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Experimental Study on Deformation Behavior of Shield Tunnel Subjected to Riverbed Scour Based on DOFS

机译:基于自由度的河床冲刷盾构隧道变形行为试验研究

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摘要

Exploring the deformation behavior of shield tunnels is significant to design and safety assessment for shield tunnel structures. This paper carries out a reduced scale model test of shield tunnel subjected to riverbed scour for the first time. A new loading device system is designed to simulate the initial stress field of stratum and effect of riverbed scour. Distributed optical fiber sensing (DOFS) technology is adopted as measuring method to achieve the surrounding soil deformation and structural deformation, ovality, and radius of curvature of shield tunnel. The test results show that uneven rebound deformation of stratum and shield tunnel structure occurs in both transverse and longitudinal directions under the action of riverbed scour. Variations in ovality differences exist along the longitudinal direction of the shield tunnel, indicating that the transverse and longitudinal deformation of the shield tunnel affects each other. The radius of curvature of the longitudinal deformation of the shield tunnel at the vault is much smaller than that of the bottom. The results demonstrate the broad application value of DOFS technology in shield tunnel structure monitoring and reveal the deformation mechanism of shield tunnels subjected to riverbed scour, which can provide important reference values for the structure design and safety monitoring of shield tunnels.
机译:探究盾构隧道的变形行为对盾构隧道结构的设计与安全评估具有重要意义。本文首次对河床冲刷作用的盾构隧道进行了缩小比例模型试验。设计了一种新的加载装置系统,模拟了地层的初始应力场和河床冲刷的影响。采用分布式光纤传感(DOFS)技术作为测量方法,实现盾构隧道周围土体变形和结构变形、椭圆度和曲率半径。试验结果表明,在河床冲刷作用下,地层和盾构隧道结构在横向和纵向均发生不均匀回弹变形。盾构隧道纵向存在椭圆度差异变化,表明盾构隧道的横向变形和纵向变形相互影响。拱顶处盾构隧道纵向变形的曲率半径远小于底部。研究结果表明,DOFS技术在盾构隧道结构监测中具有广泛的应用价值,揭示了盾构隧道在河床冲刷作用下的变形机理,可为盾构隧道的结构设计和安全监测提供重要的参考价值。

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