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Centrifuge Modelling of Tunnelling beneath Axially Loaded Displacement and Non-Displacement Piles in Sand

机译:砂土中轴向位移桩和非位移桩下隧道的离心模型

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Tunnelling under piled structures is becoming more common in urban areas. However, there is limited guidance available for the prediction of settlements and the loss of bearing capacity of existing piles due to tunnel excavation. This paper aims to provide an improved understanding of the response to tunnelling of axially loaded displacement and non-displacement piles. Data are provided from a series of geotechnical centrifuge tests of tunnel excavation beneath single piles in dry silica sand. The tests evaluate induced settlements of the piles at varying levels of initial safety factor (i.e. the ratio between initial bearing capacity and applied load). Furthermore, a previously published analytical approach, based on cavity expansion theory, is used to investigate the variation of the residual safety factor at constant pile load with tunnel volume loss. The outcomes of both centrifuge and analytical investigations illustrate the importance of pile installation method and initial safety factor and improve understanding of tunnel-pile interaction mechanisms.
机译:在堆积结构下的隧道施工在城市地区变得越来越普遍。然而,由于隧道开挖,用于预测沉降和现有桩的承载力损失的指导作用有限。本文旨在提供对轴向荷载位移桩和非位移桩的隧穿响应的更好理解。数据来自一系列干岩砂在单桩下的隧道开挖的岩土离心试验。该测试评估了在初始安全系数(即初始承载力与施加载荷之间的比率)不同的水平下桩的诱发沉降。此外,基于空腔扩张理论的先前发布的分析方法被用于研究在恒定桩荷载下随隧道体积损失残余安全系数的变化。离心和分析研究的结果说明了桩安装方法和初始安全系数的重要性,并增进了对隧道-桩相互作用机制的理解。

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