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Metro Rome Line 'C': Artificial Ground Freezing Application for the Underpass of the Existing Metro Station San Giovanni, Line 'A'

机译:罗马地铁“ C”线:现有地铁“ A”线圣乔瓦尼地铁站地下通道的人工地面冻结应用

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The new metro line "C" entails the construction and rehabilitation of 24 stations and 21,5 km of metro line, 13 of which carried out underground; the new metro line will improve the transportation system of a congested city such as Rome. The new line "C" of San Giovanni metro station will be constructed adjacent to the existing line "A" of San Giovanni station; the new metro line "C" is deeper than line "A" and will underpass the existing station. The underpass project envisages an Artificial Ground Freezing in order to excavate two new tunnels, while keeping trains running in the safest possible condition. In order to allow trains to regularly run to and from the existing station's line "A", a temporary structure for rail support, during excavation of the under-crossing tunnels, was installed and a real-time monitoring system was devised in order to control both soil temperature during freezing activities and the existing station's behavior. The monitoring system has been one of the key to the success of the project. The excavation of tunnels under the water table, with a hydraulic head of over 10 m in not homogeneous soils having different mechanical properties and permeability and below existing sensitive structures, involves special ground freezing sequences and methods, as well as peculiar drilling systems and operations, such as TDDT (Trevi Directional Drilling Technology).
机译:新的地铁“ C”线需要建设和修复24个车站和21.5公里的地铁线,其中13个是在地下进行的;新的地铁线将改善罗马等拥挤城市的交通系统。 San Giovanni地铁站的新“ C”线将与San Giovanni站的现有“ A”线相邻建造;新的地铁“ C”线比“ A”线更深,并且将越过现有的车站。地下通道项目设想了人为冻结地面,以开挖两条新隧道,同时使火车保持在最安全的状态下运行。为了使火车定期往返于现有车站的“ A”线,在穿越隧道的开挖过程中,安装了临时的铁路支撑结构,并设计了实时监控系统以控制冻结活动期间的土壤温度和现有站点的行为。监控系统一直是该项目成功的关键之一。在地下水位低于10 m的隧道中开挖隧道,要在机械特性和渗透性不同的不均质土壤中并在现有敏感结构以下的情况下进行水力压裂,涉及特殊的地面冻结程序和方法,以及特殊的钻探系统和操作,例如TDDT(Trevi定向钻井技术)。

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