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An approach for predicting the stability of vertical cuts in cohesionless soils above the water table

机译:预测地下水位以上无粘性土壤垂直切口稳定性的方法

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摘要

Temporary vertical excavations in cohesionless (granular) soils pose a problem for conventional 'two-phase' soil mechanics theory since non-zero collapse height is not predicted using the classical 'dry/saturated' shear strength criterion, given that cohesionless soils above the water table are assumed to be dry. An extension of the classical shear strength equation to account for the effect of matric suction on the effective stress in partially saturated soil is presented here that is incorporated into the bound theorems of plasticity. A simple validation experiment is reported to test the concept following which, a case study is presented that explores the extent to which matric suction and its impact on shear strength can explain the large safe vertical cut height that is often observed in cohesionless pozzolan deposits in the field. Lastly, the impact of rainfall events and subsequent ponded infiltration is investigated using a very simple analytical technique based on the classical Terzaghi consolidation solution. The research presented here gives practitioners with no particular expertise in the mechanics of unsaturated soil, techniques to assess the stability of geostructures involving unsaturated cohesionless soils that are based on simple calculation techniques taught in undergraduate courses.
机译:无粘性(粒状)土壤中的临时垂直开挖是传统“两相”土壤力学理论的一个问题,因为考虑到水面以上无粘性土壤,不能使用经典的“干/饱和”抗剪强度准则来预测非零倒塌高度表被认为是干燥的。这里介绍了经典抗剪强度方程的扩展,以解决矩阵吸力对部分饱和土壤中有效应力的影响,并将其纳入可塑性约束定理中。据报道,通过一个简单的验证实验来测试该概念,随后进行了一个案例研究,探讨了基质吸力及其对剪切强度的影响程度可以解释在无粘性火山灰沉积物中经常观察到的较大的安全垂直切割高度。领域。最后,使用基于经典Terzaghi固结解决方案的非常简单的分析技术,研究了降雨事件和随后的积水的影响。本文介绍的研究为从业人员在非饱和土的力学方面没有特殊专长的技术提供了依据本科课程教授的简单计算技术来评估涉及非饱和非粘性土的地质结构稳定性的技术。

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