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Numerical simulation of XCC pile penetration in undrained clay

机译:XCC桩在不排水黏土中的数值模拟。

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This paper presents large deformation analysis of X-section Cast-in place Concrete (XCC) pile (a type of non-cylindrical pile) penetration in undrained clay using the Coupled Eulerian-Lagrangian (CEL) numerical technique. The main objective of this study was to investigate the shape effect of XCC pile cross-section on the penetration mechanism, such as the plastic zone around pile shaft and stress developed in the soil. The discrepancy of the stress mechanism between the circular and XCC piles are captured. The results show that the shape effect has insignificant influence on the plastic zone surrounding penetrated XCC pile. The shape effect only influences of the radial stress distribution around a rough XCC pile, while it can be neglected for smooth interface case. In addition, the radial stress, radial stress gradient and vertical stress around the smooth XCC pile shaft inθ=0∘profile is larger than the one inθ= 45∘profile. Moreover, the radial stress near the ground surface inθ= 45∘profile is nearly equal to zero, while the radial stress near the ground surface inθ=0∘profile sharply increases with the increasing of soil depth. The presented analysis provided a basis for developing design method for XCC pile in the future.
机译:本文利用耦合的欧拉-拉格朗日(CEL)数值技术,对不排水粘土中的X截面现浇混凝土(XCC)桩(一种非圆柱桩)进行了大变形分析。这项研究的主要目的是研究XCC桩横截面的形状对渗透机理的影响,例如桩身周围的塑性区和土壤中产生的应力。记录了圆形桩和XCC桩之间应力机制的差异。结果表明,形状效应对渗透的XCC桩周围的塑性区影响不大。形状效应仅影响粗糙XCC桩周围的径向应力分布,而对于光滑的界面情况则可以忽略。此外,光滑的XCC桩轴在θ= 0处的径向应力,径向应力梯度和垂直应力大于θ= 45处的径向应力。此外,θ=45∘剖面附近地表径向应力几乎等于零,而θ=0∘剖面附近地表径向应力随着土壤深度的增加而急剧增加。分析结果为今后开发XCC桩设计方法提供了依据。

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