Testing Pile Foundations at the ΕΤΗ Zurich Drum Centrifuge: Recent Developments

IF 1.2 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL
L. Sakellariadis, E. Bleiker, M. Iten, H. Buschor, A. Kieper, R. Herzog, A. Marin, O. Adamidis, I. Anastasopoulos
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引用次数: 1

Abstract

Motivated by the need to develop rational design methods for the retrofit of existing bridges on pile groups, the paper introduces recent experimental developments at the ETHZ Drum centrifuge. Four setups are developed for vertical, pushover, combined, and vibration testing. Their capabilities and limitations are demonstrated using as example a 2x1 pile group on dense saturated sand. Single piles are subjected to vertical loading, exploring the role of installation effects and interface roughness. Pushover loading is employed to measure the moment capacity (Mult) of a lightly- and a heavily-loaded group. In contrast to intuitive expectations, the heavily-loaded system mobilises larger Mult. The developed combined loading apparatus is proof-tested for a shallow foundation. Combined loading under constant vertical load is conducted to derive failure envelopes, revealing significant coupling between lateral and moment loading, and confirming the expansion of the failure envelope with increasing static vertical load. The vibration testing setup is proof-tested, confirming the possibility to identify the natural frequency of the system and the small-strain stiffness of the foundation through non-destructive testing. Although the study is fuelled by our ongoing work on pile groups, the developed experimental setups are of general applicability for the study of deep and shallow foundation systems.
苏黎世滚筒离心机桩基测试:最新进展
为了开发合理的设计方法来改造现有的群桩桥梁,本文介绍了ETTZ滚筒离心机的最新实验进展。开发了四种设置,用于垂直、俯卧撑、组合和振动测试。以致密饱和砂土上的2x1桩组为例,证明了它们的能力和局限性。单桩承受垂直荷载,探讨安装效果和界面粗糙度的作用。推覆荷载用于测量轻载和重载组的弯矩承载力(Mult)。与直观的预期相反,重载系统调动了更大的Mult。开发的组合加载装置在浅基础上进行了验证试验。在恒定垂直荷载下进行组合荷载,得出破坏包络线,揭示了横向荷载和力矩荷载之间的显著耦合,并证实了破坏包络线随着静态垂直荷载的增加而扩展。振动测试装置经过了验证测试,确认了通过无损检测识别系统固有频率和基础小应变刚度的可能性。尽管这项研究是由我们正在进行的桩组工作推动的,但所开发的实验装置对深基础和浅基础系统的研究具有普遍适用性。
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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来源期刊
CiteScore
3.60
自引率
15.80%
发文量
26
期刊介绍: International Journal of Physical Modelling in Geotechnics contains the latest research and analysis in all areas of physical modelling at any scale, including modelling at single gravity and at multiple gravities on a centrifuge, shaking table and pressure chamber testing and geoenvironmental experiments.
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