限元分析。对观察到的行为进行回溯分析,可以对主要挖掘设计中使用的有限元模型进行仔细校准。该文件描述了试验的计划,设计和执行;总结监测结果;讨论了有关构造方法,对数值模型的必要修改以及成功进行监视的方法方面的经验教训。

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