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Study on the Loess Immersion Test of Metro Line 2 in Xi’an, Shaanxi Province, China

机译:陕西省西安地铁2号线黄土浸渍试验研究

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With the implementation of China’s western development and “One Belt, One Road” initiative, there are more and more projects in the collapsibility loess area, and the collapsibility loess problem encountered in the construction is becoming more and more prominent. In this paper, the collapsibility loess of the south extension section of Xi’an Metro Line 2 is investigated, and its collapsibility characteristics are studied through a large-scale site immersion test. The test site was a 15?m diameter circular test pit, which took 35 days for water injection and 60 days for observation after water stopped. The test results showed that the maximum self-weight collapsibility of the soil layer in the test pit is 32?mm, and the deformation amount is 10.05?mm in Q 3 and 9.55?mm in Q 2 . The maximum deformation amount of 32?mm is less than 70?mm in the shallow marker; it may be caused by the paleosol layer as a bridge to provide a support to the overlying soil layer. The shape of the sphere of influence after immersion resembles a trumpet, slightly protruding outwards from the paleosol. The scope of influence between the infiltrated and saturated zones gradually increases with depth, and the saturated zone is generally smaller than the infiltrated zone. The research results of this paper can provide technical support and reference for the construction of Xi’an Metro Line 2 and other related projects in the region.
机译:随着中国西部发展和“一带,一条道路”倡议的实施,在累积黄土地区有越来越多的项目,施工中遇到的脾气暴力问题变得越来越突出。在本文中,研究了西安地铁2号线2的南延伸部分的可折叠黄土,通过大规模浸渍试验研究了其可塌陷特性。试验部位是15米直径的圆形试验坑,用于水注射35天,水停止后60天观察。测试结果表明,在Q 2中,试验坑中的土壤层的最大自重塌陷性为32Ωmm,变形量为10.05Ωmm,Q 2中的9.55Ωmm。在浅标记中,最大变形量为32Ωmm小于70Ωmm;它可能是由古醇层作为桥梁引起的,以向上覆土层提供支撑。浸泡后的影响范围的形状类似于喇叭,略微向外突出古溶胶。渗透和饱和区之间的影响范围逐渐随深增加逐渐增加,饱和区通常小于渗透区。本文的研究结果可以为建造西安地铁第2行和该地区其他相关项目提供技术支持和参考。

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