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首页> 外文期刊>International journal of geomechanics >Analysis of Time-Dependent Bearing Capacity of a Driven Pile in Clayey Soils by Total Stress Method
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Analysis of Time-Dependent Bearing Capacity of a Driven Pile in Clayey Soils by Total Stress Method

机译:用总应力法分析黏土中打桩的时变承载力

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This paper proposes an analytical approach to evaluate the time-dependent bearing capacity of a driven pile in clayey soils by taking the pile installation and subsequent reconsolidation effects into consideration. The process of pile installation is modeled by undrained expansion of a spherical cavity at the pile tip and a cylindrical cavity around the pile shaft. The cavity expansion solution, which is based on a K-0-consolidated anisotropic modified Cam-clay model (K-0-AMCC), is used to capture the pile installation effects. After pile installation, the dissipation of the excess pore water and the increase of the effective stress in the surrounding soil are evaluated by the radial consolidation theory. Based on the effective stress, the strength of the remolded soil is quantified by the modified Cam-clay (MCC) model and the spatially mobilized plane (SMP) criterion. With the three-dimensional strength of the surrounding soil, the time-dependent bearing capacity of the driven pile is evaluated by the total stress (alpha) method. To verify the proposed analytical approach, three groups of centrifuge model tests were performed, and the proposed approach was applied to predict the time-dependent bearing capacity of the tested piles. It is shown that reasonable predictions can be made by the method proposed in this paper. (C) 2016 American Society of Civil Engineers.
机译:本文提出了一种分析方法,通过考虑桩的安装和随后的固结效果,来评估黏土中打入桩随时间的承载力。桩的安装过程以桩端的球形腔和桩身周围的圆柱形腔的不排水膨胀为模型。基于K-0固结各向异性改进的Cam-clay模型(K-0-AMCC)的型腔扩展解决方案用于捕获桩的安装效果。安装桩后,通过径向固结理论评估了多余孔隙水的消散和周围土壤中有效应力的增加。基于有效应力,通过改良的Cam-clay(MCC)模型和空间动员平面(SMP)准则对重塑土壤的强度进行定量。利用周围土壤的三维强度,通过总应力(α)方法评估随动桩随时间的承载能力。为了验证所提出的分析方法,进行了三组离心模型测试,并将所提出的方法应用于预测受测桩随时间的承载能力。结果表明,本文提出的方法可以做出合理的预测。 (C)2016年美国土木工程师学会。

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