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Analytical model for evaluating XCC pile shaft capacity in soft soil by incorporating penetration effects

机译:考虑渗透效应的软土地基XCC桩身承载力分析模型

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The derivation of a new analytical model for predicting the soil displacement of X-section cast-in-place concrete (XCC) piles installed vertically into soft clay as well as for predicting limit shaft resistance during loading phases is presented in this paper. The analytical model is formulated by assuming that the XCC pile penetration process is an X-shaped cylindrical cavity expansion process. Based on the theoretical framework of the Strain Path Method (SPM), the strain, displacement and stress induced by X-shaped cavity expansion can be obtained. The proposed analytical model is validated by comparing the degenerate solution of this study with that of conventional circular (cylindrical) cavity expansion theory. Analytical model-based design methods are then proposed for evaluating soil displacement and XCC pile shaft capacity. Theoretical predictions are compared with field test measurements to verify the suitability of the proposed design method. The proposed new analytical model reveals the fundamental penetration mechanics of XCC piles and gives improved design methods for determining XCC pile shaft capacities. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:本文提出了一种新的分析模型的推导,该模型可用于预测垂直安装在软粘土中的X型截面现浇混凝土(XCC)桩的土壤位移,以及用于预测加载阶段的极限轴阻力。通过假定XCC桩穿透过程是X形圆柱孔扩张过程来建立分析模型。基于应变路径法(SPM)的理论框架,可以获得由X形腔膨胀引起的应变,位移和应力。通过将本研究的简并解与常规圆形(圆柱)腔扩张理论的简并解进行比较,验证了所提出的分析模型。然后提出了基于分析模型的设计方法来评估土壤位移和XCC桩身承载力。将理论预测与现场测试测量结果进行比较,以验证所提出设计方法的适用性。提出的新分析模型揭示了XCC桩的基本渗透机理,并提供了确定XCC桩竖井承载力的改进设计方法。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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