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Artificial Ground Freezing to excavate a tunnel in sandy soil. Measurements and back analysis

机译:人工地面冻结以开挖砂质土壤中的隧道。测量和反分析

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The paper is dedicated to the case history of a 13 m wide, 17 m high and 40 to long service tunnel at Toledo Station, previously constructed in a deep open shaft and belonging to the Line 1 of the Napoli underground network. The existing Line 1 has been recently extended with a new stretch consisting of five new stations connected by twin rail tunnels for a total length of about 5 km. Toledo Station main shaft is located by a side of the line and it is connected to the pedestrian platforms by the above mentioned large size service tunnel. The station is situated in the historical center of the city of Napoli, under a deeply urbanized area. In Fig. 1 a longitudinal section of the main shaft of the station and of the large service tunnel with the above and surrounding buildings is sketched. The focus of this paper is on the settlement caused by the tunnel excavation and on the use of the Artificial Ground Freezing (AGF) technique to allow the safe excavation of the large crown of the service tunnel, located about one half in a silty sand layer and one half in yellow tuff, well below the groundwater table. (C) 2015 Elsevier Ltd. All rights reserved.
机译:该文件专门介绍了托莱多站长13 m,高17 m,长40的服务隧道的历史案例,该隧道先前是在一个深的露天竖井中建造的,属于那不勒斯地下网络的1号线。现有的1号线最近进行了新的扩建,包括由双轨隧道连接的5个新车站,全长约5公里。托莱多站的主轴位于线路的一侧,并通过上述大型服务隧道连接到行人平台。该车站位于那不勒斯市的历史中心,在一个深度城市化地区的下方。在图1中,画出了车站主轴和带有以上及周围建筑物的大型服务隧道的纵截面图。本文的重点是隧道开挖引起的沉降,以及使用人工地面冻结(AGF)技术来安全开挖位于粉砂层中约一半的服务隧道的大拱顶还有一半是黄色凝灰岩,远低于地下水位。 (C)2015 Elsevier Ltd.保留所有权利。

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