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Monitoring-Based Assessment of the Construction Influence of Benoto Pile on Adjacent High-Speed Railway Bridge: Case Study

机译:基于监测的班托桩对邻近高速铁路桥梁施工影响的评估 - 案例研究

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With the rapid expansion of the high-speed railway (HSR) network in China, some new lines must be constructed near or across existing HSRs, which will likely have an effect on the operational safety of the HSRs. The existing HSR bridges are highly sensitive to the construction influence of the adjacent piles, and a small displacement of HSR bridges may cause high-speed trains to derail, with disastrous consequences. Consequently, pile construction adjacent to HSRs should be accompanied by an appropriate method to mitigate its detrimental effects on HSRs. The Benoto method is considered to be environmentally friendly and economical because of its fast construction efficiency, low slurry discharge, and no risk of shaft necking. Few studies have been done investigating the influence of Benoto pile construction on adjacent HSR bridges. This study fully explores the construction influence of Benoto piles on neighboring HSR bridges. Specifically, the Nanjing S3 Metro Line project in China serves as the test bed, and a comprehensive field monitoring system was installed to measure soil displacement and stress as well as HSR bridge pier displacement. Several observations can be made on the basis of this study: (1)the variation in soil stress and lateral movements is slight when the distance between the pile and the soil exceeds 18m; (2)the settlement of the surrounding soil is especially obvious when the steel casing is pulled out; and (3)the settlement of soil at the bridge site and the horizontal displacements and inclination angles of existing piers do not exceed the corresponding warning, which indicates the safe operational condition of the adjacent HSR during the construction of Benoto piles. The findings of this work may provide useful guidance for the design and construction of piles adjacent to in-service HSRs.
机译:随着中国高速铁路(HSR)网络的快速扩展,必须在现有的HSR附近或跨现有的HSR中构建一些新的线路,这可能对HSRS的操作安全产生影响。现有的HSR桥梁对相邻桩的施工影响非常敏感,并且HSR桥的小位移可能导致高速列车通过灾难性的后果而脱轨。因此,邻近HSRS的桩基应伴随着适当的方法来减轻其对HSR的不利影响。 Benoto方法被认为是环境友好且经济的,因为其快速的施工效率,低浆料放电,并且没有轴颈的风险。已经研究了很少的研究,调查班诺桩结构对相邻的HSR桥梁的影响。本研究充分探讨了BenoTo桩对邻近HSR桥梁的建设影响。具体而言,中国的南京S3地铁工程用作试验台,并安装了一个综合的现场监控系统来测量土壤位移和压力以及HSR桥墩位移。可以在本研究的基础上进行几种观察结果:(1)当桩和土壤之间的距离超过18米时,土壤应力和横向运动的变化是轻微的; (2)当钢外壳拉出时,周围土壤的沉降尤为明显; (3)桥接地点的土壤沉降和现有码头的水平位移和倾斜角度不超过相应的警告,这表明邻近HSR在班诺桩的构造期间的安全操作状态。这项工作的调查结果可以为邻近役HSRS的桩的设计和构建提供有用的指导。

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