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An impact imaging method for monitoring on construction of immersed tube tunnel foundation treated by sand-filling method

机译:填埋法处理沉管隧道地基施工过程中的冲击成像监测方法

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Sand filling method (sand-flow method) is widely used in the treatment of immersed tube tunnel foundation, but quick and reliable method for real-time monitoring on the formation of sand-deposit and the connection of sand deposit between neighboring sand filling hole is absent. In this paper, a full-scale model of immersed tube tunnel foundation treated by sand filling method was conducted. The case was simplified as a multi-layered media problem, and a nondestructive testing method based on P-wave was explored to control the sand filling time in different hole. Through model testing, the relationship between the change rate of P-wave response energy and the radius of the sand-deposit is established. Kriging interpolation principle was employed to make a complete evaluation of the sand-deposit. The radius of sand-deposit measured by the P-wave impact imaging method (PII) agree well with the average radius observed by the observation window. Comparing the results of PII in sand filling hole with the relative compactedness of sand foundation after the sand filling, it can be found that the sand foundation boundary detected by PII method agree well with model test result, and the region with higher relative compactedness has a good correspondence with the regions with high change rate of PII. So, the PII method can detect the radius and the distribution of relative compactedness of sand-deposit. Because the method is convenient in calculation, the construction of sand filling foundation can be monitored in real time by PII method. In conclusion, the method can be used to monitor sand-filling treatment in immersed tube tunnel on real-time, and provide a scientific basis for the design and construction of immersed tube tunnel Engineering.
机译:沉砂法(砂流法)被广泛用于沉管隧道地基的处理,但是,一种实时,可靠的实时监测砂沉积物形成和相邻砂填充孔之间的砂沉积联系的方法是缺席。本文采用沉砂法处理了沉管隧道地基的全尺寸模型。该案例被简化为一个多层介质问题,并探索了一种基于P波的无损检测方法来控制不同孔中的充砂时间。通过模型试验,建立了纵波响应能量的变化率与砂沉积半径之间的关系。运用克里格插值原理对砂层进行了完整的评估。通过P波冲击成像法(PII)测量的沙沉积半径与观察窗所观察到的平均半径非常吻合。将填砂孔中的PII结果与填砂后砂基础的相对压实度进行比较,可以发现用PII法测得的砂基础边界与模型试验结果吻合良好,相对压实度较高的区域具有与PII变化率高的区域良好对应。因此,PII方法可以检测出砂土的半径和相对压实度的分布。由于该方法计算方便,因此可以通过PII方法实时监测填沙基础的施工情况。综上所述,该方法可用于对沉管隧道的注砂处理进行实时监测,为沉管隧道工程的设计与施工提供科学依据。

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