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Undrained cylindrical cavity expansion in clays with fabric anisotropy and structure: Theoretical solution

机译:具有织物各向异性和结构的粘土中不排水的圆柱孔扩张:理论解

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摘要

This paper presents a novel, exact, semi-analytical solution for the quasi-static undrained expansion of a cylindrical cavity in soft soils with fabric anisotropy and structure. The assumed constitutive model is the S-CLAY1S model, which is a Cam clay type model that considers fabric anisotropy that evolves with plastic strains, structure and gradual degradation of bonding (destructuration) due to plastic straining. The solution involves the numerical integration of a system of seven first-order ordinary differential equations, three of them corresponding to the effective stresses in cylindrical coordinates, other three corresponding to the components of the fabric tensor and one corresponding to the amount of bonding. The solution is validated against finite element analyses and analytical limit asymptotic values of the effective stresses at the cavity wall are established. When destructuration is considered, the solution provides lower values of the effective radial stresses near the cavity wall, which are partially compensated by larger values of the excess pore pressures. Parametric analyses and discussion of the influence of soil overconsolidation, initial amount of bonding and rate of destructuration are presented. Finally, the theoretical solution is compared with experimental data of undrained shear strength variation immediately after pile driving in a sensitive clay.
机译:本文提出了一种新颖的,精确的,半解析的解决方案,用于具有织物各向异性和结构的软土中圆柱空腔的准静态不排水膨胀。假定的本构模型是S-CLAY1S模型,这是一种Cam黏土类型的模型,它考虑了织物各向异性,该各向异性随着塑性应变,结构以及由于塑性应变而导致的粘结逐渐退化(破坏)而发展。该解决方案涉及一个由七个一阶常微分方程组成的系统的数值积分,其中三个对应于圆柱坐标中的有效应力,其他三个对应于织物张量的分量,一个对应于粘结量。通过有限元分析验证了该解决方案,并确定了腔壁处有效应力的解析极限渐近值。当考虑破坏时,该解决方案会在空腔壁附近提供较低的有效径向应力值,而较大的多余孔隙压力值会部分补偿这些值。对土壤超固结,初始粘结量和破坏速率的影响进行了参数分析和讨论。最后,将理论解与敏感土中打桩后不排水的抗剪强度变化的实验数据进行比较。

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