A Numerical Model to Study the Response of Piles under Lateral Loading in Unsaturated Soils

IF 2.1 Q2 GEOSCIENCES, MULTIDISCIPLINARY Geosciences (Switzerland) Pub Date : 2021-12-21 DOI:10.3390/geosciences12010001
L. M. Lalicata, G. Rotisciani, A. Desideri, F. Casini
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引用次数: 4

Abstract

The interaction between a laterally loaded pile and the surrounding soil is typically limited to the shallower soil layer. Often, this zone is above the water table and therefore the interaction takes place under unsaturated conditions. The available evidence is scarce but suggests that unsaturated conditions play a major role on the pile’s response. The actual mechanisms governing the soil–pile interaction under unsaturated soil conditions are not understood entirely, and this paper provides a useful insight on this topic. The analysis is carried out with a fully coupled three-dimensional numerical model, the soil behaviour is simulated with a Modified Cam Clay Model extended to unsaturated conditions. The model accounts for the increase in stiffness and strength of unsaturated soils as well as the volumetric collapse upon wetting. The constitutive model is calibrated on the laboratory data and validated against centrifuge data with satisfying agreement. The results highlight the substantial differences in the soil reaction against the pile depending on different water saturation profiles. The study also shows that the influence of unsaturated conditions on the pile response increases as the pile’s flexibility increases. Comparing the findings with currently available design methods such as the p-y curves, it is found that these do not adequately describe the unsaturated soil reaction against the pile, which opens the door for new research in the field. The proposed numerical model is a promising tool to further investigate the mechanisms underlying the soil–pile interaction under unsaturated soils.
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非饱和土中桩在横向荷载作用下响应的数值模型
横向荷载桩与周围土体的相互作用通常局限于较浅的土层。通常,这个区域在地下水位以上,因此相互作用发生在非饱和条件下。现有的证据很少,但表明非饱和条件对桩的响应起主要作用。非饱和土条件下土桩相互作用的实际机制尚不完全清楚,本文为这一主题提供了有益的见解。采用完全耦合的三维数值模型进行分析,采用扩展到非饱和条件下的修正Cam粘土模型模拟土的特性。该模型考虑了非饱和土的刚度和强度的增加以及润湿后的体积崩塌。本构模型在实验室数据上进行了校正,并与离心机数据进行了验证,结果令人满意。结果突出了土体对桩的反应在不同含水饱和度剖面上的实质性差异。研究还表明,非饱和条件对桩响应的影响随着桩的柔度增大而增大。将研究结果与现有的设计方法(如p-y曲线)进行比较,发现这些方法不能充分描述非饱和土对桩的反应,这为该领域的新研究打开了大门。所提出的数值模型为进一步研究非饱和土下桩-土相互作用机理提供了一种有前景的工具。
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
Geosciences (Switzerland)
Geosciences (Switzerland) Earth and Planetary Sciences-Earth and Planetary Sciences (all)
CiteScore
5.30
自引率
7.40%
发文量
395
审稿时长
11 weeks
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