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Relative density effects on the bearing capacity of unsaturated sand

机译:相对密度对非饱和砂承载力的影响

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摘要

This study focuses on the impact of relative density on the bearing capacity of unsaturated sand using both theoretical predictions and measurements from physical modeling tests. The theoretical predictions incorporate the effective stress, quantified using the suction stress concept and friction angles obtained from direct shear tests on unsaturated sand specimens at different relative densities and degrees of saturation, into conventional bearing capacity equations. The suction stress values inferred from the failure envelopes were found to match well with values predicted from the soil-water retention curves for sands with different relative densities. Moreover, the bearing capacity values measured in physical modeling experiments involving loading of a circular footing atop unsaturated silty sand layers having different initial degrees of saturation matched well with the predicted bearing capacity values from an effective-stress based model. As expected, the bearing capacity was greater for soils with increasing relative density, but an interesting observation is that a transition from general to local shear failure occurred at a certain combination of relative density and degree of saturation. For the silty sand tested, this transition occurred at a relative density of 0% for degrees of saturation between 4 and 16% and at a relative density of 40% for degrees of saturation between 30 and 90%. General shear failure was always observed at relative densities of 70 and 90%. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:这项研究使用理论预测和物理模型测试的测量结果,着重于相对密度对非饱和砂承载力的影响。理论预测将使用吸力应力概念量化的有效应力和在不同相对密度和饱和度下对不饱和砂试样进行直接剪切试验获得的摩擦角量化为常规承载力方程式。发现从破坏包络推断出的吸力应力值与根据相对密度不同的砂土的土壤保水曲线预测的值非常吻合。此外,在物理模型实验中测得的承载力值与基于不同有效应力的模型预测的承载力值非常匹配,该物理模型实验涉及在具有不同初始饱和度的不饱和粉质砂岩层上加载圆形基础。正如预期的那样,相对密度增加的土壤的承载力更大,但有趣的观察是,在相对密度和饱和度的某种组合下,发生了从一般剪切破坏到局部剪切破坏的转变。对于测试的粉砂,饱和度介于4%和16%之间的相对密度为0%,饱和度介于30%和90%之间的相对密度为40%。始终在70%和90%的相对密度下观察到一般剪切破坏。 (C)2019年由Elsevier B.V.代表日本岩土工程学会制作和主持。

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