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Bearing capacity evaluation for shallow foundations on unsaturated soils using discretization technique

机译:采用离散化技术对不饱和土的浅层基础承载能力评价

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摘要

Bearing capacity evaluation for shallow foundations is conventionally completed according to the equations derived for dry or saturated soils neglecting the effect of matric suction. However, many shallow foundations are mostly constructed upon the soil layer above the groundwater table, where a large portion of soils under shallow foundations is in fact in unsaturated conditions. The failure of shallow foundations is usually related to shear failure which is one of the main engineering properties required in foundation design. The shear strength of unsaturated soils depends on the matric suction which usually changes with depth. Since the discretization technique of limit analysis is particularly suitable for considering the variation of soil parameters, the bearing capacity for shallow foundations considering the shear strength of unsaturated soils is therefore evaluated by this technique. The results obtained by the present technique are compared with the ones obtained from different authors, and good agreement is observed. Then a parametric analysis is performed using the present technique, and the bearing capacity for shallow foundations are given considering different soil types, foundation widths, effective internal friction angle phi ' , air-entry pressure 1/alpha with various n values, different water table depth with surface flux boundary conditions, different unit weight of soil gamma, and surcharge load q0. Some useful conclusions are given and a useful method is therefore provided for the bearing capacity evaluation of shallow foundations on unsaturated soils.
机译:浅层基础的承载能力评估通常根据源于干燥或饱和土壤忽略了缺乏原始吸力的效果的方程来完成。然而,许多浅层基础主要构造在地下水位上方的土壤层上,其中浅基础下的大部分土实际上是在不饱和条件下。浅层基础的失败通常与剪切失效相关,这是基础设计中所需的主要工程性能之一。不饱和土的剪切强度取决于通常随深度变化的原始吸力。由于限制分析的离散化技术特别适用于考虑土壤参数的变化,因此通过该技术评估了考虑不饱和土的剪切强度的浅层基础的承载力。通过本技术获得的结果与来自不同作者所获得的结果进行比较,并且观察到良好的一致性。然后使用本技术进行参数分析,并考虑不同的土壤类型,基础宽度,有效的内部摩擦角PHI',空气进入压力1 /α,具有各种N值,不同的水位,给出了参数分析。深度与表面磁通边界条件,土壤伽玛的不同单位重量,以及附加载荷Q0。给出了一些有用的结论,因此提供了一种有用的方法,用于对不饱和土壤的浅层基础的承载能力评估。

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