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Prediction of unsaturated shear strength from microstructurally based effective stress

机译:基于微结构有效应力的不饱和剪切强度预测

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This work aims at investigating the adequacy of microstructurally based effective stress to predict the shear strength of unsaturated soils over a wide range of suction. For that purpose, shear strength data are acquired on a silty clay soil through two types of unsaturated triaxial tests: suction controlled triaxial tests and unconsolidated triaxial tests at constant water content. The microstructure of the soil is determined with Mercury Intrusion Porosimetry and is directly used in different expressions of microstructurally based effective stresses available in the literature. The large range of suction tested allows to determine the most consistent expression of the effective stress to reproduce the experimental observations.
机译:这项工作旨在研究基于微观结构的有效应力是否足够,以预测在广泛的吸力范围内非饱和土壤的剪切强度。为此,通过两种不饱和三轴试验获得粉质粘土土的抗剪强度数据:吸力控制的三轴试验和恒定水含量下的非固结三轴试验。用水银压入孔率法测定土壤的微观结构,并将其直接用于文献中基于微观结构的有效应力的不同表达形式。测试的大范围吸力可以确定有效应力的最一致表达,以重现实验结果。

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