Theoretical "t-z" Curves for Piles in Radially Inhomogeneous Soil

A. Bateman
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引用次数: 2

Abstract

Accurate estimates of pile settlement are key for efficient design of axially loaded piles. Calculations of pile settlement can be simplified using one-dimensional “t-z” curves describing pile settlement at a certain depth as a function of side friction. In the realm of this simplified framework, theoretical “t-z” curves can be derived by substituting an attenuation function describing the variation of shear stress with distance from the pile, into a soil constitutive model relating shear strain to shear stress, then integrating with respect to distance to get the settlement at the pile circumference due to an applied shear stress. A handful of analytical “t-z” curves are available in the literature using the concentric cylinder model to define an attenuation function; these include solutions for linear-elastic, power-law and hyperbolic constitutive models. However, radially homogeneous soil has often been assumed, ignoring the effect of the pile installation resulting in unconservative calculations of pile settlement. This paper considers the installation of the pile, resulting in a radially variable shear modulus distribution in the surrounding soil. A radial inhomogeneity correction factor has been developed for selected constitutive models based on two simplified functions for the soil inhomogeneity, which can be applied to the previously derived “t-z” curves produced assuming radially homogeneous soil. The performance of this simplified method is investigated.
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径向非均匀土中桩的理论“t-z”曲线
准确估计桩身沉降是有效设计轴向荷载桩的关键。桩沉降的计算可以用描述一定深度处桩沉降随侧摩阻力的一维“t-z”曲线来简化。在这个简化框架中,理论的“t-z”曲线可以通过将描述剪应力随距离变化的衰减函数代入剪切应变与剪应力相关的土本构模型,然后对距离进行积分,得到由于施加剪应力而在桩周处的沉降。少量的分析“t-z”曲线可在文献中使用同心圆柱体模型来定义衰减函数;这些解决方案包括线性弹性,幂律和双曲本构模型。然而,通常假设径向均质土,忽略了桩安装的影响,导致桩沉降计算不保守。本文考虑桩的安装,导致周围土体剪切模量呈径向变分布。基于土壤非均匀性的两个简化函数,对所选择的本构模型建立了径向非均匀性校正因子,该因子可应用于假设径向均匀土所产生的“t-z”曲线。对该简化方法的性能进行了研究。
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