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Engineering geological investigations of mechanized tunneling in soft ground: A case study, East-West lot of line 7, Tehran Metro, Iran

机译:软土地基上机械化隧道的工程地质调查:以伊朗德黑兰地铁7号线东西段为例

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摘要

The essential requirements of a successful TBM tunneling operation are the complete characterization of the ground and the thorough identification of geological and geotechnical risks. These besides other information are needed for selecting the right TBM and determining its technical specifications for proper soil conditioning and for achieving the optimum TBM performance. This paper concentrates on a methodology for engineering geological investigations and geotechnical ground characterization, which is important for successful application of mechanized tunneling methods in soft alluvial sediments along the East-West section of line 7 of the Tehran Metro. Geotechnical considerations related to tunneling with a soft ground TBM are described in detail, including the site investigation program, project-specific soil grouping system, distribution of soil types, geological-geotechnical risks (oversize grains, clogging, soil abrasiveness, fine grain content, permeability and groundwater fluctuation) and the engineering geological subsurface model. The encountered soil materials have been divided into four categories according to physical characteristics and engineering properties. In this study, the characteristics of the ground and the hydrogeological regime indicate that an EPB-TBM is rather a slurry-TBM. Although the engineering geological conditions of the ground along the tunnel are favorable for EPB-TBM, stickiness of fine-grained soils, abrasiveness of soils, existence of coarse-grained soils with low fine content and groundwater fluctuations are the most important risks for applying mechanized tunneling method in this specific project
机译:成功的TBM隧道作业的基本要求是对地面进行全面表征,并彻底识别地质和岩土工程风险。除其他信息外,还需要这些信息来选择正确的TBM并确定其技术规格,以进行适当的土壤调节并获得最佳的TBM性能。本文着重于工程地质调查和岩土地面表征的方法学,这对于在德黑兰地铁7号线东西段沿线的软冲积物中成功应用机械化隧道方法至关重要。详细介绍了使用软土地基TBM进行隧道施工的岩土技术注意事项,包括现场调查计划,特定项目的土壤分组系统,土壤类型分布,地质岩土技术风险(超大颗粒,堵塞,土壤磨蚀性,细颗粒含量,渗透率和地下水波动)和工程地质地下模型。根据物理特性和工程特性将遇到的土壤物质分为四类。在这项研究中,地面特征和水文地质状况表明,EPB-TBM相当是浆状TBM。尽管沿隧道地面的工程地质条件有利于EPB-TBM,但细化土壤的粘性,土壤的磨蚀性,细度低的粗粒土壤的存在以及地下水的波动是应用机械化技术的最重要风险。此特定项目中的隧道方法

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