高敏感性粘土中桩顶进的数值模拟

R. Karmaker, B. Hawlader, Didier Perret, Rajib Dey
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引用次数: 0

摘要

本文介绍了实心圆柱桩穿入高敏感软粘土的大变形有限元(FE)建模。模拟采用欧拉-拉格朗日(CEL)耦合有限元建模技术。桩以恒定的速度贯入,并在不排水的条件下进行分析,以模拟贯入过程中的响应。土壤模型考虑了应变软化和应变速率对排水抗剪强度的影响。FE 计算结果与理想化土壤剖面的现有分析和数值解决方案进行了比较。此外,还对之前安装在加拿大魁北克省圣阿尔班高度敏感粘土中的两根仪器桩进行了模拟。有限元分析得出的安装引起的应力变化、排水抗剪强度下降和桩尖阻力与现场测试结果一致。在桩附近会产生较大的塑性剪切应变,这将极大地重塑桩轴附近的土壤。参数研究表明,高敏感性粘土的不排水剪切强度在峰值后退化较快,在桩附近形成的高塑性剪切应变区域较小,而低敏感性至非敏感性粘土的塑性区域较宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical modelling of pile jacking in highly sensitive clays
This paper presents large deformation finite element (FE) modelling of penetration of solid cylindrical piles into highly sensitive soft clay. The simulations are performed using a Coupled Eulerian-Lagrangian (CEL) FE modeling technique. The pile is penetrated at a constant rate, and the analyses are performed for undrained conditions to simulate the response during penetration. The soil model considers the effects of strain softening and strain rate on the undrained shear strength. The FE calculated results are compared with available analytical and numerical solutions for idealized soil profiles. Simulations are also performed for two instrumented piles previously installed into highly sensitive clay at Saint-Alban in Québec, Canada. The installation-induced changes in stresses, degradation of undrained shear strength, and tip resistance obtained from FE analyses are consistent with the field test results. Large plastic shear strains develop near the pile, which can significantly remould the soil near the pile shaft. A parametric study shows that a quicker post-peak degradation of undrained shear strength of highly sensitive clay creates a smaller zone of high plastic shear strain near the pile, while the plastic zone is wider for low- to non-sensitive clays.
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