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Development of a Substructure Instrumentation System at the New I-10 Twin Span Bridge and Its Use to Investigate the Lateral Behavior of Batter Piles

机译:新的I-10双跨桥下部结构仪表系统的开发及其在调查击打桩横向行为中的应用

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This paper presents the development of the substructure instrumentation system that was installed at a selected pier (M19 East-bound) of the new I-10 Twin Span Bridge for short-term and long-term health monitoring of the bridge, and its use to monitor the behavior of the pier during a lateral load test. The selected pier is supported by 24-36 in. diameter batter pile foundation. The substructure instrumentation for the M19 Eastbound pier includes sister bar strain gauges and MEMS In-Place Inclinometers (IPI) installed inside the foundation piles, triaxial accelerometers to measure lateral movements pile cap, water pressure cells to measure wave forces, tiltmeters, and corrosion meters on the pile cap rebar. A unique lateral load test was designed and conducted to investigate the lateral behavior of the pier and to assess the validity of the analysis method used to design the batter pile foundations using the FB-MultiPier software. Two high strength steel strand tendons were used to impose about 1900 kips of lateral load. The horizontal movements of the pier caps and bents were monitored using an automated survey station with prisms. The strains and deformations within the foundation piles were measured using the strain gauges and IPI inclinometers. This paper will discuss the substructure instrumentation plan and the novel approaches to preparation and design of lateral load testing of batter pile group foundation. The results of lateral load tests will be presented, discussed and compared with the predicted values using FB-MultiPier software. The soils' p-y curves were also back-calculated and presented.
机译:本文介绍了安装在新的I-10双跨桥的选定墩(向东M19)处的子结构检测系统的开发,该系统可用于桥梁的短期和长期健康监控,以及将其用于在横向载荷测试过程中监视墩的行为。选定的墩由直径为24-36英寸的面糊桩基础支撑。 M19东行桥墩的子结构仪器包括安装在基础桩内部的姐妹杆应变仪和MEMS现场倾角仪(IPI),用于测量桩帽横向运动的三轴加速度计,用于测量波浪力的水压传感器,倾斜仪和腐蚀仪在桩帽钢筋上。设计并进行了独特的侧向载荷测试,以研究墩的侧向行为,并评估使用FB-MultiPier软件设计面糊桩基础的分析方法的有效性。使用两条高强度钢绞线腱施加约1900 kips的侧向载荷。使用带有棱镜的自动测量站监控墩台和弯头的水平运动。使用应变仪和IPI倾角仪测量了基桩内的应变和变形。本文将讨论下部结构检测计划,以及面糊桩基础的横向荷载测试准备和设计的新方法。将使用FB-MultiPier软件介绍,讨论横向载荷测试的结果并将其与预测值进行比较。土壤的p-y曲线也被反算并给出。

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