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Effect of hydraulic hysteresis on shear strength of unsaturated clay and its prediction using a water retention surface

机译:水力滞后对非饱和黏土抗剪强度的影响及其在保水面的预测

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摘要

A vadose zone may exist within man-made or natural slopes under the condition of a deep water table. During repeated cyclic infiltration (wetting) and evaporation (drying), the suction and degree of saturation may change within this regime. Thus, it is crucial to have a thorough understanding of the effects of a cycle of wetting and drying on the shear strength of unsaturated soils to assess the long term stability of these slopes. Three series of laboratory tests are presented in this paper, from which the water retention and shear behaviors of an unsaturated clay are studied. A three-dimensional main wetting surface is proposed and a unique failure envelope expressed in terms of Bishop's stress can be used to characterize the shear strength of unsaturated soil subjected to different hydraulic histories. The measured shear strengths are compared with those predicted by the proposed main wetting surface and the drying curve under no confining stress. It is found that a better prediction is obtained by using the main wetting surface for unsaturated specimens subjected to different hydraulic histories.
机译:在深水位条件下,人为或自然斜坡内可能存在渗流带。在反复循环渗透(润湿)和蒸发(干燥)过程中,吸力和饱和度可能会在此范围内发生变化。因此,至关重要的是要充分了解润湿和干燥循环对非饱和土壤抗剪强度的影响,以评估这些斜坡的长期稳定性。本文提出了三个系列的实验室测试,从中研究了不饱和粘土的保水性和剪切性能。提出了三维主润湿面,并用毕晓普应力表示了一个独特的破坏包络,可用来表征不同水力历程下非饱和土的抗剪强度。将测得的剪切强度与拟议的主润湿表面和干燥曲线在无限制应力的情况下预测的剪切强度进行比较。通过对不同水力历程的非饱和试件使用主润湿面,可以得到更好的预测。

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