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Monitoring and analysis of PHC pipe piles under hydraulic jacking using FBG sensing technology

机译:基于FBG传感技术的水压顶进PHC管桩的监测与分析。

摘要

Pretensioned high-strength concrete (PHC) pipe piles have been widely used for geotechnical engineering such as foundation engineering, slope engineering, highway engineering. To study the performance of a PHC pipe pile under hydraulic jacking, the monitoring of the strain profile along the PHC pipe pile under hydraulic jacking was carried out using FBG sensing technology. In this study, a PHC pipe pile was instrumented with two series of fiber Bragg grating (FBG) sensors along pile axial direction and was then installed in the field using a hydraulic jacking method. To monitor the variation of strains along a PHC pile, two series of eight FBG strain sensors with different peak wavelengths were mounted on opposite sides of the pile with one meter spacing. In addition, based on the pile theory, both the axial force of the pile and average shear stress on the pile surface are calculated using the measured axial strains. It is found that there were significant residual strains in the piles after installation when hydraulic force was removed. This study confirms that the fiber Bragg grating (FBG) sensors are suitable for monitoring strain distribution along a pile under hydraulic jacking.
机译:预应力高强度混凝土(PHC)管桩已广泛用于岩土工程,例如基础工程,边坡工程,公路工程。为了研究液压顶进下的PHC管桩的性能,使用FBG传感技术对液压顶进下的PHC管桩沿应变进行了监测。在这项研究中,在PHC管桩上沿桩轴向安装了两个系列的光纤布拉格光栅(FBG)传感器,然后使用液压顶升法将其安装在现场。为了监视沿PHC桩的应变变化,将两个具有八个不同峰值波长的FBG应变传感器系列安装在桩的相对侧,间隔为一米。另外,基于桩理论,使用测得的轴向应变计算桩的轴向力和桩表面的平均剪切应力。发现在去除水力后,安装后桩中存在明显的残余应变。这项研究证实,光纤布拉格光栅(FBG)传感器适用于监测液压顶升作用下沿桩的应变分布。

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