Restoration of the bearing capacity of the pile foundation of the bridge to ensure its operational reliability

Vladimir Afanasev, A. Harchenko, Danil Idiatulin, Aidar Minmullin, Regina Shaykhutdinova
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Abstract

The article presents a method for restoring the bearing capacity of pile foundations as one of the components of comprehensive monitoring of transport infrastructure facilities. It gives examples of systems for the technical condition monitoring of bridges, and outlines innovative approaches to strength monitoring. Using one of the piers of a railway bridge as an example, the latest technologies of survey and calculation of the pile foundation are applied. The testing laboratory performed work on the survey of the piles structure after completing the pile foundation construction for the bridge piers. The concrete continuity of piles and the presence of void pockets and decompaction in the concrete were to be determined. The bearing capacity of the pile footing was calculated and the design loads were determined. The study provides design models of the pile foundation, external loads, and the method statement. Hydrological conditions corresponded to those referred to in design documentation being part of the report on geological engineering surveys. The analysis of calculations revealed an increase in the sectional strength utilization rate in the “hollow” zone of the pile, taking into account the construction and further operation of the bridge, calling for special measures to strengthen the pile foundation. Then, the measures to restore the bearing capacity of the pile foundation and a brief description of the drill and inject technology are given. Upon completion of the drill and inject operations, the bearing capacity of the pile footing was calculated taking into account the stabilization of the soil mass and the pile strengthening. At the end of the study, the conclusion about the feasibility of the measures taken and on securing the bearing capacity and operational reliability of the bridge foundation piles is made.
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恢复桥梁桩基承载力,保证其运行可靠性
本文提出了一种恢复桩基承载力的方法,作为交通基础设施综合监测的一个组成部分。给出了桥梁技术状态监测系统的实例,并概述了强度监测的创新方法。以某铁路桥某桥墩为例,介绍了桩基测量计算的最新技术。测试实验室在完成桥墩桩基施工后,进行了桩结构测量工作。要确定桩的混凝土连续性以及混凝土中是否存在空隙和分解。计算了桩基承载力,确定了设计荷载。给出了桩基础的设计模型、外荷载及方法说明。水文条件与地质工程调查报告设计文件中所述水文条件相对应。计算分析表明,考虑到桥梁的施工和以后的运营,桩基“空心”区截面强度利用率有所提高,需要采取特殊的加固措施。然后,对恢复桩基承载力的措施和钻孔灌注法技术进行了简要介绍。钻注作业完成后,考虑土体稳定和桩身加固,计算桩基础承载力。在研究的最后,对所采取的措施的可行性以及保证桥梁基础桩的承载力和运行可靠性做出了结论。
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