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Field Monitoring of the Deformation and Internal Forces of the Surrounding Rock and Support Structures in the Construction of a Super-Span High-Speed Railway Tunnel—A Case Study

机译:田间监测周围岩石的变形和内部力及其在超跨度高速铁路隧道建设中的支撑结构 - 以案例研究为例

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摘要

A super-span tunnel that has the characteristics of a large excavation area, a small high-span ratio and a significant spatial effect exhibits a complex mechanical response during the excavation process. In this paper, taking the Badaling Great Wall station in Beijing, China as the engineering background, a case study of field monitoring a super-span tunnel has been presented. A typical monitoring section was selected in the super-span transition section of the tunnel and the deformation and forces of both the surrounding rock and the support structures were systematically monitored. The dynamic evolution and the spatial distribution characteristics of the monitoring data, including the internal displacement of the surrounding rock, the tunnel displacement, the contact pressure between the surrounding rock and the primary supports, the contact pressure between the primary and secondary supports, the axial forces in the bolts and cables, the internal forces in both the steel arches and the secondary supports and the internal stresses of the surrounding rock, were analyzed. The results of the monitoring and the analyses have shown that the deformation and the forces acting on both the surrounding rock and the tunnel’s lining are directly related to the construction procedures, the geological conditions and the locations in the super-span tunnel. According to the results, a few suggestions to improve the construction of the tunnel have been proposed.
机译:具有大的挖掘区域的特性,小的高跨度比和显着的空间效果的超跨度隧道在挖掘过程中表现出复杂的机械响应。在本文中,在中国北京的八达岭长城站作为工程背景,提出了对超跨隧道的现场监测的案例研究。在隧道的超级跨度过渡部分中选择了典型的监测部分,系统地监测周围岩石和支撑结构的变形和力。动态演化和监测数据的空间分布特性,包括周围岩石的内部位移,隧道位移,周围岩石和初级支撑之间的接触压力,初级和次级支撑之间的接触压力,轴向分析了螺栓和电缆中的力,分析了钢拱的内部力和周围岩石的次要支撑和围岩的内部应力。监测结果和分析结果表明,作用在周围岩石和隧道衬里上的变形和力与超跨度隧道中的施工程序,地质条件和位置直接相关。根据结果​​,提出了提出改善隧道建设的一些建议。

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