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首页> 外文期刊>Proceedings of the institution of civil engineers >Prediction of unsaturated shear strength of expansive clays
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Prediction of unsaturated shear strength of expansive clays

机译:膨胀土非饱和剪切强度的预测

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摘要

The aim of this study is to predict the unsaturated shear strength of two locally expansive clays available in Saudi Arabia over a wide range of suction. A variety of prediction models categorised as semi-empirical or micromechanical were considered to examine their viability to estimate unsaturated shear strength of these clays over a wide range of suction. Soil water characteristic curves and effective shear strength parameters for both expansive clays were evaluated to serve as input for the prediction of unsaturated shear strength functions (USSFs). To verify the predicted USSF, data for unsaturated shear strength as a function of matric suction were generated from a series of unconfined compression strength (UCS) test specimens with different moisture (suction) levels. Comparison between experimental data and predicted USSF revealed that there is great discrepancy between predicted and experimental data; especially in the high-suction range; this was attributed to the emergence of desiccation cracks during drying. As an alternative approach, function fitting models were used and their viability was discussed.
机译:这项研究的目的是预测沙特阿拉伯在较宽的吸力范围内可获得的两种局部膨胀粘土的不饱和剪切强度。考虑了各种分类为半经验模型或微力学模型的预测模型,以检验它们的可行性,以估计这些黏土在较大吸力范围内的不饱和剪切强度。评价了两种膨胀粘土的土壤水分特征曲线和有效抗剪强度参数,以作为预测非饱和抗剪强度函数(USSFs)的输入。为了验证预测的USSF,从一系列具有不同湿度(吸力)水平的无限制抗压强度(UCS)测试样品中生成了不饱和抗剪强度随基质吸力变化的数据。实验数据与USSF预测值的比较表明,预测数据与实验数据之间存在很大差异。特别是在高吸力范围内;这归因于干燥过程中干燥裂纹的出现。作为一种替代方法,使用了功能拟合模型并讨论了其可行性。

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