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Undrained expansion of a cylindrical cavity in clays with fabric anisotropy: theoretical solution

机译:织物各向异性粘土中圆柱形腔的不驱动膨胀:理论溶液

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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. This is the first theoretical solution of the undrained expansion of a cylindrical cavity under plane strain conditions for soft soils with anisotropic behaviour of plastic nature. The solution is rigorously developed in detail, introducing a new stress invariant to deal with the soil fabric. The semi-analytical solution requires numerical evaluation of a system of six first-order ordinary differential equations. The results agree with finite element analyses and show the influence of anisotropic plastic behaviour. The effective stresses at critical state are constant, and they may be analytically related to the undrained shear strength. The initial vertical cross-anisotropy caused by soil deposition changes towards a radial cross-anisotropy after cavity expansion. The analysis of the stress paths shows that proper modelling of anisotropic plastic behaviour involves modelling not only the initial fabric anisotropy but also its evolution with plastic straining.
机译:本文提出了一种新颖的,精确的半分析解决方案,用于织物各向异性软土中的圆柱形腔的准静态不推迟扩张。这是具有塑性性质各向异性行为的软土壤平面应变条件下圆柱形腔内未曝光膨胀的第一理论解。解决方案详细开发,引入了处理土壤织物的新应力不变。半分析解决方案需要六个一阶常微分方程系统的数值评估。结果同意有限元分析并显示各向异性塑料行为的影响。临界状态下的有效应力是恒定的,并且它们可能与未润湿的剪切强度分析有关。土壤沉积引起的初始垂直横向各向异性朝向腔膨胀后的径向交叉各向异性变化。应力路径的分析表明,各向异性塑料行为的适当建模涉及初始织物各向异性的建模,而且还涉及其具有塑性紧张的演变。

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