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Tunneling beneath driven or jacked end-bearing piles in sand

机译:在沙子中打入或顶进的端承桩下方挖洞

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摘要

This paper presents centrifuge model test data that relate to the problem of tunneling beneath driven or jacked end-bearing piles in sand. The centrifuge model consisted of a tunnel and two piles and allowed for the acquisition of subsurface digital images throughout the tests. Soil and pile displacements were measured using particle image velocimetry and close-range photogrammetry techniques. The piles were jacked into the ground in-flight prior to tunnel volume loss to obtain ground stress profiles representative of conditions around driven or jacked piles. Patterns of displacements and calculated soil strains are presented to illustrate mechanisms of displacement and soil behavior. The measured soil and pile displacements are compared against greenfield test measurements. The results indicate that driving the piles significantly alters greenfield conditions and that greenfield displacements should not be used as an input for analytical tunnel-soil-pile interaction analyses for driven or jacked piles. Large pile displacements were observed to occur suddenly in the tests, illustrating the brittle nature of the soil in the areas affected by pile installation. A relationship between relative pile-tunnel location and the volume loss at which large pile displacements occurred is presented, which provides useful guidance to tunnel design engineers.
机译:本文介绍了离心模型试验数据,这些数据与沙子中打入或顶进的端承桩下的隧道问题有关。离心机模型由一个隧道和两个桩组成,并允许在整个测试过程中获取地下数字图像。使用颗粒图像测速仪和近距离摄影测量技术测量土壤和桩的位移。在隧道体积损失之前,将桩在飞行过程中顶入地面,以获得代表打入或顶桩周围情况的地应力剖面。给出了位移模式和计算出的土壤应变,以说明位移和土壤行为的机理。将测得的土壤和桩的位移与未测试的测试结果进行比较。结果表明,打桩会显着改变未开发地区的条件,并且不应将未开发位置的位移作为对打入或顶进桩的分析性隧道-土-桩相互作用分析的输入。在测试中观察到大的桩位移突然发生,这说明了在受桩安装影响的区域中土壤的脆性。提出了相对的隧道位置与发生大桩位移的体积损失之间的关系,这为隧道设计工程师提供了有益的指导。

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