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Zoned and staged construction of an underground complex in Shanghai soft clay

机译:上海软土地下综合体的分区和分期建设

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Construction of an underground complex in congested urban areas calls for excavation of a group of foundation pits, referred to as a pit complex, which are usually surrounded by existing facilities. In such circumstances, the safety of the pit complex and facilities during the construction are of great concern. This paper presents a case of an underground complex construction in Shanghai soft clay. A pit complex composed of two deep excavations was excavated for a Comprehensive Transport Hub (CTH) and a commercial retail area and pedestrian concourse known as South Square (SS), which were connected to an operating metro station and a railway station. During the excavation, potential deformation of metro tracks and railway tracks were expected due to extensive soil unloading. To safeguard the railway and the subway, a zoned and staged construction technology was proposed, in which several temporary partition walls were constructed in addition to necessary supporting structures, to allow the large-scale deep excavations to be divided into several independent small-scale excavations. This paper discusses the rational construction sequence of these excavations as well as reinforcement measures in detail. The construction technology was examined by extensive field data. It is found that the maximum horizontal displacement of diaphragm walls ranged between 0.05% H-e and 0.4% H-e, where He is the excavation depth. The vertical displacements of the railway tracks were well controlled, whereas the metro tracks heaved significantly due to unloading effect.
机译:在人口稠密的城市地区建造地下综合设施需要挖掘一组基坑,这些基坑通常被现有设施包围。在这种情况下,施工过程中基坑综合设施和设施的安全受到极大关注。本文以上海某软黏土的地下复杂建筑为例。为综合运输枢纽(CTH)和商业零售区以及称为南广场(SS)的步行者广场开挖了由两个深基坑组成的基坑群,它们与运营中的地铁站和火车站相连。在开挖期间,由于大量的土壤卸料,预计地铁轨道和铁路轨道可能发生变形。为了保护铁路和地铁,提出了一种分段分阶段的施工技术,在该技术中,除了必要的支撑结构外,还建造了几个临时的隔墙,以便将大型深基坑分为几个独立的小型基坑。 。本文详细讨论了这些开挖的合理施工顺序以及加固措施。施工技术已通过大量现场数据进行了检验。发现隔膜墙的最大水平位移在0.05%H-e和0.4%H-e之间,其中He是开挖深度。铁路轨道的垂直位移得到了很好的控制,而地铁轨道由于卸载效应而明显地沉重。

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