Load transfer mechanisms for capped and uncapped non-displacement piles above tunnels: a centrifuge modelling study

Chuanjin Tang, Andrea Franza, Jingmin Xu, Alec M. Marshall
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Abstract

This paper presents results from geotechnical centrifuge tests of tunnelling in dry dense sand beneath loaded non-displacement piles, focusing on the effect of a pile cap (representative also of a raft or grade beam) in contact with the soil surface on load transfer mechanisms. Experiments included loading tests to ascertain the foundation capacity and load-displacement response in the presence/absence of an underlying model tunnel. Individual ‘reference’ pile response is compared for cases with and without a pile cap, including pile displacements and load distributions between the head, shaft, and base; the case of ‘friction’ piles with a compressible base are also considered. Results show that uncapped piles with relatively large service loads experience ‘geotechnical failure’ (i.e. large settlements or a significant increase in settlement rate with tunnel volume loss) in order to mobilise base or shaft resistance. Pile caps are shown to reduce settlements and prevent geotechnical failure of both reference and friction piles; they also improve the post-tunnelling foundation performance under loading. The paper provides evidence to enable engineers to consider the beneficial role of shallow elements in contact with the surface on the performance of pile foundations both during and subsequent to tunnelling.
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隧道上有盖和无盖无位移桩的荷载传递机制:离心机模型研究
本文介绍了在加载无位移桩下的干密实砂土中开挖隧道的土工离心机试验结果,重点研究了桩帽(也代表筏或级梁)与土壤表面接触对荷载传递机制的影响。实验包括加载测试,以确定地基承载力以及在底层模型隧道存在/不存在的情况下的荷载-位移响应。比较了有桩帽和无桩帽情况下单个 "参考 "桩的响应,包括桩头、轴和基座之间的位移和荷载分布;还考虑了有可压缩基座的 "摩擦 "桩的情况。结果表明,未加桩帽的桩在承受相对较大的使用荷载时会出现 "岩土失效"(即出现较大沉降或沉降速率显著增加,隧道容积损失),以调动基底或轴的阻力。研究表明,桩帽可减少沉降,防止基准桩和摩擦桩的岩土工程失效;桩帽还可改善隧道掘进后地基在荷载作用下的性能。本文提供的证据使工程师能够考虑浅层元素与地表接触对隧道开挖期间及之后桩基性能的有利作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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