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Interpretation of the Bearing Capacity of Unsaturated Fine-Grained Soil Using the Modified Effective and the Modified Total Stress Approaches

机译:用改进的有效法和改进的总应力法解释不饱和细粒土的承载力

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摘要

The bearing capacity of unsaturated soils is commonly estimated using the conventional shear-strength parameters determined from drained loading conditions regardless of soil type and drainage condition. However, the use of drained shear-strength parameters to interpret the bearing capacity of unsaturated fine-grained soils is not reliable because there are uncertainties with respect to the drainage conditions of both the pore-air and pore-water pressures. In the current study, a series of model footing tests is conducted in statically compacted unsaturated finegrained soils. The model footing test results are interpreted using the modified effective-stress and total stress approaches considering the influence of matric suction. In addition, the validity of the modified total stress approach is tested using in situ plate-load test results in unsaturated fine-grained soils. The advantages, disadvantages, and limitations of using the modified effective-stress and modified total-stress approaches for engineering practice applications are discussed in this paper.
机译:不饱和土壤的承载力通常使用常规的抗剪强度参数估算,该参数由排水载荷条件确定,而与土壤类型和排水条件无关。但是,使用排水的剪切强度参数来解释非饱和细粒土的承载力是不可靠的,因为对于孔隙空气压力和孔隙水压力的排水条件都存在不确定性。在当前的研究中,在静态压实的不饱和细粒土中进行了一系列模型基础测试。考虑改进的有效应力和总应力方法,考虑了基质吸力的影响,对模型基础测试结果进行了解释。另外,在不饱和细粒土中使用原位板载试验结果测试了改良总应力方法的有效性。本文讨论了在工程实践中使用改进的有效应力和改进的总应力方法的优缺点和局限性。

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