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Field monitoring of a subsea shield tunnel during standpipe lifting

机译:竖管提升过程中海底盾构隧道的现场监控

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摘要

As a subsea construction method, the vertical lifting standpipe has been widely used for the construction of underwater intakes and outlets for hydraulic tunnels since it was applied in China in 1974. During the standpipe construction process with an opening tunnel ceiling, the lifting counter-force will act on the bottom of the tunnel and impact the internal forces and deformations of the close segments and joints of the tunnel. Because of the risk to monitoring personnel and the narrowness of the construction space, there is shortage of field monitoring data to testify or improve the design, and previous work was mainly concentrated on the numerical simulation of vertical lifting construction without field monitoring testification. In this work, the internal stress and joint deformations of the segment during the lifting process were monitored in the standpipe lifting project of the Liuheng power plant hydraulic tunnel and compared with the numerical simulation. The monitoring data figured out the behaviour of the segments and joints during the lifting process and provided a good proof for the rationality of the numerical simulation to improve the design.
机译:垂直起吊竖管作为一种海底施工方法,自1974年在中国被应用以来,已被广泛用于液压隧道的水下进水口和出水口。在隧道顶棚开放的竖管施工过程中,起吊反作用力会作用在隧道的底部,并影响隧道的封闭部分和接缝的内力和变形。由于监测人员的风险和施工空间的狭窄,缺乏用于证明或改进设计的现场监测数据,以前的工作主要集中在没有现场监测证明的垂直提升工程的数值模拟上。在这项工作中,在六横电厂水工隧洞竖管吊装工程中,监控了吊装过程中管段的内部应力和接头变形,并与数值模拟进行了比较。监测数据表明了节段和节段在举升过程中的行为,为数值模拟改进设计的合理性提供了很好的证明。

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