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Study of Critical Hydraulic Gradients for Seepage-Induced Failures in Granular Soils

机译:粒状土壤渗流破坏临界水力梯度研究

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This paper reports on a series of laboratory hydraulic tests on a select range of granular soils compacted at relative densities between 0% and 100%. The critical hydraulic gradient at the onset of seepage failure (i.e., heave and suffusion) is considerably smaller than unity for internally unstable (i.e., nonuniform) sand-gravel mixtures due to stress reduction in their finer fraction. For example, stable uniform fine sands have been shown to exhibit heave at hydraulic gradients = 1.0, whereas sand-gravel mixtures suffer from suffusion at hydraulic gradients MUCH LESS-THAN1.0. The boundary friction from the cell walls of test equipment would influence the development of heave, while suffusion is controlled by interparticle friction. In this study, the critical hydraulic gradient is modeled theoretically by considering the effects of interparticle and boundary frictions, and stress reduction in the soil. The experimental results from both this and past studies are used to verify the proposed model, which showed good agreement with experimental observations with less than 5% standard error.
机译:本文报告了一系列实验室水压试验,这些试验对相对密度在0%和100%之间压实的一定范围的粒状土壤进行了选择。由于内部的不稳定(即不均匀)砂砾混合物的细小部分应力降低,因此在渗流破坏(即起伏和渗水)开始时的临界水力梯度大大小于统一值。例如,稳定的均匀细砂已显示出在水力梯度> = 1.0时表现出起伏,而砂砾混合物在水力梯度MUCH LESS-THAN1.0时会起泡。来自测试设备的孔壁的边界摩擦将影响隆起的发展,而注液则由颗粒间摩擦控制。在这项研究中,通过考虑颗粒间和边界摩擦的影响以及土壤中应力的减少,从理论上对临界水力梯度进行建模。来自此研究和过去研究的实验结果均被用于验证所提出的模型,该模型与实验观察值吻合良好,标准误差小于5%。

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