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MICROPILE-SUPPORTED WALL TO RESIST LATERAL DEFLECTION OF EXISTING RAILROAD BRIDGE ABUTMENT

机译:微型支撑墙抵抗现有铁路桥桥的横向偏转

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As part of the PHX Sky Train? project at Phoenix Sky Harbor International Airport in Phoenix, Arizona, the existing traffic lanes at the 44th Street underpass below the Union Pacific Railroad (UPRR) Bridge will be shifted to accommodate the people mover guideway. The proposed reconfiguration and reconstruction of 44th Street required the utilization of micropiles and permeation grouting to resist the lateral forces induced by cutting into the slope below the existing bridge abutment footing. This paper discusses the evaluation of the existing bridge abutment, including analysis of the original foundation system, and design, installation and testing of a new micropile-supported retaining wall to support the cut slope below the existing bridge abutment foundation. A monitoring program was implemented during construction to evaluate the short- and long-term performance of the bridge abutment. Instrumentation included survey monitoring points, inclinometers, tiltmeters and crack gauges. A micropile load testing program was conducted to verify design assumptions concerning micropile axial and lateral loading. Numerical analyses (using PLAXIS software) were performed to predict the short- and long-term behavior of both the abutment wall and the bridge foundations. Movement data collected from the monitoring program indicate that the wall and bridge foundations are performing satisfactorily and within the general bounds of predicted movements. The results from the numerical modeling using PLAXIS software showed that the proposed solution is deemed adequate to provide the needed global stability with an acceptable factor of safety, along with acceptable deformation.
机译:作为PHX天空火车的一部分?凤凰城市凤凰城市港口国际机场的项目,亚利桑那州的第44街地下通道的现有交通车道,联盟太平洋铁路(UPRR)大桥将转移以适应人民动机指南。所提出的44街的重新配置和重建需要利用微量沉积物和渗透灌浆,以抵抗通过切入现有桥桥脚下的斜面而引起的横向力。本文讨论了现有的桥梁基台的评估,包括原始基础系统的分析,以及设计,安装和测试新的微潜水支撑的挡土墙,以支撑现有桥梁基础下方的切割斜率。在施工期间实施了监测计划,以评估桥接基站的短期和长期性能。仪器包括测量监测点,倾角系,倾斜计和裂缝仪表。进行了微型载荷测试程序,以验证有关微潜水轴向和横向载荷的设计假设。进行数值分析(使用PLAXIS软件)以预测邻接墙和桥梁基础的短期和长期行为。从监测程序收集的移动数据表明墙壁和桥梁基础令人满意地表现出令人满意的,并且在预测运动的一般范围内。使用PLAXIS软件的数值建模的结果表明,所提出的解决方案被认为是充分的,以提供所需的全局稳定性,具有可接受的安全系数,以及可接受的变形。

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