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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Prediction and Evaluation of Size Effects for Surface Foundations on Sand
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Prediction and Evaluation of Size Effects for Surface Foundations on Sand

机译:砂土地基尺寸效应的预测与评价

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摘要

This paper describes finite element analyses using a generalized effective stress soil model, MIT-S1, to investigate size effects in the load-settlement response of surface foundations on deep homogeneous sand layers. Prior studies have shown that MIT-S1 can describe realistically the compression and shear behavior of sands over a wide range of confining pressures and densities using a unique set of material input parameters calibrated for a given material. The current analyses show that the model is able to represent transitions in the mechanisms of ground deformation from general to punching modes with changes in foundation size (γ'D/p_(at)) and sand density (initial void ratio, e_0). These mechanisms explain differences in the computed load-settlement responses and produce large decrements in the bearing capacity factor N_γ with increased foundation size (in the range 0.1 ≤ γ'D/p_(at) < 20). Small circular foundations (γ'D/p_(at) ≈ 0.1) have a bearing resistance of about 50% that of comparable strip foundations, but shape effects are negligible for very large foundations (γ'D/p_(at) ≈ 20). Comparisons of computed results for two sands (Toyoura and Berlin) of contrasting particle shape and formation void ratio exhibit similar bearing capacity factors at the same relative density levels. Model predictions of the bearing capacity factor N_γ are in very good agreement with data reported from centrifuge model tests of circular and strip foundations on Toyoura sand.
机译:本文描述了使用广义有效应力土模型MIT-S1进行的有限元分析,以研究尺寸对深层均质砂层上地基荷载沉降响应的影响。先前的研究表明,MIT-S1可以使用一组针对给定材料校准的独特材料输入参数,真实地描述在宽范围的围压和密度下,沙子的压缩和剪切行为。当前的分析表明,该模型能够代表地基变形(γ'D/ p_(at))和​​砂密度(初始孔隙率,e_0)变化的情况下,地面变形机制从一般模式转变为冲压模式。这些机制解释了所计算的荷载沉降响应的差异,并随着基础尺寸的增加(在0.1≤γ'D/ p_(at)<20范围内)而使承载力因子N_γ大幅降低。较小的圆形基础(γ'D/ p_(at)≈0.1)的承载力约为可比条形基础的50%,但对于很大的基础(γ'D/ p_(at)≈20)则形状影响可以忽略不计。两种具有对比颗粒形状和地层孔隙比的砂(托尤拉和柏林)的计算结果的比较在相同的相对密度水平下显示出相似的承载力因子。承载力因子N_γ的模型预测与Toyoura砂上圆形和条形基础的离心模型试验报告的数据非常吻合。

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