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Monitoring a 28.5 m High Anchored Pile Wall in Gravel Using Various Methods

机译:使用多种方法监测砾石中28.5 m高的锚桩墙

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摘要

Horizontal displacements of a multiple-anchor pile wall in a 28.5 m deep excavation using the top–down construction method have been monitored using optical fiber (Brillouin optical time-domain reflectometry (BOTDR)), strain gauges, inclinometers, and a topographic survey. This work presents a comparison between these different techniques to measure horizontal displacements in the pile at several stages of the soil excavation process. It was observed that displacements can be separated into two components: Rigid body motion and pile flexural deformation. Measurements using optical fiber and inclinometers are considered the most adequate and easy to install. A numerical model allows us to evaluate the influence of earth pressure on the estimated horizontal displacements. It is shown that using soil pressure on the wall given by p = 0.65Kaγh, on a simplified modeled wall, provides a close deduction of horizontal displacements compared to observed values on the field.
机译:使用光纤(布里渊光学时域反射仪(BOTDR)),应变仪,倾角仪和地形测量仪,对使用自上而下的施工方法在28.5 m深的开挖中的多锚桩墙的水平位移进行了监测。这项工作提出了在土壤开挖过程的几个阶段中测量桩中水平位移的这些不同技术之间的比较。据观察,位移可以分为两个部分:刚体运动和桩的挠曲变形。使用光纤和测斜仪进行的测量被认为是最合适且易于安装的。数值模型使我们能够评估土压力对估计的水平位移的影响。结果表明,在简化建模的墙体上使用p =0.65Kaγh给出的墙体土压力,与现场观测值相比,可以近似地推导出水平位移。

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