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Modeling Pile Setup in Natural Clay Deposit Considering Soil Anisotropy, Structure, and Creep Effects: Case Study

机译:考虑土壤各向异性,结构和蠕变效应的天然粘土沉积物桩模型建模:案例研究

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摘要

In this paper the behaviour of a natural soft clay deposit under installation of a case study pile is numerically investigated. The case study problem includes installation of an instrumented closeended displacement pile in a soft marine clay, known as Bothkennar clay, in Scotland. The site was being used for a number of years as a geotechnical test bed site and the clay has been comprehensively characterised with both in-situ tests and laboratory experiments. The soft soil behaviour, both after pile installation and after subsequent consolidation, is reproduced via an advanced critical state-based constitutive model, namely S-CLAY1S, that accounts for the anisotropy of soil fabric and destructuration effects during plastic straining. Furthermore, a timedependent\udextension of S-CLAY1S model, namely CREEP-S-CLAY1S is used to study soft soil creep response and the significance of its consideration on examining the overall pile installation effects. The simulation results are compared against field measurements, and for comparison the pile installation is also analysed using the Modified Cam-Clay (MCC) model to highlight the importance of considering inherent features of natural soil behaviour in the simulation. Considerable sensitivity analysis is also performed to evaluate the influence of initial anisotropy and bonding values on simulations results and to check the reliability of the numerical analyses.
机译:本文对案例研究桩安装后天然软黏土沉积物的行为进行了数值研究。案例研究的问题包括在苏格兰的一种柔软的海洋粘土(称为Bothkennar粘土)中安装仪器化封闭式位移桩。该场地已被用作岩土工程试验台多年,并通过现场测试和实验室实验对粘土进行了全面表征。在桩安装后和随后的固结之后,软土的行为均通过基于临界状态的高级本构模型S-CLAY1S进行再现,该模型解释了土体织物的各向异性和塑性应变期间的破坏效应。此外,使用S-CLAY1S模型的时变\降弹性,即CREEP-S-CLAY1S模型来研究软土的蠕变响应及其考虑对检查整体桩安装效果的意义。将模拟结果与现场测量结果进行比较,并且为了进行比较,还使用改良的Cam-Clay(MCC)模型分析了桩的安装,以强调在模拟中考虑自然土壤行为的固有特征的重要性。还进行了相当大的灵敏度分析,以评估初始各向异性和键合值对模拟结果的影响,并检查数值分析的可靠性。

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