在大巴黎快线工程东北段框架内,通过喷射注浆和喷射来控制水力条件:方法和质量控制顺序

T. Nguyen, Pascal Chalivat, Alexis Liance, Jonathan Chazelle
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引用次数: 0

摘要

大巴黎快线项目16号线1号线主隧道从2019年开始使用隧道掘进机(TBM)施工。它们完全是在地下水位以下20÷30米的渗透性地层(细/粉质砂、泥灰岩和石灰石)中钻探的。在隧道掘进机的到达/出发段,以及在主隧道与维修或安全井之间的连接通道的开挖工作中,高压地下水流入是一个主要问题。16号线1号线位于人口密集的城区,土建工程要求尽量减少地下水的抽取和来水;目的是避免现有设施的过度沉降和富石膏地层的溶解再活化过程。为了最大限度地降低这些风险,采用了不同类型的地基改善技术(喷射注浆和水泥混合料注入),其中细砂土采用喷射注浆,裂隙灰岩采用水泥混合料注入。此外,这两种改进技术已在同一地点结合起来。从岩土力学的角度来看,波尚的沙子属于粗粒土(在统一土壤分类系统中为60%的SM和40%的ML),而圣万的泥灰岩和深泥灰岩属于裂隙软至中硬的钙质岩石。介绍了土工条件、地基改善方法及施工过程中的质量控制。控制顺序是先垂直钻孔,然后水平钻孔。开挖后的控制工作方法(水平控制)可以确认处理块的质量,特别是处理块与连续墙之间的粘接。
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Ground improvement by jet grouting and injection to control hydraulic conditions in the frame of Grand Paris Express Project, North-East section: methodology and quality control sequence
The main tunnels of Line 16 Lot1 of the Grand Paris Express project are underway since 2019 using tunnel boring machines (TBM). They are drilled entirely in permeable strata (fine/silty sands, marls, and limestones) at a depth of 20÷30 m below the groundwater level. Groundwater inflow with high pressure is a major issue at the arrival/departure sections of the TBMs as well as during the excavation work of connection galleries between the main tunnels and maintenance or security shafts. Line 16 Lot1 is located under dense urban areas with the requirement of minimizing the drawdown of the groundwater and water inflow in civil engineering works; the purpose is to avoid excessive settlements on existing facilities and dissolution reactivation process of gypsum-rich strata. In order to minimize these risks, different types of ground improvement technics (jet grouting and cement mixture injection) have been applied, where jet grouting is used in fine sandy soil and cement mixture injection used in fissured marly-limestone. In addition, both technics of improvement have been associated on the same site. From a geotechnical point of view, the sands of Beauchamp are classified as coarse-grained soils (60% SM and 40% ML in the Unified soil Classification System ) and Marly-limestone of Saint-Ouen and deep Marls as fissured soft to medium-hard calcareous rock. This paper presents the geotechnical conditions, the ground improvement methodology and quality control during construction. The control sequence is performed by vertical and then horizontal drilling holes. The method of control work after excavation (horizontal control) allows to confirm the quality of the treatment blocks and specifically the bonding between the treatment block and the diaphragm wall.
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